“maison guiette” de le corbusier: anÁlisis...

228
UNIVERSIDAD POLITÉCNICA DE MADRID MÁSTER UNIVERSITARIO EN EFICIENCIA ENERGÉTICA EN LA EDIFICACIÓN, LA INDUSTRIA Y EL TRANSPORTE TRABAJO FIN DE MÁSTER “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ENERGÉTICO Y PROPUESTA DE MEJORAS Nº REGISTRO: TFM MUEE /2019 AUTOR: JAVIER GONZÁLEZ FERNÁNDEZ TUTOR: Luis Felipe Beltrán Bengoechea E.T.S Edificación de Madrid Construcciones arquitectónicas y su control Convocatoria: Ordinaria Madrid, febrero 2019

Upload: others

Post on 14-Mar-2020

0 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

UNIVERSIDAD POLITÉCNICA DE MADRID

MÁSTER UNIVERSITARIO EN EFICIENCIA

ENERGÉTICA EN LA EDIFICACIÓN, LA INDUSTRIA Y

EL TRANSPORTE

TRABAJO FIN DE MÁSTER

“MAISON GUIETTE” DE LE CORBUSIER:

ANÁLISIS ENERGÉTICO Y PROPUESTA DE

MEJORAS

Nº REGISTRO: TFM MUEE /2019

AUTOR: JAVIER GONZÁLEZ FERNÁNDEZ

TUTOR: Luis Felipe Beltrán Bengoechea E.T.S Edificación de Madrid – Construcciones arquitectónicas y su control

Convocatoria: Ordinaria

Madrid, febrero 2019

Page 2: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

UNIVERSIDAD POLITÉCNICA DE MADRID

MÁSTER UNIVERSITARIO EN EFICIENCIA

ENERGÉTICA EN LA EDIFICACIÓN, LA INDUSTRIA Y

EL TRANSPORTE

TRABAJO FIN DE MÁSTER

“MAISON GUIETTE” DE LE CORBUSIER:

ANÁLISIS ENERGÉTICO Y PROPUESTA DE

MEJORAS

Nº REGISTRO: TFM MUEE /2019

AUTOR: JAVIER GONZÁLEZ FERNÁNDEZ

TUTOR: Luis Felipe Beltrán Bengoechea E.T.S Edificación de Madrid – Construcciones arquitectónicas y su control

Convocatoria: Ordinaria

Madrid, febrero 2019

Page 3: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main
Page 4: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 1

RESUMEN

En la actualidad, no hay duda de que la Eficiencia Energética es uno de los objetivos

prioritarios a nivel mundial. El crecimiento constante de la población mundial con el

consecuente aumento en la demanda de recursos, hace necesario la búsqueda de un modelo

sostenible en todos los aspectos que permita satisfacer todas las necesidades de la población.

Aceptando esta situación innegable, el sector de la construcción tiene una gran

importancia, debido a que juega un papel fundamental en la emisión de Gases de Efecto

Invernadero.

Mediante el presente estudio se pretende implementar un modelo sostenible en la

“Maison Guiette” de Le Corbusier, construida en 1926 y situada en Amberes (Bélgica), que

permita posicionarse en el sector de la construcción como un modelo a seguir. El objetivo es

realizar una evaluación energética completa que permita, comparar la situación actual con el

resultado de implementar una serie de mejoras que reduzcan la demanda de energía. Estas

simulaciones energéticas se realizarán utilizando el software Design Builder.

Adicionalmente, se realizará un análisis económico que permita evaluar la viabilidad de

cada una de las mejoras propuestas a través de los periodos de amortización.

En conclusión, se pretende reducir la demanda energética manteniendo unas condiciones

de confort óptimas, y asegurando la viabilidad económica de las medidas propuestas. De esta

forma, se busca demostrar la importancia de poner en valor de nuevas prácticas en el sector

de la construcción, que promuevan definitivamente el objetivo de que las nuevas edificaciones

sean de consumo de energía casi nulo.

Palabras clave: Eficiencia Energética, demanda energética, sector de la construcción,

análisis energético.

Page 5: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Resumen

2 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 6: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 3

ABSTRACT

Actually, there is no doubt that Energy Efficiency is one of the priority objectives in the

world. The constant growth of the world population and the consequent increase in the demand

of resources, makes necessary a search of a sustainable model in all aspects that satisfy the

needs of the human population.

Accepting this undeniable situation, construction sector is one of the main responsible,

because it plays a fundamental role in the emission of Greenhouse Gases emissions.

The aim of this study is to implement a sustainable model Le Corbusier´s “Maison Guiette”

house, built in 1926 and located in Antwerp (Belgium), and this model will position as a

reference in the construction sector. The objective is to carry out a complete energy evaluation

that allows to compare the current situation with the result of implement some improvements

that reduce the demand energy. These energy simulations will be carried out using the Design

Builder software.

Additionally, another objective of this study is to evaluate the viability of each of the

proposed improvements through the amortization periods.

In conclusion, it is tried to reduce energy demand while maintaining optimal comfort

conditions, and ensuring economic viability of the proposed measures. In this way, it seeks to

demonstrate the importance of the implementation of new practices in the construction sector,

which definitely promote the goal of new buildings are almost zero energy demand.

Key Words: Energy Efficiency, energy demand, construction sector and energy analysis.

Page 7: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Abstract

4 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 8: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 5

ÍNDICE

RESUMEN ............................................................................................................................ 1

ABSTRACT ........................................................................................................................... 3

ÍNDICE .................................................................................................................................. 5

1. RESUMEN EJECUTIVO ................................................................................................... 8

1. EXECUTIVE SUMMARY ..................................................................................................11

2. INTRODUCCIÓN .............................................................................................................14

2.1. CONTEXTO GLOBAL ...................................................................................................14

2.2. MAISON GUIETTE. LE CORBUSIER............................................................................17

2.3. EL SOFTWARE: DESIGN BUILDER .............................................................................19

3. OBJETIVO Y ALCANCE ..................................................................................................22

4. METODOLOGÍA ...............................................................................................................24

5. DESCRIPCIÓN DE LA VIVIENDA ....................................................................................26

5.1. ORIENTACIÓN .............................................................................................................27

5.2. DISTRIBUCIÓN DEL ESPACIO INTERIOR ..................................................................28

5.3. COMPOSICIÓN DE LOS CERRAMIENTOS .................................................................30

5.4. PROPIEDADES DE LOS HUECOS ..............................................................................32

5.5. COMPARACIÓN DE LOS VALORES LÍMITE DE TRANSMITANCIAS CON LA

SITUACIÓN ACTUAL ...........................................................................................................34

5.6. TASA DE VENTILACIÓN ..............................................................................................34

6. ANÁLISIS DE LOS DATOS CLIMÁTICOS .......................................................................37

6.1. CLIMOGRAMA ..............................................................................................................37

6.2. DIAGRAMA DE TEMPERATURAS ...............................................................................38

6.3. ROSA DE LOS VIENTOS ..............................................................................................39

7. SIMULACIÓN ENERGÉTICA DEL ESTADO ACTUAL .....................................................41

7.1. DEFINICIÓN DEL PROCESO DE MODELADO DE LA VIVIENDA EN EL SOFTWARE

.............................................................................................................................................41

7.2. SEMANA EXTREMA DE INVIERNO (20-26 de enero) ..................................................45

7.3. SEMANA EXTREMA DE VERANO (13-19 de julio): ......................................................54

7.4. SIMULACIÓN ANUAL: ..................................................................................................62

8. PROPUESTA DE MEJORAS DE REHABILITACIÓN .......................................................71

8.1. COMPOSICIÓN DE LOS CERRAMIENTOS .................................................................72

8.2. PROPIEDADES DE LOS HUECOS ..............................................................................73

8.3. OTRAS MEJORAS ........................................................................................................73

Page 9: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Índice

6 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

8.4. COMPARACIÓN DE LOS VALORES LÍMITE DE TRANSMITANCIAS CON LAS

PROPUESTAS DE MEJORA IMPLEMENTADAS ................................................................75

8.5. TASA DE VENTILACIÓN ..............................................................................................76

8.6. RESUMEN DE DATOS .................................................................................................76

9. SIMULACIÓN ENERGÉTICA CON LAS MEJORAS INTRODUCIDAS .............................78

9.1. DEFINICIÓN DEL PROCESO DE MODELADO DE LA VIVIENDA EN EL SOFTWARE

.............................................................................................................................................78

9.2. SEMANA EXTREMA DE INVIERNO (20-26 de enero) ..................................................79

9.3. SEMANA EXTREMA DE VERANO (13-19 de enero) ....................................................87

9.4. SIMULACIÓN ANUAL: ..................................................................................................95

10. ILUMINACIÓN NATURAL, SIMULACIÓN DE TEMPERATURAS Y MOVIMIENTOS DE

AIRE ................................................................................................................................... 104

10.1. ILUMINACIÓN NATURAL: ........................................................................................ 104

10.2. SIMULACIÓN DE TEMPERATURAS Y MOVIMIENTOS DE AIRE: ........................... 109

11. COMPARACIÓN DE RESULTADOS............................................................................ 113

12. ESTUDIO ECONÓMICO .............................................................................................. 118

13. MAQUETA ................................................................................................................... 122

14. CONCLUSIONES ......................................................................................................... 127

15. BIBLIOGRAFÍA ............................................................................................................ 129

16. ÍNDICE DE FIGURAS .................................................................................................. 131

17. ÍNDICE DE TABLAS ..................................................................................................... 134

18. ÍNDICE DE GRÁFICOS ................................................................................................ 136

19. ABREVIATURAS, UNIDADES Y ACRÓNIMOS ........................................................... 139

ANEXOS ............................................................................................................................ 141

ANEXO 1. RESULTADOS NUMÉRICOS SIMULACIÓN INICIAL. SEMANA EXTREMA DE

INVIERNO. ......................................................................................................................... 142

ANEXO 2. RESULTADOS NUMÉRICOS SIMULACIÓN INICIAL. SEMANA EXTREMA DE

VERANO………………………………………………………………………………………….………………………………..………...156

ANEXO 3. RESULTADOS NUMÉRICOS SIMULACIÓN INICIAL. ANUAL………………..………...170

ANEXO 4. RESULTADOS NUMÉRICOS SIMULACIÓN MEJORAS. SEMANA EXTREMA

DE VERANO……………………………………………..…………………………………….………………………………..………...184

ANEXO 5. RESULTADOS NUMÉRICOS SIMULACIÓN INICIAL. SEMANA EXTREMA DE

VERANO………………………………………………………………………………………….………………………………..………...198

ANEXO 6. RESULTADOS NUMÉRICOS SIMULACIÓN INICIAL. ANUAL………………..………...212

Page 10: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 7

Page 11: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

1. Resumen Ejecutivo

8 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

1. RESUMEN EJECUTIVO

El consumo de energía, además de otros problemas como el cambio climático o la

escasez de recursos, es cada vez mayor. Esto es debido al crecimiento de la población

mundial, que actualmente se sitúa en algo más de 7.500 millones y que algunas estimaciones

apuntan que en el año 2100 podría llegar hasta los 11.000 millones.

Para dar respuesta a esta demanda creciente, no es una solución viable limitar el

crecimiento de la población o el progreso de países en vías de desarrollo. Por tanto, es

necesario plantearse que es el momento de implantar un modelo sostenible, que pasa por

reducir el consumo de energía en todos los sectores mediante el uso de fuentes de energía

renovables, reduciendo en la medida de lo posible el uso de combustibles fósiles.

Actualmente, la mayor parte de los países del mundo recurren a fuentes de energía

basadas en combustibles fósiles, como se puede observar en el siguiente gráfico:

Gráfico 1: Uso de las fuentes de energía. Fuente IDEA

El sector de la construcción, junto con la industria y el transporte, es uno de los principales

responsables de la emisión de Gases de Efecto Invernadero. Como dato general extrapolable

a otros países, en España, existen alrededor de 26 millones de viviendas, y representan el

consumo de una tercera parte de la energía de nuestro país. Esto se debe a que el 21% de

estas viviendas tienen más de 50 años, y el 55% tiene una antigüedad superior a 1980. Estos

datos obligan a posicionar la rehabilitación de las viviendas como un objetivo prioritario, no

solo en España sino a nivel mundial.

La rehabilitación energética en el sector de la construcción permitiría reducir el uso de la

energía entre un 24 y un 50%; las emisiones de CO2 entre un 25 y un 39%; el uso del agua

hasta un 40% y los residuos sólidos hasta un 70%. Además, aumentaría la calidad del

Page 12: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 9

ambiente interior, el confort y la salud, la productividad de los ocupantes y como añadido, el

valor de mercado.

El presente trabajo tiene como objetivo demostrar con un caso real que la rehabilitación

energética puede suponer una disminución en el consumo de energía muy importante. Para

ello, se realizará un análisis energético mediante el software Design Builder de la “Maison

Guiette” de Le Corbusier, comparando la situación actual con el resultado después de

implementar una serie de mejoras que se detallarán más adelante. De esta forma, se pretende

demostrar que es posible reducir el consumo de energía aplicando una serie de medidas que

además de mantener e incluso mejorar las condiciones de confort, sean viables económica y

medioambientalmente.

Page 13: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

1. Resumen Ejecutivo

10 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 14: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 11

1. EXECUTIVE SUMMARY

The consumption of energy, in addition to other problems such as climate change or

scarcity of resources, is increasing. This is due to the growth of the world population, which

currently stands at just over 7.5 million and some estimates suggest that by 2100 it could reach

11 million.

To respond to this growing demand, it is not a viable solution to limit population growth or

progress in developing countries. Therefore, it is necessary to consider that it is time to

implement a sustainable model, which involves reducing energy consumption in all sectors

through the use of renewable energy sources, reducing as far as possible the use of fossil

fuels.

Currently, most of the countries in the world turn to fossil fuel based energy sources, as

can be seen in the following graph:

Gráfico 1. Uso de las fuentes de energía. Fuente IDAE

The construction sector, with industry and transport, is one of the main responsible for the

emission of greenhouse gases. In Spain, there are around 26 million homes, and represent

the consumption of a third of the energy of our country. This is due to the fact that 21% of these

homes are over 50 years old, and 55% are older than 1980. These make it necessary to

position housing rehabilitation as a priority, not only in Spain; in all the world.

The energy rehabilitation in the construction sector allows to reduce the use of energy

between 24 and 50%; CO2 emissions between 33 and 39%; the use of water up to 40% and

solid waste up to 70%. In addition, the quality of the interior environment, comfort and health,

the productivity of the occupants and the market value are increased.

The objective of this study is to demonstrate with a real case that energy rehabilitation can

lead to a significant reduction in energy consumption. For this, an energy analysis will be

carried out using the Design Builder software of Le Corbusier's "Maison Guiette", comparing

the current situation with the result after implementing a series of improvements that will be

detailed later. In this way, it is intended to demonstrate that it is possible to reduce energy

Page 15: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

1. Executive Summary

12 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

consumption by applying a series of measures that in addition to maintaining and even

improving comfort conditions, are economically and environmentally viable.

Page 16: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 13

Page 17: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

2. Introducción

14 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

2. INTRODUCCIÓN

El presente estudio tiene por objeto realizar un análisis energético de la “Maison Guiette”

de Le Corbusier situada en Amberes (Bélgica). Esta vivienda fue construida en 1926, por lo

que se entiende que los materiales empleados están muy lejos de los definidos actualmente

como óptimos en lo que a demanda energética se refiere.

Para llevar a cabo este estudio, se utilizará como base el software Design Builder.

Mediante este software, se pretende realizar un análisis energético de la situación actual de

la vivienda, obteniendo los valores de demanda energética de la misma. A partir de estos

valores, se propondrán una serie de medidas de mejora en lo referente a cerramientos y

sistemas, y se implementarán en el software con el fin de poder comparar los resultados

obtenidos con los iniciales.

El fin último, es demostrar de manera fehaciente que es posible reducir de forma notable

la demanda energética de una vivienda tipo, mediante la aplicación de una serie de medidas

de mejora con una viabilidad económica demostrada también en este estudio.

2.1. CONTEXTO GLOBAL

Como se ha comentado en el anterior resumen ejecutivo de este estudio, el principal

problema al que nos enfrentamos es el crecimiento de la población mundial, que algunas

estimaciones apuntan que podría llegar hasta los 11.000 millones en 2100. Como

consecuencia directa a esto, se produce un aumento de la demanda de los recursos y de la

necesidad de edificación para cubrir este crecimiento de población.

Ilustración 1: Crecimiento de la población mundial. Fuente: World Population Prospects

El sector de la construcción representa el 40% de las emisiones de Gases de Efecto

Invernadero en la UE, y se entiende que con este crecimiento de la demanda este valor podría

incrementarse en caso de no actuar.

Page 18: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 15

A nivel mundial, se está trabajando en controlar las emisiones de Gases de Efecto

Invernadero, una de las razones del cambio climático. Algunas de las acciones o hitos de los

últimos años para tratar estos temas son las siguientes:

Primera Conferencia Mundial Sobre el Clima en Ginebra (1979):

En esta Conferencia se adoptó una declaración que obligaba a los gobiernos de los

países citados a prever los posibles cambios que se pudieran producir en el clima.

Esta fue la primera vez que se consideró el cambio climático como una amenaza real

para el planeta.

Grupo Intergubernamental de Expertos sobre el Cambio Climático (1988):

Se trata de un grupo de 400 científicos creado por la Organización Meteorológica

Mundial y el Programa de las Naciones Unidas para el Medio Ambiente, con el objetivo

de implantar una serie de medidas para detener las emisiones de Gases de Efecto

Invernadero. Hasta el día de hoy, este grupo ha presentado cuatro informes sobre el

impacto y posibles soluciones al cambio climático.

Conferencia de Naciones Unidas sobre el Medio Ambiente y el Desarrollo en Rio de

Janeiro, Brasil (1992):

En esta conferencia se adoptó el plan conocido como Agenda 21. Este plan consiste

en un programa que contiene una serie de medidas para el desarrollo sostenible.

Primera Conferencia de las partes (COP) en Berlín (1995):

La COP se trata de un grupo que se reúne anualmente con el fin de mantener las

acciones definidas en el Marco de las Naciones Unidas sobre el Cambio Climático.

Protocolo de Kioto (1997):

Esta cumbre es de gran importancia ya que, en ella, se logró un acuerdo para reducir

las emisiones de los Gases de Efecto Invernadero, donde los países intervinientes

fijaron un calendario de actuación y adquirieron compromisos concretos. Este

protocolo fijó un periodo para la reducción de las emisiones de 2008 al 2012.

Bali (2007):

En esta cumbre se observó que la primera fase del protocolo de Kioto (2008 al 2012)

era insuficiente. Por tanto, se plantó una segunda fase que tendría vigencia de 2012

al 2020. En esta segunda fase se buscó lograr una visión común de todos los países

intervinientes sobre el problema del cambio climático.

Copenhague (2009):

En esta conferencia se logró fijar el objetivo para el incremento de la temperatura

global del planeta en un máximo de 2ºC.

Page 19: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

2. Introducción

16 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Cancún (2010):

Esta reunión buscó lograr compromisos políticos para reducir el cambio climático,

resaltando la creación del Fondo Verde para el Clima, cuyo objetivo es dotar de

financiación a proyectos relacionados con la lucha contra el cambio climático.

Durban (2011):

XVII Conferencia sobre el Cambio Climático. En esta cumbre se abordó el futuro del

cambio climático y se acordó que los principales países emisores de Gases de Efecto

Invernadero, iniciaran un proceso de reducción de sus emisiones.

La Cumbre del Clima de París (2015):

Esta cumbre, llevada a cabo el 12 de diciembre de 2015, marcó un punto de inflexión

en la limitación del calentamiento global. En ella, los 195 países intervinientes llegaron

a un acuerdo para reducir las emisiones de carbono y mantener el calentamiento

global por debajo de los 2ºC marcados en la conferencia de Copenhague de 2009.

Con el fin de cumplir con los objetivos propuestos en las anteriores cumbres

mencionadas, surgieron las siguientes normativas a nivel europeo:

Directiva 2010/31/UE del Parlamento Europeo y del Consejo, de 19 de mayo de 2010,

relativa a la eficiencia energética de los edificios.

https://www.boe.es/doue/2010/153/L00013-00035.pdf

Esta Directiva tiene como principal objetivo reducir el consumo de energía y fomentar

el uso de la energía procedente de fuentes renovables, con el fin de asegurar el

abastecimiento energético.

Directiva 2012/27/UE, de 25 de octubre de 2012, relativa a la eficiencia energética.

https://www.boe.es/doue/2012/315/L00001-00056.pdf

Su principal cometido es establecer un marco común con el objetivo de ahorrar un

20% en el consumo de energía en 2020.

Adicionalmente, en los próximos años se está planteando un reto en el sector de la

construcción con el fin de cumplir con los objetivos de la Directiva de Eficiencia Energética de

Edificios (2010/31/EC). Se trata de los edificios de consumo de energía casi nulo, también

conocidos como nZEB (Nearly Zero Energy Buildings).

Page 20: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 17

Ilustración 2: Fechas clave de implantación de los nZEB. Fuente: BPIE (Buildings Performance Institute Europe)

2.2. MAISON GUIETTE. LE CORBUSIER

Charles-Édouard Jeanneret-Gris, más

conocido como Le Corbusier, fue un

arquitecto nacido en Suiza el 6 de octubre de

1887 y que falleció en Francia el 27 de

agosto de 1965.

Le Corbusier, es considerado uno de los

arquitectos más influyentes del siglo XX,

además de uno de los más claros

exponentes de la arquitectura moderna junto

con Frank Lloyd Wright o Walter Gropius,

entre otros.

En 1905 diseñó su primer edificio, la

Villa Fallet. Esta primera construcción fue

levantada en La Chaux de Fonds, Suiza,

lugar donde nació.

Ilustración 3: Arquitecto Le Corbusier

La principal característica de Le Corbusier fue su visión de intentar cambiar el mundo a

través de la arquitectura. Él mismo definió la vivienda como la máquina para habitar, con lo

que pretendía resaltar que la funcionalidad de una vivienda debe estar destinada al vivir.

Además, su principal objetivo con sus obras era generar belleza, de tal forma, que esta se

repercutiera en los ocupantes de sus edificios.

En el año 1927, Le Corbusier presentó un documento en el que detallaba los cinco puntos

de una nueva arquitectura, aprovechando las nuevas tecnologías constructivas y la innovación

conceptual de la época. Estos cinco puntos son los siguientes:

Page 21: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

2. Introducción

18 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

1. Planta baja sobre pilotes: para Le Corbusier la planta baja de una vivienda estaba

destinada al automóvil, por lo que siente intentaba elevarla sobre pilotes.

2. La planta libre: aprovechando las ventajas del hormigón armado, en auge en

aquella época, Le Corbusier intentaba generar una estructura de pilares en la que

apoyasen losas, dejando la planta completamente libre.

3. La fachada libre: el arquitecto buscaba retrasar la estructura respecto de la

fachada, permitiendo que esta fuera independiente de la estructura y de libre

composición.

4. La ventana alargada: en algunas de sus obras, como en la “Maison Guiette” que

es objeto de este estudio, se puede observar que existen ventanas que ocupan

todo el ancho de la fachada. Esto era realizado con el fin de buscar una mejor

relación con el exterior.

5. La terraza-jardín: Le Corbusier convertía en sus obras el espacio de la terraza en

una zona ocupada por la naturaleza, que además servía como aislante térmico

sobre la losa existente.

La Maison Guiette, situada en Amberes (Bélgica) es una obra de Le Corbusier construida

en 1926 como residencia y estudio del pintor René Guiette (1873-1976). Concretamente, el

emplazamiento de esta construcción se sitúa a las afueras de la ciudad, en la calle

Populierenlaan 32, 2020.

Ilustración 4: Emplazamiento de la Maison Guiette

Debido a la importancia que supuso esta construcción como una contribución al

movimiento moderno de la arquitectura, desde el pasado 17 de julio de 2016, la “Maison

Guiette” es uno de los edificios reconocidos por la UNESCO como Patrimonio de la

Humanidad.

Como resumen general de las características geométricas de esta construcción, ya que

es un tema que se tratará con profundidad más adelante, la “Maison Guiette” se caracteriza

por contar con tres plantas sobre rasante, además de un sótano. En un primer vistazo, esta

Page 22: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 19

construcción se caracteriza por unas proporciones desiguales, ya que cuenta con una planta

de únicamente 6,62 m de longitud y una gran profundidad, que alcanza los 14,30 m.

Ilustración 5: Maison Guiette

2.3. EL SOFTWARE: DESIGN BUILDER

Debido a que el sector de la construcción es uno de los mayores consumidores de

energía, y en consonancia con la creciente preocupación mundial por este aspecto, en los

últimos años han surgido diversos software de cálculo que permiten realizar simulaciones

energéticas de edificios. Este software se ha convertido en una herramienta fundamental para

conseguir reducir el consumo de energía, tanto para proyectar nuevos edificios como para

rehabilitar los ya existentes.

Actualmente, existen numerosos software en el mercado que permiten realizar

simulaciones energéticas, pero se ha decidido utilizar este en el estudio por considerarse el

más completo.

Design Builder es una herramienta informática muy potente que permite realizar

simulaciones energéticas, y que utiliza como motor de cálculo Energy Plus.

Ilustración 6: Software Design Builder

Mediante la introducción de la geometría y los componentes del edificio, es posible

obtener numerosos parámetros acerca de su comportamiento, algunos de los cuales se

detallan a continuación:

Page 23: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

2. Introducción

20 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

- Cálculo de cargas según ASHRAE para las condiciones fijadas.

- Detalles acerca de los elementos constructivos y la ventilación.

- Parámetros de confort como la temperatura del aire o la humedad.

- Cálculo de la luz natural existente en el interior del edificio.

- Cálculos de la ventilación interior y exterior con CFD (Dinámica de Fluidos

computacional), con la presentación de los resultados en 3D.

Estos datos, además de otros muchos, el programa los representa gráficamente o

mediante tablas. Además de esto, es posible obtener estos datos para cualquier espacio

temporal, anual, mensual, semanal, diario u horario. Mediante esta simulación tan exhaustiva

de todos los parámetros intervinientes en un edificio se considera que se puede realizar un

análisis completo del edificio propuesto.

Este software de simulación energética, es posible descargarlo en versión de prueba en

el siguiente enlace: https://www.designbuilder.co.uk/

Page 24: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 21

Page 25: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

3. Objetivo y Alcance

22 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

3. OBJETIVO Y ALCANCE

El principal objetivo de este estudio es realizar una comparación de los resultados

obtenidos en una simulación energética realizada sobre la “Maison Guiette”. Concretamente,

se realizarán dos análisis energéticos, un primer análisis correspondiente a la construcción en

su situación actual, con los materiales de construcción, en lo referente a cerramientos e

instalaciones, planteados en su construcción en 1926. Posteriormente, se propondrán una

serie de medidas de mejora, con el fin de reducir la demanda energética del edificio

manteniendo o incluso llegando a mejorar confort.

De esta forma, analizando una misma construcción, se pretende evaluar el potencial de

mejora existente en el ámbito de la eficiencia energética. El fin último de este estudio es

conseguir dirigir el entorno hacia un modelo sostenible, basado en una demanda casi nula de

energía, que permita reducir notablemente las Emisiones de Gases de Efecto Invernadero en

el sector de la construcción.

Adicionalmente, como objetivos secundarios se plantean los siguientes:

- Realizar un análisis económico que permita justificar la viabilidad económica de las

mejoras propuestas.

- Constatar la importancia de la rehabilitación de los edificios, de tal forma que este

estudio y los resultados obtenidos sirvan como modelo para futuros proyectos.

Page 26: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 23

Page 27: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

4. Metodología

24 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

4. METODOLOGÍA

Para llevar a cabo este estudio, se ha seguido una metodología que se describe a

continuación:

1. Definición del caso de estudio, obteniendo toda la información posible sobre el mismo

como emplazamiento, orientación, datos climáticos, distribución de espacios,

materiales de construcción, etc. Toda esta información se ha obtenido de diferentes

bases de datos con el fin de manejar una información lo más veraz posible.

2. Introducción en el software utilizado Design Builder de la vivienda con las

características originales diseñadas por Le Corbusier.

3. Análisis de los resultados obtenidos en cuanto a la demanda energética además de

otros muchos factores como la temperatura del aire o la humedad, entre otros.

4. A partir de los datos obtenidos se proponen una serie de medidas de mejora en los

cerramientos, huecos y sistemas, con el fin de mantener la esencia de la vivienda

inicial.

5. Simulación energética de la vivienda con las mejoras de rehabilitación propuestas.

6. Obtención de resultados de esta nueva simulación.

7. Comparación de los resultados obtenidos en la primera simulación con los de la

vivienda con las mejoras implementadas, con el fin de comprobar la idoneidad de las

mismas y valorar si se ha conseguido el fin último del estudio, reducir la demanda

energética.

8. Análisis económico de los resultados para comprobar la viabilidad de los mismos,

comparando la demanda energética de ambas simulaciones y utilizando para ello los

precios del mix energético y los coeficientes de paso energéticos. Adicionalmente, y

con el fin de realizar el estudio económico completo, se estudiará el periodo de

amortización de las medidas de mejora propuestas.

9. Conclusiones globales obtenidas del estudio.

Page 28: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 25

Page 29: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

5. Descripción de la Vivienda

26 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

5. DESCRIPCIÓN DE LA VIVIENDA

La edificación objeto de estudio cuenta con un sótano y cuatro plantas sobre rasante,

cuyas dimensiones son de 6,62 m de la fachada principal por 14,30 m de profundidad, y con

una altura total de 12,40 m. Por tanto, nos encontramos ante una construcción muy particular,

con una superficie total de 94,66 m2. El volumen total de la construcción es de 1.173,86 m3.

A continuación se muestran los distintos alzados exteriores que permiten obtener una

visión general de la “Maison Guiette”:

Ilustración 7: Alzado Norte

Ilustración 8: Alzado Sur.

Ilustración 8: Alzado Este

Page 30: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 27

Ilustración 9: Alzado Oeste

Las coordenadas geográficas de esta edificación se muestran a continuación:

Altitud sobre el nivel del mar: 7m

Latitud: 51°13'11.6'' N

Longitud: 4°24'12.5'' E

5.1. ORIENTACIÓN

Un aspecto fundamental a la hora de realizar un análisis energético de una edificación es

su orientación. Este factor nos permitirá proponer las estrategias bioclimáticas correctas en

relación a la luz solar, intentando aprovechar al máximo la incidencia de la misma.

Así pues, en la “Maison Guiette”, la fachada principal se encuentra orientada al norte,

como se puede observar en la siguiente ilustración:

Ilustración 10: Orientación de la Maison Guiette

Page 31: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

5. Descripción de la Vivienda

28 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Ilustración 11: Orientación de la Maison Guiette (2)

5.2. DISTRIBUCIÓN DEL ESPACIO INTERIOR

Como se ha comentado anteriormente, la “Maison Guiette” cuenta con unas proporciones

muy particulares, fruto de la parcelación local en estrechas franjas, dando lugar a una planta

de 14,30 m de largo y 6,62 m de ancho. Además, esta proporción rectangular queda dividida

en dos cuadrados o crujías longitudinales. La primera crujía, junto a la medianera, es el

resultado de la aplicación de una escalera que va de fachada anterior a posterior, cuyo objetivo

es enlazar los espacios de las distintas plantas de la edificación. La segunda crujía contiene

el resto de espacios que se organiza de forma diferente según la planta en la que nos

encontremos.

De esta forma, cada una de las plantas se distribuye de la siguiente manera:

PLANTA BAJA: Compuesta por cocina, aseo, salón y jardín:

Ilustración 12: Vista planta baja

Page 32: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 29

PLANTA PRIMERA: Compuesta por dos habitaciones, un baño y lo que se

entiende que es una zona de estar o de estudio:

Ilustración 13: Vista planta primera

PLANTA SEGUNDA: Compuesta por una habitación y un pequeño espacio que

da acceso a la escalera:

Ilustración 14: Vista planta segunda

PLANTA TERCERA: Compuesta por la zona destinada al taller de Rene Guiette

y una terraza:

Ilustración 15: Vista planta tercera

Page 33: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

5. Descripción de la Vivienda

30 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Por último, y para dar una visión general de lo explicado en este punto, he creado una

vista en 3D de la vivienda en la que se pueden observar los distintos espacios interiores de

los que se compone la misma:

Ilustración 16: Vista 3D de los espacios interiores

5.3. COMPOSICIÓN DE LOS CERRAMIENTOS

Debido a la dificultad para encontrar información acerca de los sistemas constructivos

utilizados en esta vivienda en su construcción, para realizar este estudio se han supuesto

unos cerramientos tipo que componen la edificación, siguiendo la tradición constructiva que

existía en los años 20 e intentando que estos se asemejen lo más posible a los existentes en

la realidad.

De esta forma, se han dispuesto las siguientes composiciones de cerramientos:

SOLERA:

Listado de capas:

1. Solera de hormigón de 25 cm.

2. Solado de baldosas cerámicas de 1 cm.

Espesor total: 26 cm.

Transmitancia térmica: 2,28 (W/m2·K).

FACHADAS:

Listado de capas (de exterior a interior):

1. Bloque de hormigón de 5 cm.

2. ½ pie de ladrillo macizo métrico o catalán de 6 cm.

Page 34: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 31

3. Cámara de aire de 1 cm

4. Tabicón de ladrillo hueco doble de 6 cm.

5. Enlucido de yeso 1000 < d < 1300 de 2 cm.

Espesor total: 20 cm.

Transmitancia térmica: 1,63 (W/m2·K).

CUBIERTA:

Listado de capas:

1. Solado de baldosas cerámicas de 2 cm.

2. Capa de mortero de agarre de 1 cm.

3. Tablero rasillón de 1 cm.

4. Tabicones de ladrillo hueco de 6 cm.

5. Lámina impermeabilizante de 1 cm.

6. Losa de hormigón de 20 cm.

7. Enlucido de yeso de 2 cm.

Espesor total: 24 cm.

Transmitancia térmica: 3,76 (W/m2·K).

Los anteriores valores de transmitancias han sido calculados a través de la

biblioteca de materiales de la Herramienta Unificada Lider-Calener.

Ilustración 17: Encuentro solera – fachada

Page 35: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

5. Descripción de la Vivienda

32 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Ilustración 18: Encuentro cubierta – fachada

5.4. PROPIEDADES DE LOS HUECOS

En cuanto a las propiedades de los huecos, se ha supuesto un acristalamiento con vidrios

monolíticos instalados sobre carpintería de acero laminado y con un espesor de 4 mm y sin

rotura de puente térmico.

Características técnicas:

Transmitancia térmica: 3,84

W/(m2·K).

Factor solar g = 0,88.

Transmisión luminosa: 91%.

Transmisión solar directa: 87%.

Absorción solar directa: 5%.

Ilustración 19: Vidrio monolítico

Con las propiedades que se han detallado, se han identificado los siguientes vidrios en la

vivienda:

PLANTA BAJA:

Alzado Norte:

- 1 carpintería de dimensiones: 460 x 100 cm (ancho x alto).

- 1 carpintería de dimensiones: 85 x 350 cm (ancho x alto).

Superficie total acristalada: 7,57 m2.

Page 36: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 33

Alzado Sur:

- 1 carpintería de dimensiones: 460 x 320 cm (ancho x alto).

- 1 carpintería de dimensiones: 85 x 350 cm (ancho x alto).

Superficie total acristalada: 17,69 m2.

Alzado Este:

Carece de superficie acristalada por tratarse de una medianera.

Alzado Oeste:

- 4 carpinterías de dimensiones: 20 x 110 cm (ancho x alto).

- 1 carpintería de dimensiones: 125 x 110 cm (ancho x alto).

Superficie total acristalada: 2,25 m2.

TOTAL: 27,51 m2

PLANTA PRIMERA:

Alzado Norte:

- 1 carpintería de dimensiones: 460 x 100 cm (ancho x alto).

- 1 carpintería de dimensiones: 85 x 320 cm (ancho x alto).

Superficie total acristalada: 7,32 m2.

Alzado Sur:

- 1 carpintería de dimensiones: 460 x 110 cm (ancho x alto).

- 1 carpintería de dimensiones: 85 x 300 cm (ancho x alto).

Superficie total acristalada: 7,61 m2.

Alzado Este:

Carece de superficie acristalada por tratarse de una medianera.

Alzado Oeste:

- 1 carpintería de dimensiones: 410 x 110 cm (ancho x alto).

Superficie total acristalada: 4,51 m2.

TOTAL: 19,44 m2

PLANTA SEGUNDA:

Alzado Norte:

- 1 carpintería de dimensiones: 460 x 410 cm (ancho x alto).

- 1 carpintería de dimensiones: 85 x 410 cm (ancho x alto).

Superficie total acristalada: 22,34 m2.

Alzado Sur:

- 1 carpintería de dimensiones: 460 x 110 cm (ancho x alto).

- 1 carpintería de dimensiones: 85 x 240 cm (ancho x alto).

- 1 carpintería de dimensiones: 85 x 125 cm (ancho x alto).

Superficie total acristalada: 8,16 m2.

Page 37: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

5. Descripción de la Vivienda

34 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Alzado Este:

Carece de superficie acristalada por tratarse de una medianera.

Alzado Oeste:

- 1 carpintería de dimensiones: 410 x 110 cm (ancho x alto).

Superficie total acristalada: 4,51 m2.

TOTAL: 35,01 m2

Total superficie acristalada de la vivienda: 81,96 m2

Y por fachadas, la superficie acristalada es la siguiente:

Fachada Norte: 37,23 m2.

Fachada Sur: 33,46 m2.

Fachada Este: 0 m2.

Fachada Oeste: 11,27 m2.

5.5. COMPARACIÓN DE LOS VALORES LÍMITE DE TRANSMITANCIAS CON LA

SITUACIÓN ACTUAL

Como era de esperar, los valores de las transmitancias obtenidos del análisis de la

envolvente térmica de la vivienda son muy superiores a los valores límite establecidos por la

actual Directiva 2010/31/UE del Parlamento Europeo y del Consejo del 19 de Mayo de 2010

relativa a la eficiencia energética de los edificios, cuya transposición se plasma en la EPBD

(Energy Performance of Buildings Directive), estableciendo los siguientes valores límite de

transmitancias:

Valores límite de transmitancias

según CTE (W/m2·K)

Situación actual de

transmitancias (W/m2·K)

Cubierta 0,3 3,76

Fachadas 0,4 1,63

Solera 0,4 2,28

Vidrios 2,5 3,84

Tabla 1: Comparativa de los valores límite de transmitancias con la situación actual

5.6. TASA DE VENTILACIÓN

La tasa de ventilación de una vivienda hace referencia a las pérdidas energéticas por

convección que se producen al calentar una vivienda. Este calentamiento provoca una

Page 38: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 35

diferencia de presiones haciendo que la presión en la zona superior aumente mientras que en

la zona inferior disminuye. El desequilibrio debido a esta diferencia de presiones ocasiona que

en la zona superior donde se concentra el aire caliente, se produzcan pérdidas hacia el

exterior. De la misma forma, en la zona inferior donde se concentra el aire frio, la menor

presión de este hace que se produzcan infiltraciones de aire exterior hacia el interior.

Para la vivienda del estado actual, se ha supuesto una tasa de ventilación teórica de

acuerdo a las propiedades de los cerramientos existentes. Lo ideal sería poder realizar el

ensayo de estanqueidad Blower-Door, que mide las renovaciones de aire por infiltraciones no

deseadas. Sin embargo, debido a la imposibilidad de poder realizar los mismos se ha supuesto

una tasa de ventilación media de 4 renovaciones a la hora. Este valor de las renovaciones,

como se ha explicado anteriormente, hace referencia al volumen total de aire que entra y sale

de la vivienda cada hora debido a las infiltraciones por carpintería y otros elementos de la

envolvente. Así pues, dado que el volumen de la vivienda es de 1.041,26 m3, una tasa de

ventilación de 4 renovaciones a la hora significa que cada hora, salen y entran a la vivienda

4.165,04 m3 (1.041,26*4) de aire debido a las infiltraciones.

Page 39: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

5. Descripción de la Vivienda

36 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 40: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 37

6. ANÁLISIS DE LOS DATOS CLIMÁTICOS

Para llevar a cabo este estudio analizar los datos climáticos del lugar donde se encuentra

la vivienda es un aspecto fundamental. El análisis de estos datos permitirá conocer cuáles

son las necesidades bioclimáticas de la vivienda, con el fin de proponer unas soluciones que

permitan resolver las deficiencias existentes en este ámbito. No todas las soluciones son

válidas para cualquier vivienda, por lo que será necesario conocer en profundidad el clima de

la zona para proponer e implementar las mejoras que mejor resultado aseguren.

6.1. CLIMOGRAMA

En la siguiente ilustración se puede observar la precipitación media anual en mm en

Europa, donde Bélgica posee una precipitación anual media de 847 mm, valor superior a la

media del resto de países de Europa.

Ilustración 20: Precipitación media anual en Europa. Fuente: Datos.banco-mundial.org

A continuación, se puede observar el climograma por meses de la ciudad donde se

encuentra la vivienda objeto de estudio, Amberes (Bélgica). En él, se observa que

prácticamente todos los meses del año son lluviosos, superando las barras de precipitación

del climograma a la línea de temperatura media, y con una precipitación media mensual de

65 mm.

Page 41: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

6. Análisis de los Datos Climáticos

38 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Gráfico 2: Climograma Amberes. Fuente: Climate-Data.org

6.2. DIAGRAMA DE TEMPERATURAS

En cuanto a las temperaturas, en el siguiente diagrama y en la tabla posterior se puede

observar que a lo largo de todo el año las temperaturas son frías, siendo la temperatura media

del mes más frio de 2,4ºC en enero, y la más alta de 17,4ºC en los meses de julio y agosto.

La temperatura media anual se sitúa en 10,41ºC. De esta forma, será necesario plantear entre

las mejoras un buen aislamiento térmico para reducir la demanda energética de calefacción

de la vivienda. En consecuencia a esto, se entiende que la demanda de refrigeración será

prácticamente nula, ya que las temperaturas máximas en ningún caso superan los 22ºC en

todo el año.

Gráfico 3: Diagrama de temperaturas. Fuente: Climate-Data.org

Page 42: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 39

Tabla 2: Registro anual de temperaturas. Fuente: Climate-Data.org

6.3. ROSA DE LOS VIENTOS

La rosa de los vientos que se muestra a continuación muestra la dirección del viento del

lugar donde se sitúa la edificación. Debido a la imposibilidad de encontrar un registro de datos

más amplio, se ha tomado este como referencia para la simulación, que corresponde al

registro del viento de dos semanas completas.

Como se puede observar, la mayor parte de los vientos provienen del Noroeste y del

Suroeste, con velocidades del viento entre 10 y 25 km/h, factor que se tendrá en cuenta

posteriormente en la simulación con las medidas de mejora con el fin de aprovechar la

ventilación natural.

Gráfico 4: Rosa de los vientos. Fuente: Meteoblue

Page 43: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

6. Análisis de los Datos Climáticos

40 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 44: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 41

7. SIMULACIÓN ENERGÉTICA DEL ESTADO ACTUAL

7.1. DEFINICIÓN DEL PROCESO DE MODELADO DE LA VIVIENDA EN EL

SOFTWARE

Con el fin de poder analizar correctamente los resultados obtenidos, para cada uno de

los dos casos de estudio se han realizado dos simulaciones, que corresponden a la semana

extrema de invierno (20-26 de enero), y la semana extrema de verano (13-19 de julio).

De esta forma, se ha realizado un total de cuatro simulaciones (dos para caso de estudio)

que permitirán analizar en detalle los datos obtenidos en cada una de ellas.

A nivel global, y con el fin de poder comparar los resultados de una forma más sencilla,

también se ha realizado una simulación anual y mensual para cada uno de los casos de

estudio, pero estas no se estudiarán en detalle. Las simulaciones anuales y mensuales se

utilizarán para comparar los resultados obtenidos de los dos modelos de estudio, y obtener la

reducción total de los consumos.

Para realizar esta simulación,

lo primero que se ha llevado a cabo

es el modelado 3D de la misma en el

software, partiendo de los planos de

la vivienda. En la “Maison Guiette”,

existen partes de la misma que no

componen los cerramientos, como

son los balcones o la valla que limita

el jardín de la planta baja. Estos

elementos se han realizado de forma

diferente, utilizando “bloques de

componente”. Estos bloques no

generan zonas térmicas, pero

permiten considerar las

obstrucciones solares que afectan al

edificio, entre otras funciones.

Ilustración 21: Modelado 3D en el software Design

Builder

Una vez finalizado este modelo con la geometría básica de la vivienda, lo siguiente que

se ha realizado es realizar la división de cada una de las plantas utilizando particiones

interiores. Con el fin de facilitar la posterior interpretación de resultados, a cada zona térmica

creada mediante estas particiones, se la ha nombrado con el uso correspondiente de la

misma, utilizando para ello el árbol del modelo del software.

El siguiente punto ha sido dibujar en el modelo ya creado todas las aberturas y huecos,

que serán fundamentales para la obtención de los resultados, puesto que en estas zonas se

producen las mayores pérdidas energéticas.

Page 45: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

42 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Una vez finalizado el modelado 3D de la vivienda, se han utilizado las herramientas del

programa para definir los aspectos de la misma. Los aspectos que se han definido son los

siguientes:

1. Actividad:

El primer factor definido en lo referente a la actividad de la vivienda ha sido la densidad

de ocupación de la misma. Dado que se trata de una vivienda de uso residencial y

pensado como espacio de trabajo de su inquilino, se ha establecido un valor de 0,03

personas/m2.

A continuación, se ha definido una programación, que relaciona el tiempo con la

densidad de ocupación establecida. Esta programación ha sido establecida

entendiendo que se trata de una vivienda, de la siguiente manera:

De lunes a viernes:

- Hasta las 07.00h: 1.

- Hasta las 08.00h: 0,75.

- Hasta las 15.00h: 0,5.

- Hasta las 17.00h: 1.

- Hasta las 21.00h: 0.

- Hasta las 24.00h: 1.

De viernes a domingo:

o Hasta las 10.00h: 1.

o Hasta las 17.00h: 0,5.

o Hasta las 22.00h: 0.

o Hasta las 24.00h: 1.

En periodo vacacional:

o Hasta las 11.00h: 1.

o Hasta las 16.00h: 0,75.

o Hasta las 22.00h: 0.

o Hasta las 24.00h: 0,75.

Aclaración: Esta programación definida hace referencia a la densidad de ocupación.

De esta forma, por ejemplo, cuando se indica hasta las 16.00h: 0,75, quiere decir que

hasta esa hora de un determinado día se considera que la densidad de ocupación de

la vivienda es 0,0225 personas/m2 (el 75% del valor establecido, 0,03 personas/m2).

Introducida la programación, se ha definido la demanda de ACS, establecida para

este caso en 0,84 l/m2·día.

Para las consignas de temperatura, se han tomado como referencia los siguientes

valores, y que se entiende que se trata de valores adecuados para una vivienda:

Calefacción:

o Consigna de temperatura: 22ºC.

o Consigna secundaria: 21ºC.

Refrigeración:

o Consigna de temperatura: 24ºC.

o Consigna secundaria: 25ºC.

Page 46: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 43

Por otro lado, también ha sido introducido una densidad de potencia de 4,40 W/m2,

que podría equipararse a la potencia consumida por diferentes elementos de la

vivienda (ordenadores, electrodomésticos…).

2. Cerramientos:

Debido a que anteriormente únicamente se ha introducido el diseño 3D de la vivienda,

es necesario definir cada uno de los cerramientos que la componen. De acuerdo a lo

estudiado anteriormente en este proyecto, los cerramientos introducidos por capas

corresponden a los siguientes elementos:

Muros exteriores.

Cubierta.

Particiones interiores.

Suelo sobre terreno.

Estos elementos son fundamentales en el estudio, puesto que definirán las

transmitancias térmica hacia el exterior y las posibles pérdidas de energía que se

producen a través de los mismos.

3. Aberturas:

Definidos los cerramientos se ha pasado a definir las aberturas de acuerdo a lo

indicado anteriormente, estableciendo el porcentaje de acristalamiento de las mismas.

4. Iluminación:

Se ha establecido una densidad normalizada de potencia de 5,00 W/m2·100lux para

toda la vivienda, y manteniendo la misma programación definida anteriormente en lo

referente a la actividad.

5. HVAC:

Para continuar, se han definido los sistemas de calefacción y refrigeración que

componen la vivienda.

Calefacción:

- Combustible: Gas natural.

- COP estacional del sistema: 0,85.

- Programación:

Tabla 3: Programación del sistema de calefacción

Page 47: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

44 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Como se puede observar en la tabla, se ha establecido una programación

entendiendo que en los meses de mayo a septiembre la calefacción está

apagada, debido al incremento de temperaturas.

Para el resto de los meses del año, la programación definida varía en función

del día de la semana:

- De lunes a viernes: 7.00h-9.00h y 16.00h-23.00h. Se entiende que

en estos intervalos es cuando se podría la calefacción en una

vivienda.

- Sábados y domingos: 7.00h-23.00h. Los fines de semana,

entendiendo que la vivienda puede estar más ocupada, el uso del

sistema de calefacción es mayor.

Refrigeración:

- Combustible: Electricidad.

- COP estacional del sistema: 1,80.

- Programación:

Tabla 4: Programación del sistema de refrigeración

Como es lógico, el uso del sistema de refrigeración se reduce a los meses de

junio a septiembre, donde las temperaturas aumentan considerablemente.

El uso que se ha establecido de la refrigeración es el mismo que en el caso de

la calefacción, distinguiendo entre días laborables y fines de semana de la

siguiente manera:

- De lunes a viernes: 7.00h-9.00h y 16.00h-23.00h.

- Sábados y domingos: 7.00h-23.00h.

Todas las programaciones establecidas son aproximaciones, y se han establecido

atendiendo al uso habitual que pudiera tener el espacio residencial que estamos estudiando.

Es cierto que utilizar programaciones con horarios de uso diferentes podría ocasionar

variaciones importantes en los resultados. Sin embargo, dado que el objetivo del estudio es

comparar los resultados obtenidos de las dos simulaciones que se realizarán (inicial y después

de implementar las mejoras), y puesto que las programaciones se mantendrán sin variaciones

en ambas simulaciones, se considera que este factor no afectará en los resultados.

Page 48: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 45

Como ya se ha comentado, se van a realizar dos simulaciones que corresponden a la

semana extrema de invierno (20-26 de enero) y la semana extrema de verano (13-19 de julio),

y que se presentan a continuación:

7.2. SEMANA EXTREMA DE INVIERNO (20-26 de enero)

Los resultados obtenidos en la simulación de la semana del 20 al 26 de enero son los

siguientes:

Page 49: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

46 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Datos Climáticos:

Gráfico 5: Simulación inicial. Semana extrema de invierno. Datos climáticos

Page 50: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 47

Confort:

Gráfico 6: Simulación inicial. Semana extrema de invierno. Confort

Page 51: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

48 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Ganancias Internas y Solares:

Gráfico 7: Simulación inicial. Semana extrema de invierno. Ganancias internas y solares

Page 52: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 49

Cerramientos y Ventilación:

Gráfico 8: Simulación inicial. Semana extrema de invierno. Cerramientos y ventilación

Page 53: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

50 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Consumos Desglosados:

Gráfico 9: Simulación inicial. Semana extrema de invierno. Consumos totales

Page 54: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 51

Consumos Totales:

Gráfico 10: Simulación inicial. Semana extrema de invierno. Consumos desglosados

Page 55: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

52 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Emisiones de CO2:

Gráfico 11: Simulación inicial. Semana extrema de invierno. Emisiones de CO2

Page 56: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 53

Cargas del Sistema:

Gráfico 12: Simulación inicial. Semana extrema de invierno. Cargas del sistema

Page 57: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

54 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

7.3. SEMANA EXTREMA DE VERANO (13-19 de julio):

Datos Climáticos:

Gráfico 13: Simulación inicial. Semana extrema de verano. Datos climáticos

Page 58: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 55

Confort:

Gráfico 14: Simulación inicial. Semana extrema de verano. Confort

Page 59: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

56 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Ganancias Internas y Solares:

Gráfico 15: Simulación inicial. Semana extrema de verano. Ganancias internas y solares

Page 60: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 57

Cerramientos y Ventilación:

Gráfico 16: Simulación inicial. Semana extrema de verano. Cerramientos y ventilación

Page 61: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

58 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Consumos Desglosados:

Gráfico 17: Simulación inicial. Semana extrema de verano. Consumos desglosados

Page 62: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 59

Consumos Totales:

Gráfico 18: Simulación inicial. Semana extrema de verano. Consumos totales

Page 63: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

60 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Emisiones de CO2:

Gráfico 19: Simulación inicial. Semana extrema de verano. Emisiones de CO2

Page 64: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 61

Cargas del Sistema:

Gráfico 20: Simulación inicial. Semana extrema de verano. Cargas del sistema

Page 65: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

62 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

7.4. SIMULACIÓN ANUAL:

A nivel global, se presentan los siguientes gráficos, que recogen los datos anuales de la simulación inicial de la “Maison Guiette”:

Datos Climáticos:

Gráfico 21: Simulación anual inicial. Datos climáticos

Page 66: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 63

Confort:

Gráfico 22: Simulación anual inicial. Confort

Page 67: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

64 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Ganancias Internas y Solares:

Gráfico 23: Simulación anual inicial. Ganancias internas y solares

Page 68: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 65

Cerramientos y Ventilación:

Gráfico 24: Simulación anual inicial. Cerramientos y ventilación

Page 69: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

66 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Consumos Desglosados:

Gráfico 25: Simulación anual inicial. Consumos desglosados

Page 70: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 67

Consumos Totales:

Gráfico 26: Simulación anual inicial. Consumos totales

Page 71: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

68 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Emisiones de CO2:

Gráfico 27: Simulación anual inicial. Emisiones de CO2

Page 72: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 69

Cargas del Sistema:

Gráfico 28: Simulación anual inicial. Cargas del sistema

Page 73: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

7. Simulación Energética del Estado Actual

70 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 74: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 71

8. PROPUESTA DE MEJORAS DE REHABILITACIÓN

Como se ha podido observar en los datos climáticos recogidos anteriormente, nos

encontramos con que el principal problema de la “Maison Guiette” son las bajas temperaturas

durante casi todo el año, que incluso durante los meses de verano muchos días se sitúan por

debajo de la temperatura de confort. Es por esto, que todas las propuestas de mejora que se

plantearán a continuación tendrán como principal objetivo mejorar el aislamiento de la

vivienda, con el fin de evitar la pérdida de energía en la misma hacia el exterior.

Por otra parte, también cabe destacar que la situación de la vivienda no es la óptima. Esto

es debido a los siguientes aspectos:

1. La fachada situada al norte, que en principio conviene protegerla lo más posible ya

que es la más fría de la vivienda, posee una gran superficie acristalada por la que

se pierde gran cantidad de energía.

2. La fachada este se trata de una medianera que limita con otra vivienda, por lo que

en ella no es posible facilitar la entrada de la luz solar de ninguna manera. La

posibilidad de actuación en esta fachada es nula.

3. La fachada sur, sí que se encuentra libre, por lo que en principio es la idónea para

aprovechar la luz solar, y lo ideal sería colocar la máxima cantidad de superficie

acristalada posible. Sin embargo, cabe destacar que a pocos metros de esta

fachada se encuentra un edificio de grandes dimensiones, que elimina

prácticamente toda la luz solar que pudiera entrar por la misma. Además de esto,

entre ambas viviendas existe una zona ajardinada con árboles de gran tamaño, lo

que limita aún más la entrada de luz solar.

4. La fachada oeste, se encuentra completamente libre, sin vegetación ni ninguna

edificación cercana. Debido a que como se puede observar en la rosa de los

vientos anterior la mayor parte de los vientos tienen esta dirección, esta fachada

se intentará proteger lo más posible.

Todos estos aspectos se pueden observar en la siguiente ilustración:

Ilustración 22: Situación de la “Maison Guiette”. Fuente: Google Maps

Page 75: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

8. Propuesta de Mejoras de Rehabilitación

72 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

En cualquier caso, aun con las limitaciones existentes, todas las medidas de mejora que

se propondrán a continuación buscarán mantener la esencia y el significado inicial de la

vivienda, intentando mejorarla únicamente en el aspecto energético.

De esta forma, las propuestas de mejora planteadas y que posteriormente serán

verificadas mediante la simulación energética con el software Design Builder se describen a

continuación:

8.1. COMPOSICIÓN DE LOS CERRAMIENTOS

En lo que respecta a cerramientos, se ha buscado mejorar las transmitancias térmicas de

los mismos, sobre todo mediante la introducción de aislantes térmicos de poliestileno extruido

XPS en el caso de la solera y de lana mineral en el caso de la fachada y cubierta. Se ha

optado por utilizar dos tipos de aislantes diferentes debido a que en el caso de la solera es

necesario asegurar que el material utilizado resiste las compresiones, con el fin de soportar

las posibles cargas que pudiera recibir del uso habitual.

Así pues, la configuración de las diferentes capas de la solera, fachada y cubierta quedan

de la siguiente manera:

SOLERA:

Listado de capas:

1. Solera de hormigón de 25 cm.

2. Poliestileno extruido XPS (0,034 W/mK) de 10 cm.

3. Solado de baldosas cerámicas de 1 cm.

Espesor total: 36 cm.

Transmitancia térmica: 0,30 (W/m2·K).

FACHADAS:

Listado de capas (de exterior a interior):

1. Bloque de hormigón de 5 cm.

2. ½ pie de ladrillo macizo métrico o catalán 40 mm < G < 50 mm de 6 cm.

3. Cámara de aire de 1 cm

4. MW Lana mineral (0,04 W/mK) de 10 cm.

5. Tabicón de ladrillo hueco doble de 6 cm.

6. Enlucido de yeso 1000 < d < 1300 de 2 cm.

Espesor total: 30 cm.

Transmitancia térmica: 0,32 (W/m2·K).

CUBIERTA:

Listado de capas:

1. Solado de baldosas cerámicas de 2 cm.

2. Cámara de aire de 5 cm

3. Mortero de cemento de 2 cm.

Page 76: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 73

4. Geotextil de poliéster de 0,5 cm.

5. Impermeabilización asfáltica monocapa de 0,4 cm.

6. Capa de grava de 8 cm.

7. MW Lana mineral (0,04 W/mK) de 10 cm.

8. Losa de hormigón de 20 cm.

9. Enlucido de yeso de 2 cm.

Espesor total: 49,9 cm.

Transmitancia térmica: 0,24 (W/m2·K).

8.2. PROPIEDADES DE LOS HUECOS

Respecto a los huecos, se propone sustituir los vidrios monolíticos existentes con una

transmitancia térmica muy elevada, por un doble acristalamiento con carpintería de aluminio

con rotura de puente térmico. Este tipo de vidrio, representa una solución viable en el estudio

que se está desarrollando, sin llegar a ser un vidrio de altas prestaciones como el que se

pudiera utilizar en el caso de Passivhaus que supondría un coste muy elevado.

De esta forma, el vidrio seleccionado presenta las siguientes características:

Características técnicas:

Transmitancia térmica: 2,40

W/(m2·K).

Factor solar g = 0,20.

Transmisión luminosa: 82%.

Transmisión solar directa: 75%.

Absorción solar directa: 8%.

Ilustración 23: Doble acristalamiento

8.3. OTRAS MEJORAS

Además de las mejoras antes propuestas en lo que se refiere a la mejora de los

cerramientos y vidrios, también se proponen otras mejoras de modificación de la vivienda que

se entiende que podrían ser beneficiosas para la reducción de la demanda energética:

La primera de estas mejoras nace fruto del análisis de la rosa de los vientos

adjunta en este estudio, en la que se puede observar que los vientos

predominantes vienen del Oeste. Por ello, la solución más óptima para los

intereses de la eficiencia energética es proteger al máximo esta fachada de las

Page 77: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

8. Propuesta de Mejoras de Rehabilitación

74 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

inclemencias meteorológicas. En esta fachada, como se puede observar en el

siguiente alzado la superficie acristalada es muy limitada:

Ilustración 24: Alzado Oeste

Aunque lo ideal sería cerrar por completo esta fachada, se decide mantener la

superficie acristalada de la misma con el fin de utilizar estos huecos para la

ventilación natural y permitir una circulación de aire dentro de la vivienda.

Además, como ya se ha comentado anteriormente esta fachada se encuentra

completamente libre y sin protección alguna de otros edificios cercanos. Por

ello, se propone la colocación de vegetación de hoja caduca, con el fin de limitar

los vientos fríos en esta fachada en invierno, y que lleguen únicamente los

necesarios para la ventilación natural de la vivienda.

La vegetación a colocar propuesta son abedules, ya que forman parte de la

flora típica en Bélgica. Se trata de un árbol de muy vertical, con hojas simples

y cerradas y ramas flexibles.

Ilustración 25: Abedul. Vegetación propuesta en fachada Oeste

Page 78: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 75

Otra de las medidas que se podrían proponer para mejorar la eficiencia

energética de la “Maison Guiette” sería eliminar el gran ventanal situado en la

fachada norte, ya que esta fachada es la más fría de la vivienda y por ella se

produce una gran pérdida de energía, aun sustituyendo los vidrios por otros

más eficientes como se ha comentado anteriormente.

Sin embargo, esta medida no se llevará a cabo en este estudio, puesto que

aunque el principal objetivo del mismo es reducir la demanda energética de la

vivienda esto se pretende realizar manteniendo la identidad de la misma.

De la misma forma, en la fachada sur, un aumento de la superficie acristalada

podría suponer una reducción de la demanda energética, ya que se

aprovecharía más la luz solar. En principio, esta medida tendría menos

repercusión que la eliminación de la superficie acristalada de la fachada norte,

y eso es debido a que, como se ha comentado anteriormente, en la cercanía

de esta fachada sur se encuentra un edificio de grandes dimensiones que limita

la cantidad de luz solar que llega a la misma.

Esta medida tampoco se llevará a cabo por la misma razón que la eliminación

de los vidrios en la fachada norte; se pretende mantener intacta la identidad de

la vivienda.

Como medida adicional, se propone la colocación en la cubierta de paneles

solares, que podrían reducir el consumo de electricidad de la vivienda,

utilizando como fuente principal de energía la luz solar.

8.4. COMPARACIÓN DE LOS VALORES LÍMITE DE TRANSMITANCIAS CON LAS

PROPUESTAS DE MEJORA IMPLEMENTADAS

Valores límite de transmitancias

según CTE (W/m2·K)

Situación con las propuestas

de mejora de transmitancias

(W/m2·K)

Cubierta 0,3 0,24

Fachadas 0,4 0,32

Solera 0,4 0,30

Vidrios 2,5 2,40

Tabla 5: Comparativa de los valores límite de transmitancias con la situación tras las mejoras implementadas

Page 79: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

8. Propuesta de Mejoras de Rehabilitación

76 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

8.5. TASA DE VENTILACIÓN

En este caso, el valor de la tasa de renovación establecido de acuerdo a la normativa es

de 0,8 renovaciones a la hora, valor muy inferior a las 4 renov/h que se había fijado en la

vivienda inicial.

De esta forma, con nuevo valor de la tasa de ventilación, el caudal de aire que entra y

sale de la vivienda cada hora debido a las infiltraciones se reduce notablemente, pasando de

4165,04 m3 iniciales a 833 m3. Esta reducción tan importante supondrá una reducción muy

significativa de la demanda energética en la vivienda, por lo que se considera un valor muy

significativo.

8.6. RESUMEN DE DATOS

Valores límite de

transmitancias

según CTE (W/m2·K)

Situación actual de

transmitancias

(W/m2·K)

Situación con las

propuestas de mejora de

transmitancias (W/m2·K)

Cubierta 0,3 3,76 0,24

Fachadas 0,4 1,63 0,32

Solera 0,4 2,28 0,30

Vidrios 2,5 3,84 2,40

Tabla 6: Valores de las transmitancias de las dos simulaciones

A través de los datos que se recogen en la anterior tabla, se puede deducir que las

medidas de mejora propuestas en lo que se refiere a la envolvente del edificio son las

correctas, ya que cumplen con los valores exigidos en lo que respecta a los límites de

transmitancias térmicas. De esta forma, se procede a realizar la simulación energética del

edificio con todas las mejoras, con el fin de comprobar si efectivamente, estas mejoras

suponen una reducción en el consumo energético del edificio y una mejora de las condiciones

de confort del mismo.

Page 80: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 77

Page 81: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

78 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

9. SIMULACIÓN ENERGÉTICA CON LAS MEJORAS INTRODUCIDAS

9.1. DEFINICIÓN DEL PROCESO DE MODELADO DE LA VIVIENDA EN EL

SOFTWARE

Con el objetivo de obtener unos resultados que se puedan comparar con los de la vivienda

inicial, todo lo referente a programaciones se ha mantenido sin modificaciones respecto a la

primera simulación. De esta forma, los cambios que se han introducidos son los descritos

anteriormente, y que se basan en mejorar la envolvente térmica de la “Maison Guiette”.

Además de los cambios en la envolvente, se ha sustituido la caldera de gas natural por

una de biomasa, cuyo COP estacional es superior.

Page 82: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 79

9.2. SEMANA EXTREMA DE INVIERNO (20-26 de enero)

Datos Climáticos:

Gráfico 29: Simulación mejoras. Semana extrema de invierno. Datos climáticos

Page 83: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

80 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Confort:

Gráfico 30: Simulación mejoras. Semana extrema de invierno. Confort

Page 84: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 81

Ganancias Internas y Solares:

Gráfico 31: Simulación mejoras. Semana extrema de invierno. Ganancias internas y solares

Page 85: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

82 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Cerramientos y Ventilación:

Gráfico 32: Simulación mejoras. Semana extrema de invierno. Cerramientos y ventilación

Page 86: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 83

Consumos Desglosados:

Gráfico 33: Simulación mejoras. Semana extrema de invierno. Consumos desglosados

Page 87: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

84 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Consumos Totales:

Gráfico 34: Simulación mejoras. Semana extrema de invierno. Consumos totales

Page 88: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 85

Emisiones de CO2:

Gráfico 35: Simulación mejoras. Semana extrema de invierno. Emisiones de CO2

Page 89: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

86 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Cargas del Sistema:

Gráfico 36: Simulación mejoras. Semana extrema de invierno. Cargas del sistema

Page 90: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 87

9.3. SEMANA EXTREMA DE VERANO (13-19 de enero)

Datos Climáticos:

Gráfico 37: Simulación mejoras. Semana extrema de verano. Datos climáticos

Page 91: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

88 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Confort:

Gráfico 38: Simulación mejoras. Semana extrema de verano. Confort

Page 92: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 89

Ganancias Internas y Solares:

Gráfico 39: Simulación mejoras. Semana extrema de verano. Ganancias internas y solares

Page 93: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

90 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Cerramientos y Ventilación:

Gráfico 40: Simulación mejoras. Semana extrema de verano. Cerramientos y ventilación

Page 94: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 91

Consumos Desglosados:

Gráfico 41: Simulación mejoras. Semana extrema de verano. Consumos desglosados

Page 95: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

92 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Consumos Totales:

Gráfico 42: Simulación mejoras. Semana extrema de verano. Consumos totales

Page 96: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 93

Emisiones de CO2:

Gráfico 43: Simulación mejoras. Semana extrema de verano. Emisiones de CO2

Page 97: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

94 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Cargas del Sistema:

Gráfico 44: Simulación mejoras. Semana extrema de verano. Cargas del sistema

Page 98: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 95

9.4. SIMULACIÓN ANUAL:

Los datos más relevantes obtenidos de la simulación anual con las mejoras introducidas en la “Maison Guiette” son los siguientes:

Datos Climáticos:

Gráfico 45: Simulación anual mejoras. Datos climáticos

Page 99: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

96 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Confort:

Gráfico 46: Simulación anual mejoras. Confort

Page 100: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 97

Ganancias Internas y Solares:

Gráfico 47: Simulación anual mejoras. Ganancias internas y solares

Page 101: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

98 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Cerramientos y Ventilación:

Gráfico 48: Simulación anual mejoras. Cerramientos y ventilación

Page 102: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 99

Consumos Desglosados:

Gráfico 49: Simulación anual mejoras. Consumos desglosados

Page 103: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

100 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Consumos Totales:

Gráfico 50: Simulación anual mejoras. Consumos totales

Page 104: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 101

Emisiones de CO2:

Gráfico 51: Simulación anual mejoras. Emisiones de CO2

Page 105: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

9. Simulación Energética con las Mejoras Introducidas

102 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Cargas del Sistema:

Gráfico 52: Simulación anual mejoras. Cargas del sistema

Page 106: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 103

Page 107: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

10. Iluminación Natural, Simulación de Temperaturas y Movimientos de Aire

104 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

10. ILUMINACIÓN NATURAL, SIMULACIÓN DE TEMPERATURAS Y

MOVIMIENTOS DE AIRE

10.1. ILUMINACIÓN NATURAL:

Como complemento al estudio y simulaciones energéticas realizadas, se ha realizado un

estudio de la iluminación natural de la vivienda en dos hipótesis, el solsticio de invierno y el

solsticio de verano.

Dado que con el fin de no alterar la esencia de la vivienda, modificando aberturas, los

modelos de iluminación natural obtenidos son los mismos para ambas simulaciones, por lo

que como el lógico se analizarán de forma conjunta. Las simulaciones que se presentan a

continuación se han realizado considerando días claros soleados, y con el objetivo de conocer

el efecto que produce el sol en la “Maison Guiette”.

SOLSTICIO DE INVIERNO (21 de diciembre a las 12.00h):

Ilustración 26: Iluminación natural. Solsticio de invierno. Alzado Sur

Ilustración 27: Iluminación natural. Solsticio de invierno. Alzado Norte

Page 108: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 105

Ilustración 28: Iluminación natural. Solsticio de invierno. Alzado Este

Ilustración 29: Iluminación natural. Solsticio de invierno. Alzado Oeste

Como se puede observar en las anteriores ilustraciones, en el solsticio de invierno el sol

se encuentra en su punto más bajo, favoreciendo la entrada de radiación solar en la vivienda

por el alzado Sur, con la consecuente mejora de la eficiencia energética debido a las bajas

temperaturas existentes.

Por tanto, todas las aberturas situadas en el alzado Sur se encuentran bien situadas,

puesto que favorecen la entrada de la radiación solar. Además, podemos observar que el

cerramiento de la parte exterior de la vivienda situado en el alzado Sur no impide la entrada

de la luz solar en la misma.

Como se ha comentado anteriormente en otros puntos de este estudio, debido a que ya

se preveía, todas las aberturas situadas en la fachada Norte no favorecen la disminución del

consumo energético de la vivienda, puesto que son un foco muy importante de pérdida de

energía y en estos puntos, nunca se producen ganancias de luz solar debido a que el sol

nunca incide en esta fachada.

Por otro lado, en la fachada Este si existe impacto de la luz solar, por lo que quizá sería

interesante aumentar la cantidad de aberturas existentes para aprovechar estas ganancias

solares.

Page 109: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

10. Iluminación Natural, Simulación de Temperaturas y Movimientos de Aire

106 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

SOLSTICIO DE VERANO (21 de julio a las 12.00h):

Ilustración 30: Iluminación natural. Solsticio de verano. Alzado Sur

Ilustración 31: Iluminación natural. Solsticio de verano. Alzado Norte

Page 110: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 107

Ilustración 32: Iluminación natural. Solsticio de verano. Alzado Este

Ilustración 33: Iluminación natural. Solsticio de verano. Alzado Oeste

En el solsticio de verano, el sol se encuentra en su punto más alto, por lo que las

ganancias solares que se producen son menores. Debido al incremento de temperaturas que

se produce en esta época del año, no tener ganancias solares no es tan importante en verano

desde el punto de vista de la eficiencia energética. Aunque no es el caso puesto que nos

encontramos ante un clima frio cuya temperatura media anual es de 10,41ºC. Por tanto, es

más importante prestar atención a las ganancias solares que se producen en el solsticio de

invierno que a este solsticio de verano.

En los mapas de luz diurna que se pueden observar a continuación, se muestra la

distribución de los niveles de luz natural sobre un plano que atraviesa el edificio, de acuerdo

a las condiciones de cielo establecidas. Los niveles de luz diurna se expresan mediante los

valores de iluminancia (Lux) y de factor de luz diurna (FLD).

Page 111: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

10. Iluminación Natural, Simulación de Temperaturas y Movimientos de Aire

108 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Ilustración 34: Mapa de luz diurna. Planta 0

Ilustración 35: Mapa de luz diurna. Planta 1

Page 112: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 109

10.2. SIMULACIÓN DE TEMPERATURAS Y MOVIMIENTOS DE AIRE:

Para comprender lo que ocurre dentro de la vivienda, se ha realizado el estudio de dos

secciones de la misma, y que nos permiten conocer las temperaturas en cada uno de los

espacios y los movimientos de aire existentes en estas secciones.

PRIMERA SECCIÓN:

Ilustración 36: Simulación de temperaturas y movimientos de aire, Sección 1

Ilustración 37: Simulación de temperaturas y movimientos de aire, Sección 1

Page 113: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

10. Iluminación Natural, Simulación de Temperaturas y Movimientos de Aire

110 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

La primera sección elegida de la “Maison Guiette” se sitúa muy próxima a la fachada norte

de la vivienda, la más fría. En ella, podemos observar que las temperaturas se sitúan en torno

a los 18-20ºC. Se puede observar ligeramente, que en la parte alta de cada una de las

estancias la temperatura es superior, esto es debido a que el flujo de calor asciende. Debido

a que se trata de una vivienda y las alturas de cada una de las estancias no son muy

significativas, esta diferencia de temperatura no es muy importante.

Ilustración 38: Simulación de temperaturas y movimientos de aire, Sección 1

En lo que respecta al movimiento del aire, en la ilustración inmediatamente superior se

puede observar un movimiento de aire circular. Esto es debido a la gran cantidad de aberturas

próximas existentes, que provocan un movimiento del aire circular de la pared más fría (donde

se encuentran las aberturas) al resto de la vivienda. Sin embargo, estos movimientos de aire

no superan por norma general los 0,07 m/s, por lo que se entiende que no comprometen las

condiciones de confort de los usuarios.

SEGUNDA SECCIÓN:

Ilustración 39: Simulación de temperaturas y movimientos de aire, Sección 2

Page 114: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 111

La segunda de las secciones estudiadas corresponde a una sección vertical próxima a la

fachada Este de la vivienda. En ella, podemos observar un comportamiento en lo referente a

las temperaturas similar al de la sección 1, con temperaturas que si sitúan en torno a los 20ºC.

Ilustración 40: Simulación de temperaturas y movimientos de aire, Sección 2

Observando más en detalle esta sección, se observan unos movimientos del aire

circulares y con velocidades bajas, ya vistos en la sección 1. Los movimientos existentes en

cada una de las estancias se deben simplemente al intercambio de calor existente entre las

paredes más frías de la vivienda y las zonas más cálidas.

Page 115: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

10. Iluminación Natural, Simulación de Temperaturas y Movimientos de Aire

112 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 116: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 113

11. COMPARACIÓN DE RESULTADOS

La única forma de comprobar o no la idoneidad o no de las mejoras introducidas, es

comparar los resultados obtenidos de ambas simulaciones. El fin último de este estudio es

demostrar que las mejoras introducidas suponen una reducción en la demanda energética de

la vivienda, lo que se traduce en un ahorro económico en los consumos desde el primer

instante después de aplicar las mejoras, y que en un periodo de amortización que también se

definirá posteriormente se traducirá en un ahorro económico a todos los niveles.

Para comparar los resultados obtenidos, y con el fin de sacar unas conclusiones claras,

esta comparación ha sido realizada a partir de los datos obtenidos de las simulaciones anuales

realizadas en los dos casos existentes, la simulación de la situación inicial y la realizada con

las mejoras introducidas.

Los datos globales de consumo energético se muestran a continuación:

SIMULACIÓN INICIAL:

Tabla 7: Datos obtenidos en la simulación inicial

SIMULACIÓN CON LAS MEJORAS INTRODUCIDAS:

Tabla 8: Datos obtenidos en la simulación con las mejoras

En la siguiente gráfica, se puede observar visualmente la reducción de los dos parámetros

más significativos de este estudio, el consumo de calefacción y refrigeración:

Page 117: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

11. Comparación de Resultados

114 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Gráfico 53: Comparación consumos calefacción y refrigeración

La reducción más notable se produce en la demanda de calefacción:

Tabla 9: Reducción de la demanda de calefacción

En el caso de la refrigeración, también se ha producido una disminución de la demanda,

aunque menos significativa que en el caso de la refrigeración:

Tabla 10: Reducción de la demanda de refrigeración

A nivel global, la demanda también ha disminuido:

0

5000

10000

15000

20000

25000

30000

35000

Calefacción Refrigeración

COMPARACIÓN DEMANDA

Simulación inicial Simulación con las mejoras introducias

Page 118: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 115

Gráfico 54: Comparación de la demanda total

Tabla 11: Reducción de la demanda total

Otro aspecto relevante en el que también se ha producido una reducción notable son las

emisiones de CO2. A nivel anual, los datos de ambas simulaciones se recogen a continuación:

Gráfico 55: Comparación emisiones de CO2

0

10000

20000

30000

40000

50000

60000

70000

Simulación inicial Simulación con las mejorasintroducidas

Comparación a nivel global

Calefacción Refrigeración Aparatos Iluminación ACS

0

5000

10000

15000

20000

25000

Emisiones de CO2

Simulación inicial Simulación con las mejoras introducidas

Page 119: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

11. Comparación de Resultados

116 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Tabla 12: Reducción de las emisiones de CO2

Destacar que, los valores de emisiones aportados, tienen en cuenta el ciclo de vida

completo de la vivienda, que incluye las etapas de construcción, uso y fin de vida útil.

A la luz de estos resultados, queda demostrada la eficacia de utilizar sistemas de

construcción más exigentes, puesto que suponen una reducción notable de los consumos

energéticos, haciendo de nuestra vivienda de estudio, un modelo mucho más sostenible.

Page 120: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 117

Page 121: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

12. Estudio Económico

118 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

12. ESTUDIO ECONÓMICO

Una vez realizadas las simulaciones, y comprobado que se obtienen los resultados que

se esperaban, es necesario realizar un estudio económico para garantizar la viabilidad de las

medidas propuestas.

Puesto que la demanda energética de los aparatos, iluminación y ACS es la misma en

ambas simulaciones, el estudio económico se centrará en analizar el ahorro obtenido fruto de

la reducción de la demanda de calefacción y refrigeración, que al fin y al cabo es el resultado

de las mejoras implantadas en la envolvente térmica de la “Maison Guiette”.

Por ello, partimos de los siguientes datos para realizar el estudio económico:

Tabla 13: Porcentajes de reducción respecto a la simulación inicial

Para extrapolar los resultados, y dado que debemos convertir los datos obtenidos en la

simulación de demanda a consumo, se ha establecido un rendimiento para ambos equipos

del 80%. De esta forma, el consumo en calefacción y refrigeración será el siguiente:

Tabla 14: Consumos de calefacción y refrigeración

Una vez conocidos los consumos de ambas simulaciones, es posible extrapolar estos

resultados a una unidad monetaria. Para ello, se ha establecido un precio medio del kWh a

0,15 €, con un crecimiento anual del 6%. Si bien es cierto que el precio del gas natural es algo

más barato, para simplificar el estudio económico se ha decidido mantener estos 0,15 €/kWh

mencionados como precio medio de la energía.

Por tanto, multiplicando los consumos por el precio medio del kWh es posible obtener el

coste de los mismos:

Tabla 15: Coste de la energía en función de los consumos

Así pues, el ahorro anual obtenido es el siguiente:

Page 122: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 119

Coste total (Calefacción + Refrigeración) simulación inicial: 6.950,48 €

Coste total (Calefacción + Refrigeración) simulación con las mejoras:

2.648,99 €

AHORRO ANUAL: 4.301,49 €

Conocido el ahorro anual que supone la implantación de las mejoras, es necesario

establecer el periodo de amortización de las mismas, para garantizar su viabilidad.

Para poder calcular el periodo de amortización, se ha tomado como referencia los precios

de adquisición de ambas viviendas, conocidos a través de la simulación realizada con el

software.

Vivienda inicial:

El precio de adquisición de la vivienda con los materiales utilizados inicialmente

asciende a 1.675,51 €/m2.

Vivienda con las mejoras:

En el caso de la vivienda con las mejoras en la envolvente térmica el coste estimado

es de 1.774,84 €/m2. Este precio corresponde al precio de adquisición de la vivienda

obtenido del software, al que se le ha añadido el coste de la instalación completo de

la instalación fotovoltaica, el cual se ha establecido en 3.000 €.

De esta forma, conocida la superficie de la vivienda es posible determinar el coste total

de la misma así como la diferencia entre ambas:

Vivienda Precio €/m2 Superficie de la

vivienda Precio total

Simulación inicial 1.675,51 283,42 m2 474.874,71 €

Simulación con las mejoras 1.774,84 283,42 m2 503.025,28 €

Diferencia 99,33 28.150,57 €

Tabla 16: Coste de las viviendas

Conocidos tanto los precios de las viviendas como las diferencias entre los mismos, y a

partir de los ahorros calculados anteriormente en los consumos de energía, es posible realizar

el cálculo del periodo de amortización de la vivienda con las mejoras, sin olvidar aplicar la

subida del precio de la energía del 6% anual.

Año Ahorro anual Ahorro acumulado

1 4,301.49 € 4,301.49 € 2 4,559.58 € 8,861.07 € 3 4,833.15 € 13,694.22 € 4 5,123.14 € 18,817.37 € 5 5,430.53 € 24,247.90 €

Page 123: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

12. Estudio Económico

120 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

6 5,756.36 € 30,004.26 € 7 6,101.75 € 36,106.01 € 8 6,467.85 € 42,573.86 € 9 6,855.92 € 49,429.78 €

10 7,267.28 € 56,697.06 € 11 7,703.31 € 64,400.37 € 12 8,165.51 € 72,565.88 € 13 8,655.44 € 81,221.33 € 14 9,174.77 € 90,396.10 € 15 9,725.26 € 100,121.35 €

Tabla 17: Periodo de amortización de la vivienda con las mejoras

Como se puede observar en la tabla anterior, el periodo de amortización de las mejoras

propuestas, que únicamente afectan a la envolvente de la vivienda, sería de 6 años.

Page 124: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 121

Page 125: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

13. Maqueta

122 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

13. MAQUETA

Como elemento adicional, y con el fin de ayudar a comprender el concepto de la vivienda

estudiada y del presente proyecto, se ha realizado una maqueta a escala 1/75.

Para la realización de esta maqueta, he contado con la Sala 3D de la Escuela Técnica

Superior de Edificación de la Universidad Politécnica de Madrid.

El material utilizado para realizar la maqueta ha sido metacrilato blanco, considerando

que es el material que más se puede asemejar a la apariencia real de la vivienda, cuya capa

más exterior del cerramiento se compone de hormigón.

La maqueta ha sido realizada partiendo de los planos de la vivienda, sobre unas planchas

de metacrilato de 30x50cm. Para realizar el corte de cada una de las piezas contenidas dentro

de las planchas, se ha utilizado una cortadora laser de la Escuela Técnica Superior de

Edificación.

Ilustración 41: Distribución de las piezas en las planchas de corte

Una vez cortadas cada una de las piezas, se han pegado utilizando el adhesivo adecuado,

y situando la maqueta sobre una base de madera negra de 3mm de espesor.

Se han realizado las siguientes fotografías de la maqueta donde se puede observar el

resultado obtenido:

Ilustración 42: Alzado Este

Page 126: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 123

Ilustración 43: Alzado Norte

Ilustración 44: Alzado Noreste

Page 127: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

13. Maqueta

124 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Ilustración 45: Alzado Sur

Ilustración 46: Alzado Sureste

Page 128: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 125

Ilustración 47: Alzado Suroeste

Page 129: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

13. Maqueta

126 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 130: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 127

14. CONCLUSIONES

Como conclusiones al presente estudio, queda demostrado que mejorar la envolvente

térmica de la vivienda supone un ahorro muy significativo en la climatización del edificio,

reduciendo notablemente la demanda de calefacción en invierno, concretamente un 69,98%.

En el caso de la refrigeración, la demanda también experimenta una reducción del 19,92%.

En términos globales, la demanda energética total de la vivienda se reduce en un 39,74% tras

introducir las mejoras.

De esta forma, como ya se ha comentado, queda demostrado que implantar las mejoras

propuestas suponen no solo una reducción de la demanda energética, sino también una

reducción de las emisiones de CO2.

Todos estos factores permiten concluir que es completamente necesario orientar el

mercado hacia este tipo de construcción, no solo en las viviendas de nueva construcción sino

también en las que ya están construidas.

La implantación de este nuevo modelo de construcción más sostenible permitirá reducir

las emisiones de Gases de Efecto Invernadero de uno de los principales responsables, el

sector de la construcción.

Los valores obtenidos en este estudio concuerdan con los proporcionados por el IDAE,

que ha establecido que la rehabilitación energética permite reducir el uso de la energía entre

un 24 y un 50%, y las emisiones de CO2 entre un 25 y un 39%.

Además, queda demostrada la viabilidad económica de las mejoras propuestas, con un

periodo de amortización razonable de 6 años.

Page 131: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

14. Conclusiones

128 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 132: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 129

15. BIBLIOGRAFÍA

CONFERENCE OF PARTIES 21. (2015) Resultados de la Convención Marco de Naciones Unidas sobre el

Cambio Climático. < http://www.mapama.gob.es/es/cambio-climatico/temas/cumbre-cambio-

climatico-cop21/resultados-cop-21-paris/default.aspx# >

DESIGN BUILDER. (2018) Simulación ambiental y energética de edificios. <

https://www.designbuilder.co.uk/ >

DIRECTIVA 2010/31/UE DEL PARLAMENTO EUROPEO Y DEL CONSEJO. (2010) Relativa a la Eficiencia

Energética de los Edificios < https://www.boe.es/doue/2010/153/L00013-00035.pdf >

ENERGY PERFORMANCE OF BUILDINGS DIRECTIVE. (2012) <

https://ec.europa.eu/energy/en/topics/energy-efficiency/buildings >

DETALLES CONSTRUCTIVOS PLACO. (2018) < https://www.placo.es/detalles-constructivos >

FONDATION LE CORBUSIER. (2015) Le Corbusier´s Antwerp “Machine for Living In” <

http://fondationlecorbusier.fr/corbuweb/morpheus.aspx?sysId=13&IrisObjectId=9002&sysLanguage

=en-en&itemPos=4&itemSort=en-

en_sort_string1&itemCount=6&sysParentName=Home&sysParentId=11 >

ASSOCIATION DES SITES LE CORBUSIER. (2014) < https://www.sites-le-corbusier.org/fr/maison-

guiette >

LARUMBE, T. (2016) Estrategias geométrico-matemáticas en la obra de Le Corbusier <

https://riunet.upv.es/bitstream/handle/10251/87276/787-5638-2-PB.pdf?sequence=1&isAllowed=y

>

CÓDIGO TÉCNICO DE LA EDIFICACIÓN. Documento Básico sobre Ahorro de Energía.

<https://www.codigotecnico.org/ >

Page 133: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

15. Bibliografía

130 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 134: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 131

16. ÍNDICE DE FIGURAS

Ilustración 1: Crecimiento de la población mundial. Fuente: World Population Prospects ..... 14

Ilustración 2: Fechas clave de implantación de los nZEB. Fuente: BPIE (Buildings

Performance Institute Europe) .......................................................................................................... 17

Ilustración 3: Arquitecto Le Corbusier ............................................................................................. 17

Ilustración 4: Emplazamiento de la Maison Guiette ...................................................................... 18

Ilustración 5: Maison Guiette ............................................................................................................ 19

Ilustración 6: Software Design Builder ............................................................................................ 19

Ilustración 7: Alzado Norte ................................................................................................................ 26

Ilustración 8: Alzado Este .................................................................................................................. 26

Ilustración 9: Alzado Oeste ............................................................................................................... 27

Ilustración 10: Orientación de la Maison Guiette ........................................................................... 27

Ilustración 11: Orientación de la Maison Guiette (2) ..................................................................... 28

Ilustración 12: Vista planta baja ....................................................................................................... 28

Ilustración 13: Vista planta primera ................................................................................................. 29

Ilustración 14: Vista planta segunda ................................................................................................ 29

Ilustración 15: Vista planta tercera ................................................................................................... 29

Ilustración 16: Vista 3D de los espacios interiores ........................................................................ 30

Ilustración 17: Encuentro solera – fachada .................................................................................... 31

Ilustración 18: Encuentro cubierta – fachada ................................................................................. 32

Ilustración 19: Vidrio monolítico ....................................................................................................... 32

Ilustración 20: Precipitación media anual en Europa. Fuente: Datos.banco-mundial.org ...... 37

Ilustración 21: Modelado 3D en el software Design Builder ........................................................ 41

Ilustración 22: Situación de la “Maison Guiette”. Fuente: Google Maps .................................... 71

Ilustración 23: Doble acristalamiento ............................................................................................... 73

Ilustración 24: Alzado Oeste ............................................................................................................. 74

Ilustración 25: Abedul. Vegetación propuesta en fachada Oeste ............................................... 74

Ilustración 26: Iluminación natural. Solsticio de invierno. Alzado Sur ...................................... 104

Ilustración 27: Iluminación natural. Solsticio de invierno. Alzado Norte................................... 104

Ilustración 28: Iluminación natural. Solsticio de invierno. Alzado Este .................................... 105

Ilustración 29: Iluminación natural. Solsticio de invierno. Alzado Oeste .................................. 105

Ilustración 30: Iluminación natural. Solsticio de verano. Alzado Sur ........................................ 106

Ilustración 31: Iluminación natural. Solsticio de verano. Alzado Norte .................................... 106

Ilustración 32: Iluminación natural. Solsticio de verano. Alzado Este ...................................... 107

Ilustración 33: Iluminación natural. Solsticio de verano. Alzado Oeste ................................... 107

Ilustración 34: Mapa de luz diurna. Planta 0 ................................................................................ 108

Ilustración 35: Mapa de luz diurna. Planta 1 ................................................................................ 108

Ilustración 36: Simulación de temperaturas y movimientos de aire, Sección 1 ...................... 109

Ilustración 37: Simulación de temperaturas y movimientos de aire, Sección 1 ...................... 109

Ilustración 38: Simulación de temperaturas y movimientos de aire, Sección 1 ...................... 110

Ilustración 39: Simulación de temperaturas y movimientos de aire, Sección 2 ...................... 110

Ilustración 40: Simulación de temperaturas y movimientos de aire, Sección 2 ...................... 111

Ilustración 41: Distribución de las piezas en las planchas de corte ......................................... 122

Page 135: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

16. Índice de Figuras

132 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Ilustración 42: Alzado Este .............................................................................................................. 122

Ilustración 43: Alzado Norte ............................................................................................................ 123

Ilustración 44: Alzado Noreste ........................................................................................................ 123

Ilustración 45: Alzado Sur ............................................................................................................... 124

Ilustración 46: Alzado Sureste ........................................................................................................ 124

Ilustración 47: Alzado Suroeste ...................................................................................................... 125

Page 136: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 133

Page 137: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

17. Índice de Tablas

134 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

17. ÍNDICE DE TABLAS

Tabla 1: Comparativa de los valores límite de transmitancias con la situación actual ............ 34

Tabla 2: Registro anual de temperaturas. Fuente: Climate-Data.org......................................... 39

Tabla 3: Programación del sistema de calefacción ....................................................................... 43

Tabla 4: Programación del sistema de refrigeración .................................................................... 44

Tabla 5: Comparativa de los valores límite de transmitancias con la situación tras las

mejoras implementadas..................................................................................................................... 75

Tabla 6: Valores de las transmitancias de las dos simulaciones ................................................ 76

Tabla 7: Datos obtenidos en la simulación inicial ........................................................................ 113

Tabla 8: Datos obtenidos en la simulación con las mejoras ...................................................... 113

Tabla 9: Reducción de la demanda de calefacción .................................................................... 114

Tabla 10: Reducción de la demanda de refrigeración ................................................................ 114

Tabla 11: Reducción de la demanda total .................................................................................... 115

Tabla 12: Reducción de las emisiones de CO2 ........................................................................... 116

Tabla 13: Porcentajes de reducción respecto a la simulación inicial ....................................... 118

Tabla 14: Consumos de calefacción y refrigeración ................................................................... 118

Tabla 15: Coste de la energía en función de los consumos ...................................................... 118

Tabla 16: Coste de las viviendas ................................................................................................... 119

Tabla 17: Periodo de amortización de la vivienda con las mejoras .......................................... 120

Page 138: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 135

Page 139: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

18. Índice de Gráficos

136 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

18. ÍNDICE DE GRÁFICOS

Gráfico 1: Uso de las fuentes de energía. Fuente IDEA ................................................................ 8

Gráfico 2: Climograma Amberes. Fuente: Climate-Data.org ....................................................... 38

Gráfico 3: Diagrama de temperaturas. Fuente: Climate-Data.org .............................................. 38

Gráfico 4: Rosa de los vientos. Fuente: Meteoblue ...................................................................... 39

Gráfico 5: Simulación inicial. Semana extrema de invierno. Datos climáticos ......................... 46

Gráfico 6: Simulación inicial. Semana extrema de invierno. Confort ......................................... 47

Gráfico 7: Simulación inicial. Semana extrema de invierno. Ganancias internas y solares ... 48

Gráfico 8: Simulación inicial. Semana extrema de invierno. Cerramientos y ventilación........ 49

Gráfico 9: Simulación inicial. Semana extrema de invierno. Consumos totales ....................... 50

Gráfico 10: Simulación inicial. Semana extrema de invierno. Consumos desglosados .......... 51

Gráfico 11: Simulación inicial. Semana extrema de invierno. Emisiones de CO2 .................... 52

Gráfico 12: Simulación inicial. Semana extrema de invierno. Cargas del sistema .................. 53

Gráfico 13: Simulación inicial. Semana extrema de verano. Datos climáticos ......................... 54

Gráfico 14: Simulación inicial. Semana extrema de verano. Confort ......................................... 55

Gráfico 15: Simulación inicial. Semana extrema de verano. Ganancias internas y solares ... 56

Gráfico 16: Simulación inicial. Semana extrema de verano. Cerramientos y ventilación ....... 57

Gráfico 17: Simulación inicial. Semana extrema de verano. Consumos desglosados............ 58

Gráfico 18: Simulación inicial. Semana extrema de verano. Consumos totales ...................... 59

Gráfico 19: Simulación inicial. Semana extrema de verano. Emisiones de CO2 ...................... 60

Gráfico 20: Simulación inicial. Semana extrema de verano. Cargas del sistema .................... 61

Gráfico 21: Simulación anual inicial. Datos climáticos.................................................................. 62

Gráfico 22: Simulación anual inicial. Confort ................................................................................. 63

Gráfico 23: Simulación anual inicial. Ganancias internas y solares ........................................... 64

Gráfico 24: Simulación anual inicial. Cerramientos y ventilación ................................................ 65

Gráfico 25: Simulación anual inicial. Consumos desglosados .................................................... 66

Gráfico 26: Simulación anual inicial. Consumos totales ............................................................... 67

Gráfico 27: Simulación anual inicial. Emisiones de CO2 .............................................................. 68

Gráfico 28: Simulación anual inicial. Cargas del sistema ............................................................ 69

Gráfico 29: Simulación mejoras. Semana extrema de invierno. Datos climáticos ................... 79

Gráfico 30: Simulación mejoras. Semana extrema de invierno. Confort ................................... 80

Gráfico 31: Simulación mejoras. Semana extrema de invierno. Ganancias internas y solares

............................................................................................................................................................... 81

Gráfico 32: Simulación mejoras. Semana extrema de invierno. Cerramientos y ventilación . 82

Gráfico 33: Simulación mejoras. Semana extrema de invierno. Consumos desglosados ..... 83

Gráfico 34: Simulación mejoras. Semana extrema de invierno. Consumos totales ................ 84

Gráfico 35: Simulación mejoras. Semana extrema de invierno. Emisiones de CO2 ................ 85

Gráfico 36: Simulación mejoras. Semana extrema de invierno. Cargas del sistema .............. 86

Gráfico 37: Simulación mejoras. Semana extrema de verano. Datos climáticos ..................... 87

Gráfico 38: Simulación mejoras. Semana extrema de verano. Confort ..................................... 88

Gráfico 39: Simulación mejoras. Semana extrema de verano. Ganancias internas y solares

............................................................................................................................................................... 89

Gráfico 40: Simulación mejoras. Semana extrema de verano. Cerramientos y ventilación ... 90

Page 140: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 137

Gráfico 41: Simulación mejoras. Semana extrema de verano. Consumos desglosados ....... 91

Gráfico 42: Simulación mejoras. Semana extrema de verano. Consumos totales .................. 92

Gráfico 43: Simulación mejoras. Semana extrema de verano. Emisiones de CO2 ................. 93

Gráfico 44: Simulación mejoras. Semana extrema de verano. Cargas del sistema ................ 94

Gráfico 45: Simulación anual mejoras. Datos climáticos ............................................................. 95

Gráfico 46: Simulación anual mejoras. Confort ............................................................................. 96

Gráfico 47: Simulación anual mejoras. Ganancias internas y solares ....................................... 97

Gráfico 48: Simulación anual mejoras. Cerramientos y ventilación ........................................... 98

Gráfico 49: Simulación anual mejoras. Consumos desglosados ................................................ 99

Gráfico 50: Simulación anual mejoras. Consumos totales ........................................................ 100

Gráfico 51: Simulación anual mejoras. Emisiones de CO2 ........................................................ 101

Gráfico 52: Simulación anual mejoras. Cargas del sistema ...................................................... 102

Gráfico 53: Comparación consumos calefacción y refrigeración .............................................. 114

Gráfico 54: Comparación de la demanda total ............................................................................ 115

Gráfico 55: Comparación emisiones de CO2 ............................................................................... 115

Page 141: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

18. Índice de Gráficos

138 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 142: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

“Maison Guiette” de Le Corbusier: Análisis Energético y Propuesta de Mejoras

Javier González Fernández 139

19. ABREVIATURAS, UNIDADES Y ACRÓNIMOS

CFD

Dinámica de Fluidos computacional.

UE

Unión Europea.

COP

Conferencia de las Partes.

CO2

Dióxido de Carbono.

nZEB

Nearly Zero Energy Buildings.

BPIE

Buildings Performance Institute Europe.

EPBD

Energy Performance of Buildings Directive.

IDAE

Instituto para la Diversificación y Ahorro de la Energía.

Page 143: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

19. Abreviaturas, Unidades y Acrónimos

140 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

Page 144: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ANEXOS

Page 145: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Anexos

142 Máster Universitario de Eficiencia Energética en la Edificación, la Industria y el Transporte (UPM)

ANEXO 1. RESULTADOS NUMÉRICOS SIMULACIÓN INICIAL. SEMANA

EXTREMA DE INVIERNO.

Page 146: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Program Version:EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.12 19:03

Tabular Output Report in Format: HTML

Building: Building

Environment: SITIO (20-01:26-01) ** MADRID - ESP IWEC Data WMO#=082210

Simulation Timestamp: 2018-12-12 19:03:13

Report: Annual Building Utility Performance Summary

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Values gathered over 168.00 hours

WARNING: THE REPORT DOES NOT REPRESENT A FULL ANNUAL SIMULATION.

Site and Source Energy

Total Energy [kWh] Energy Per Total Building Area [kWh/m2] Energy Per Conditioned Building Area [kWh/m2]

Total Site Energy 1873.01 6.61 6.61

Net Site Energy 1873.01 6.61 6.61

Total Source Energy 6619.62 23.36 23.36

Net Source Energy 6619.62 23.36 23.36

Site to Source Energy Conversion Factors

Site=>Source Conversion Factor

Electricity 3.167

Natural Gas 1.084

District Cooling 1.056

District Heating 3.613

Steam 0.250

Gasoline 1.050

Diesel 1.050

Coal 1.050

Fuel Oil #1 1.050

Fuel Oil #2 1.050

Propane 1.050

Other Fuel 1 1.000

Other Fuel 2 1.000

Building Area

Area [m2]

Total Building Area 283.42

Net Conditioned Building Area 283.42

Unconditioned Building Area 0.00

End Uses

Note: District heat appears to be the principal heating source based on energy usage.

End Uses By Subcategory

Table of Contents

Table of Contents

Subcategory Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating General 0.00 0.00 0.00 0.00 1472.63 0.00

Cooling General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 3.54 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 43.61 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 12.22 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 7.20 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.57 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 20.97 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 17.72 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 6.80 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 9.46 0.00 0.00 0.00 0.00 0.00

Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating 0.00 0.00 0.00 0.00 1472.63 0.00

Cooling 0.00 0.00 0.00 0.00 0.00 0.00

Interior Lighting 236.82 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 95.22 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 68.34 1.23

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 332.05 0.00 0.00 0.00 1540.97 1.23

Page 147: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 12.52 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 4.86 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 12.59 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 5.26 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 8.55 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 37.29 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 33.67 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 1.30 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 16.08 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 4.51 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 10.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.09 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 7.73 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 6.53 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 2.51 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 3.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 4.62 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 1.79 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 4.64 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 1.94 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 3.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 13.75 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 12.42 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 0.98 0.02

DHW Planta0:Salon 0.00 0.00 0.00 0.00 12.13 0.22

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 3.40 0.06

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 4.02 0.07

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 0.63 0.01

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 5.83 0.10

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 4.93 0.09

DHW Planta1:Bano 0.00 0.00 0.00 0.00 1.89 0.03

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 2.63 0.05

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 3.48 0.06

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 1.35 0.02

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 3.50 0.06

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 1.46 0.03

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 2.38 0.04

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 10.37 0.19

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 9.36 0.17

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Normalized Metrics

Utility Use Per Conditioned Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 0.84 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 0.00 5.44 0.00

Other 0.34 0.00 0.00 0.00 0.00 0.00

Total 1.17 0.00 0.00 0.00 5.44 0.00

Utility Use Per Total Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 0.84 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 0.00 5.44 0.00

Other 0.34 0.00 0.00 0.00 0.00 0.00

Total 1.17 0.00 0.00 0.00 5.44 0.00

Electric Loads Satisfied

Electricity [kWh] Percent Electricity [%]

Fuel-Fired Power Generation 0.000 0.00

High Temperature Geothermal* 0.000 0.00

Photovoltaic Power 0.000 0.00

Wind Power 0.000 0.00

Power Conversion 0.000 0.00

Net Decrease in On-Site Storage 0.000 0.00

Total On-Site Electric Sources 0.000 0.00

Electricity Coming From Utility 332.046 100.00

Surplus Electricity Going To Utility 0.000 0.00

Net Electricity From Utility 332.046 100.00

Page 148: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Total On-Site and Utility Electric Sources 332.046 100.00

Total Electricity End Uses 332.046 100.00

On-Site Thermal Sources

Heat [kWh] Percent Heat [%]

Water-Side Heat Recovery 0.00

Air to Air Heat Recovery for Cooling 0.00

Air to Air Heat Recovery for Heating 0.00

High-Temperature Geothermal* 0.00

Solar Water Thermal 0.00

Solar Air Thermal 0.00

Total On-Site Thermal Sources 0.00

Water Source Summary

Water [m3] Percent Water [%]

Rainwater Collection 0.00 0.00

Condensate Collection 0.00 0.00

Groundwater Well 0.00 0.00

Total On Site Water Sources 0.00 0.00

- - -

Initial Storage 0.00 0.00

Final Storage 0.00 0.00

Change in Storage 0.00 0.00

- - -

Water Supplied by Utility 1.23 100.00

- - -

Total On Site, Change in Storage, and Utility Water Sources 1.23 100.00

Total Water End Uses 1.23 100.00

Setpoint Not Met Criteria

Degrees [deltaC]

Tolerance for Zone Heating Setpoint Not Met Time 1.11

Tolerance for Zone Cooling Setpoint Not Met Time 1.11

Comfort and Setpoint Not Met Summary

Facility [Hours]

Time Setpoint Not Met During Occupied Heating 3.00

Time Setpoint Not Met During Occupied Cooling 0.00

Time Not Comfortable Based on Simple ASHRAE 55-2004 154.00

Note 1: An asterisk (*) indicates that the feature is not yet implemented.

Table of Contents

Top

Annual Building Utility Performance Summary

Input Verification and Results Summary

Demand End Use Components Summary

Component Sizing Summary

Adaptive Comfort Summary

Climatic Data Summary

Envelope Summary

Lighting Summary

Equipment Summary

HVAC Sizing Summary

System Summary

Outdoor Air Summary

Object Count Summary

Sensible Heat Gain Summary

Report: Input Verification and Results Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

General

Value

Program Version and Build EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.12 19:03

RunPeriod SITIO (20-01:26-01)

Weather File MADRID - ESP IWEC Data WMO#=082210

Latitude [deg] 40.45

Longitude [deg] -3.5

Elevation [m] 582.00

Time Zone 1.00

North Axis Angle [deg] 0.00

Rotation for Appendix G [deg] 0.00

Hours Simulated [hrs] 168.00

ENVELOPE

Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.79 29.22 0.00 33.07 11.49

Page 149: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Gross Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Above Ground Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Conditioned Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.79 29.22 0.00 33.07 11.49

Gross Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Above Ground Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Skylight-Roof Ratio

Total

Gross Roof Area [m2] 94.67

Skylight Area [m2] 0.00

Skylight-Roof Ratio [%] 0.00

PERFORMANCE

Zone Summary

Area

[m2]

Conditioned

(Y/N)

Part of Total

Floor Area (Y/N)

Volume

[m3]

Multipliers Above Ground Gross

Wall Area [m2]

Underground Gross

Wall Area [m2]

Window Glass

Area [m2]

Opening

Area [m2]

Lighting

[W/m2]

People [m2

per person]

Plug and

Process [W/m2]

PLANTA0:PASILLO 4.20 Yes Yes 14.70 1.00 5.28 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA0:SALON 51.80 Yes Yes 181.30 1.00 53.00 0.00 17.65 18.77 7.5000 33.33 4.4000

PLANTA0:ENTRADA 14.52 Yes Yes 50.81 1.00 10.48 0.00 1.54 1.83 7.5000 33.33 4.4000

PLANTA0:COCINA 9.80 Yes Yes 34.31 1.00 24.65 0.00 2.92 3.59 15.0000 42.19 30.2800

PLANTA0:ASEO 1.55 Yes Yes 5.41 1.00 2.98 0.00 0.58 0.71 7.5000 53.37 1.6700

PLANTA1:HABITACION1 24.91 Yes Yes 84.71 1.00 40.67 0.00 6.26 6.97 7.5000 33.33 4.4000

PLANTA1:PASILLO 21.05 Yes Yes 71.57 1.00 5.67 0.00 2.25 2.55 7.5000 33.33 4.4000

PLANTA1:BANO 8.07 Yes Yes 27.45 1.00 8.75 0.00 1.97 2.21 7.5000 33.33 4.4000

PLANTA1:HABITACION2 11.23 Yes Yes 38.19 1.00 11.90 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA1:HABITACION3 14.87 Yes Yes 50.54 1.00 29.40 0.00 4.61 5.05 7.5000 33.33 4.4000

PLANTA2:ZONA3 5.78 Yes Yes 15.02 1.00 7.29 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA2:ZONA5 14.95 Yes Yes 38.88 1.00 8.15 0.00 2.83 3.25 7.5000 33.33 4.4000

PLANTA2:ZONA1 6.25 Yes Yes 16.25 1.00 0.00 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA2:ZONA4 10.15 Yes Yes 26.40 1.00 20.79 0.00 3.12 3.46 7.5000 33.33 4.4000

PLANTA2:ZONA2 44.30 Yes Yes 115.17 1.00 38.12 0.00 6.75 7.41 7.5000 33.33 4.4000

PLANTA3:ZONA1 40.00 Yes Yes 103.99 1.00 54.65 0.00 12.66 13.61 7.5000 33.33 4.4000

Total 283.42

874.68

321.79 0.00 67.04 73.79 7.7594 33.65 5.2801

Conditioned Total 283.42

874.68

321.79 0.00 67.04 73.79 7.7594 33.65 5.2801

Unconditioned Total 0.00

0.00

0.00 0.00 0.00 0.00

Not Part of Total 0.00

0.00

0.00 0.00 0.00 0.00

Report: Demand End Use Components Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

End Uses

Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Time of Peak 21-JAN-15:30 - - - 23-JAN-07:00 21-JAN-09:00

Heating 0.00 0.00 0.00 0.00 34122.07 0.00

Cooling 0.00 0.00 0.00 0.00 0.00 0.00

Interior Lighting 2040.56 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 1216.88 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 528.56 0.00

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 3257.44 0.00 0.00 0.00 34650.64 0.00

End Uses By Subcategory

Subcategory Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Heating General 0.00 0.00 0.00 0.00 34122.07 0.00

Cooling General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 31.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 388.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 108.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

Page 150: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 186.85 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 157.87 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 60.55 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 84.24 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 111.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 43.31 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 112.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 46.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 76.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 332.21 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 299.97 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 18.48 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 227.92 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 63.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 19.60 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 109.62 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 92.62 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 35.52 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 49.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 65.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 25.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 65.79 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 27.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 44.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 194.90 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 175.99 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 5.46 0.00

DHW Planta0:Salon 0.00 0.00 0.00 0.00 67.36 0.00

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 18.88 0.00

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 150.94 0.00

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 23.80 0.00

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 32.40 0.00

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 27.37 0.00

DHW Planta1:Bano 0.00 0.00 0.00 0.00 10.50 0.00

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 14.61 0.00

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 19.33 0.00

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 7.51 0.00

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 19.45 0.00

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 8.13 0.00

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 13.20 0.00

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 57.60 0.00

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 52.01 0.00

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Report: Climatic Data Summary

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

SizingPeriod:DesignDay

Weather Statistics File

Value

None

Report: Envelope Summary

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Opaque Exterior

Table of Contents

Table of Contents

U-Factor with Film [W/m2- U-Factor no Film [W/m2- Gross Area Net Area Azimuth Tilt Cardinal

Maximum Dry Bulb [C] Daily Temperature Range [deltaC] Humidity Value Humidity Type Wind Speed [m/s] Wind Direction

SUMMER DESIGN DAY IN SITIO (20-01:26-01) JUL 38.20 17.50 20.30 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (20-01:26-01) AGO 38.00 17.40 19.90 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (20-01:26-01) SEP 34.90 16.80 19.30 Wetbulb [C] 0.00 0.00

WINTER DESIGN DAY IN SITIO (20-01:26-01) -4.00 0.00 -4.00 Wetbulb [C] 11.60 0.00

Page 151: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Construction Reflectance K] K] [m2] [m2] [deg] [deg] Direction

PLANTA0:PASILLO_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 5.28 3.51 270.00 90.00 W

PLANTA0:PASILLO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

5.43

5.43

0.00

180.00

PLANTA0:SALON_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 29.83 28.46 270.00 90.00 W

PLANTA0:SALON_WALL_7_0_0 MURO TFM INICIAL 0.40 1.689 2.260 23.17 5.78 180.00 90.00 S

PLANTA0:SALON_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

30.68

30.68

0.00

180.00

PLANTA0:SALON_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

26.95

26.95

0.00

180.00

PLANTA0:ENTRADA_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 10.48 6.71 0.00 90.00 N

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

0.03

0.03

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_1

SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

0.64

0.64

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_2 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

16.10

16.10

0.00

180.00

PLANTA0:COCINA_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 9.71 7.44 0.00 90.00 N

PLANTA0:COCINA_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 14.94 13.62 270.00 90.00 W

PLANTA0:COCINA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

7.68

7.68

0.00

180.00

PLANTA0:COCINA_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

4.80

4.80

0.00

180.00

PLANTA0:ASEO_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 2.98 2.26 0.00 90.00 N

PLANTA0:ASEO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

2.35

2.35

0.00

180.00

PLANTA1:HABITACION1_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 23.17 16.20 0.00 90.00 N

PLANTA1:HABITACION1_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.50 17.50 270.00 90.00 W

PLANTA1:PASILLO_WALL_10_0_0 MURO TFM INICIAL 0.40 1.689 2.260 5.67 3.12 180.00 90.00 S

PLANTA1:BANO_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 8.75 6.54 270.00 90.00 W

PLANTA1:HABITACION2_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 11.90 9.71 270.00 90.00 W

PLANTA1:HABITACION3_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 11.90 11.90 270.00 90.00 W

PLANTA1:HABITACION3_WALL_7_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.50 12.45 180.00 90.00 S

PLANTA2:ZONA3_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 7.29 5.10 270.00 90.00 W

PLANTA2:ZONA3_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 7.29 7.29 180.00 0.00

PLANTA2:ZONA5_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 8.15 4.91 180.00 90.00 S

PLANTA2:ZONA5_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 11.07 11.07 180.00 0.00

PLANTA2:ZONA5_ROOF_1_0_1 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 6.45 6.45 180.00 0.00

PLANTA2:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 7.29 7.29 180.00 0.00

PLANTA2:ZONA4_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 11.07 11.07 270.00 90.00 W

PLANTA2:ZONA4_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 9.72 6.26 180.00 90.00 S

PLANTA2:ZONA4_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 12.91 12.91 180.00 0.00

PLANTA2:ZONA2_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.87 10.72 0.00 90.00 N

PLANTA2:ZONA2_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 20.25 18.04 270.00 90.00 W

PLANTA2:ZONA2_ROOF_1_1_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 3.31 3.31 180.00 0.00

PLANTA3:ZONA1_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.87 5.63 0.00 90.00 N

PLANTA3:ZONA1_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 18.90 18.90 270.00 90.00 W

PLANTA3:ZONA1_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.87 14.54 180.00 90.00 S

PLANTA3:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 46.34 46.34 180.00 0.00

Exterior Fenestration

Construction

Glass

Area

[m2]

Frame

Area

[m2]

Divider

Area

[m2]

Area of

One

Opening

[m2]

Area of

Multiplied

Openings

[m2]

Glass

U-

Factor

[W/m2-

K]

Glass

SHGC

Glass Visible

Transmittance

Frame

Conductance

[W/m2-K]

Divider

Conductance

[W/m2-K]

Shade

Control

Parent Surface

Azimut

[de

PLANTA0:SALON_WALL_6_0_0_0_0_0_WIN 1001 1.19 0.18 0.00 1.37 1.37 3.835 0.768 0.821 9.500 0.000 No PLANTA0:SALON_WALL_6_0_0 270.

PLANTA0:SALON_WALL_7_0_0_0_0_0_WIN 1001 13.62 0.62 0.45 14.69 14.69 3.835 0.768 0.821 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:SALON_WALL_7_0_0_1_0_1_WIN 1001 2.36 0.32 0.03 2.70 2.70 3.835 0.768 0.821 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:ENTRADA_WALL_3_0_0_1_0_1_WIN 1001 0.70 0.14 0.00 0.84 0.84 3.835 0.768 0.821 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:ENTRADA_WALL_3_0_0_2_0_2_WIN 1001 0.84 0.15 0.00 0.99 0.99 3.835 0.768 0.821 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:COCINA_WALL_5_0_0_0_0_0_WIN 1001 2.00 0.25 0.02 2.27 2.27 3.835 0.768 0.821 9.500 9.500 No PLANTA0:COCINA_WALL_5_0_0 0.

PLANTA0:COCINA_WALL_6_0_0_0_0_0_WIN 1001 0.22 0.11 0.00 0.33 1.32 3.835 0.768 0.821 9.500 0.000 No PLANTA0:COCINA_WALL_6_0_0 270.

PLANTA0:ASEO_WALL_3_0_0_0_0_0_WIN 1001 0.58 0.13 0.00 0.71 0.71 3.835 0.768 0.821 9.500 0.000 No PLANTA0:ASEO_WALL_3_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_0_0_0_WIN 1001 2.22 0.30 0.05 2.57 2.57 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_1_0_1_WIN 1001 3.94 0.40 0.06 4.40 4.40 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:PASILLO_WALL_10_0_0_0_0_0_WIN 1001 2.22 0.30 0.03 2.55 2.55 3.835 0.768 0.821 9.500 9.500 No PLANTA1:PASILLO_WALL_10_0_0 180.

PLANTA1:BANO_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 3.835 0.768 0.821 9.500 9.500 No PLANTA1:BANO_WALL_4_0_0 270.

PLANTA1:HABITACION2_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION2_WALL_4_0_0 270.

PLANTA1:HABITACION3_WALL_7_0_0_0_0_0_WIN 1001 4.54 0.45 0.06 5.05 5.05 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION3_WALL_7_0_0 180.

PLANTA2:ZONA3_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA3_WALL_4_0_0 270.

PLANTA2:ZONA5_WALL_6_0_0_0_0_0_WIN 1001 1.62 0.24 0.02 1.87 1.87 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA5_WALL_6_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.37 1.37 3.835 0.768 0.821 9.500 0.000 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA4_WALL_5_0_0_0_0_0_WIN 1001 3.08 0.33 0.04 3.46 3.46 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA4_WALL_5_0_0 180.

PLANTA2:ZONA2_WALL_3_0_0_1_0_1_WIN 1001 4.71 0.42 0.07 5.20 5.20 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA2_WALL_3_0_0 0.

PLANTA2:ZONA2_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA2_WALL_4_0_0 270.

PLANTA3:ZONA1_WALL_3_0_0_0_0_0_WIN 1001 1.74 0.25 0.05 2.04 2.04 3.835 0.768 0.821 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_3_0_0_1_0_1_WIN 1001 9.38 0.52 0.30 10.20 10.20 3.835 0.768 0.821 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_5_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.38 1.38 3.835 0.768 0.821 9.500 0.000 No PLANTA3:ZONA1_WALL_5_0_0 180.

Total or Average

73.79 3.835 0.768 0.821

North Total or Average

29.22 3.835 0.768 0.821

Non-North Total or Average

44.57 3.835 0.768 0.821

Interior Fenestration

Page 152: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Construction Area of One Opening [m2] Area of Openings [m2] Glass U-Factor [W/m2-K] Glass SHGC Glass Visible Transmittance Parent Surface

Total or Average

0.00 - - -

Exterior Door

Construction U-Factor with Film [W/m2-K] U-Factor no Film [W/m2-K] Gross Area [m2] Parent Surface

PLANTA0:PASILLO_WALL_6_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.77 PLANTA0:PASILLO_WALL_6_0_0

PLANTA0:ENTRADA_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.94 PLANTA0:ENTRADA_WALL_3_0_0

PLANTA2:ZONA2_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.96 PLANTA2:ZONA2_WALL_3_0_0

PLANTA3:ZONA1_WALL_5_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.95 PLANTA3:ZONA1_WALL_5_0_0

Report: Lighting Summary

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Interior Lighting

Daylighting

Zone Daylighting Type Control Type Fraction Controlled Lighting Installed in Zone [W] Lighting Controlled [W]

None

Exterior Lighting

Report: Equipment Summary

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Central Plant

Type Nominal Capacity [W] Nominal Efficiency [W/W] IPLV in SI Units [W/W] IPLV in IP Units [Btu/W-h]

None

Cooling Coils

DX Cooling Coils

DX Cooling Coil ASHRAE 127 Standard Ratings Report

Table of Contents

Table of Contents

DX Cooling

Coil Type

Rated Net Cooling

Capacity Test A [W]

Rated Electric Power

Test A [W]

Rated Net Cooling

Capacity Test B [W]

Rated Electric Power

Test B [W]

Rated Net Cooling

Capacity Test C [W]

Rated Electric Power

Test C [W]

Rated Net Cooling

Capacity Test D [W]

Rated Electric Power

Test D [W]

Zone

Lighting

Power

Density

[W/m2]

Zone

Area

[m2]

Total

Power

[W]

End Use Subcategory

Schedule Name

Scheduled

Hours/Week

[hr]

Hours/Week

> 1% [hr]

Full Load

Hours/Week

[hr]

Return

Air

Fraction

Conditioned

(Y/N)

Consump

[k

PLANTA0:PASILLO

GENERAL LIGHTING

PLANTA0:PASILLO

7.5000

4.20

31.50 ELECTRIC

EQUIPMENT#Planta0:Pasillo#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA0:SALON

GENERAL LIGHTING

PLANTA0:SALON

7.5000

51.80

388.49 ELECTRIC

EQUIPMENT#Planta0:Salon#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

4

PLANTA0:ENTRADA

GENERAL LIGHTING

PLANTA0:ENTRADA

7.5000

14.52

108.88 ELECTRIC

EQUIPMENT#Planta0:Entrada#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA0:COCINA

GENERAL LIGHTING

PLANTA0:COCINA

15.0000

9.80

147.02 ELECTRIC

EQUIPMENT#Planta0:Cocina#GeneralLights

DWELL_DOMKITCHEN_LIGHT

49.00

49.00

49.00

0.0000

Y

PLANTA0:ASEO

GENERAL LIGHTING

PLANTA0:ASEO

7.5000

1.55

11.59 ELECTRIC

EQUIPMENT#Planta0:Aseo#GeneralLights

DWELL_DOMBATH_LIGHT

49.00

49.00

49.00

0.0000

Y

PLANTA1:HABITACION1

GENERAL LIGHTING

PLANTA1:HABITACION1

7.5000

24.91

186.85 ELECTRIC

EQUIPMENT#Planta1:Habitacion1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

2

PLANTA1:PASILLO

GENERAL LIGHTING

PLANTA1:PASILLO

7.5000

21.05

157.87 ELECTRIC

EQUIPMENT#Planta1:Pasillo#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA1:BANO

GENERAL LIGHTING

PLANTA1:BANO

7.5000

8.07

60.55

ELECTRIC

EQUIPMENT#Planta1:Bano#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA1:HABITACION2

GENERAL LIGHTING

PLANTA1:HABITACION2

7.5000

11.23

84.24 ELECTRIC

EQUIPMENT#Planta1:Habitacion2#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA1:HABITACION3

GENERAL LIGHTING

PLANTA1:HABITACION3

7.5000

14.87

111.50 ELECTRIC

EQUIPMENT#Planta1:Habitacion3#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA2:ZONA3

GENERAL LIGHTING

PLANTA2:ZONA3

7.5000

5.78

43.31 ELECTRIC

EQUIPMENT#Planta2:Zona3#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA5

GENERAL LIGHTING

PLANTA2:ZONA5

7.5000

14.95

112.15 ELECTRIC

EQUIPMENT#Planta2:Zona5#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA2:ZONA1

GENERAL LIGHTING

PLANTA2:ZONA1

7.5000

6.25

46.88 ELECTRIC

EQUIPMENT#Planta2:Zona1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA4

GENERAL LIGHTING

PLANTA2:ZONA4

7.5000

10.15

76.15 ELECTRIC

EQUIPMENT#Planta2:Zona4#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA2

GENERAL LIGHTING

PLANTA2:ZONA2

7.5000

44.30

332.21 ELECTRIC

EQUIPMENT#Planta2:Zona2#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

3

PLANTA3:ZONA1

GENERAL LIGHTING

PLANTA3:ZONA1

7.5000

40.00

299.97 ELECTRIC

EQUIPMENT#Planta3:Zona1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

3

Interior Lighting Total

7.7594 283.42 2199.17

23

Total Watts Astronomical Clock/Schedule Schedule Name Scheduled Hours/Week [hr] Hours/Week > 1% [hr] Full Load Hours/Week [hr] Consumption [kWh]

Exterior Lighting Total 0.00

0.00

Type Design Coil Load

[W]

Nominal Total Capacity

[W]

Nominal Sensible Capacity

[W]

Nominal Latent Capacity

[W]

Nominal Sensible Heat

Ratio

Nominal Efficiency

[W/W]

Nominal Coil UA Value

[W/C]

Nominal Coil Surface Area

[m2]

None

DX Cooling Coil Type Standard Rated Net Cooling Capacity [W] Standard Rated Net COP [W/W] EER [Btu/W-h] SEER [Btu/W-h] IEER [Btu/W-h]

None

Page 153: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

DX Heating Coils

DX Heating Coil Type High Temperature Heating (net) Rating Capacity [W] Low Temperature Heating (net) Rating Capacity [W] HSPF [Btu/W-h] Region Number

None

Heating Coils

Type Design Coil Load [W] Nominal Total Capacity [W] Nominal Efficiency [W/W]

None

Fans

Type Total Efficiency [W/W] Delta Pressure [pa] Max Air Flow Rate [m3/s] Rated Electric Power [W] Rated Power Per Max Air Flow Rate [W-s/m3] Motor Heat In Air Fraction End Use

None

Pumps

Type Control Head [pa] Water Flow [m3/s] Electric Power [W] Power Per Water Flow Rate [W-s/m3] Motor Efficiency [W/W]

None

Service Water Heating

Type Storage Volume [m3] Input [W] Thermal Efficiency [W/W] Recovery Efficiency [W/W] Energy Factor

None

Report: HVAC Sizing Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Zone Sensible Cooling

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

371.11

426.78

101.60

0.027

0.031

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

AGO

8/15 16:30:00

24.00

24.00

0.00776

36.26

0.00819

0.001

0.00

PLANTA0:SALON

4058.20

4666.94

90.10

0.264

0.303

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

SEP

9/15 16:00:00

24.00

24.00

0.00811

33.89

0.00864

0.016

0.00

PLANTA0:ENTRADA

696.47

800.94

55.17

0.048

0.055

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 16:00:00

24.00

24.00

0.00822

37.15

0.00867

0.004

0.00

PLANTA0:COCINA

642.14

738.46

75.34

0.043

0.050

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 19:00:00

25.00

25.00

0.00786

31.38

0.00867

0.003

0.00

PLANTA0:ASEO

119.15

137.02

88.64

0.008

0.009

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 17:30:00

25.00

25.00

0.00780

34.88

0.00867

0.000

0.00

PLANTA1:HABITACION1

2100.46

2415.53

96.96

0.141

0.162

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 16:00:00

24.00

24.00

0.00805

37.15

0.00867

0.007

0.00

PLANTA1:PASILLO

2287.96

2631.15

125.00

0.167

0.191

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

AGO

8/15 16:30:00

24.00

24.00

0.00773

36.26

0.00819

0.006

0.00

PLANTA1:BANO

1185.37

1363.17

168.86

0.086

0.099

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 17:00:00

24.00

24.00

0.00777

35.75

0.00867

0.002

0.00

PLANTA1:HABITACION2

1513.01

1739.97

154.91

0.110

0.127

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

AGO

8/15 17:00:00

24.00

24.00

0.00774

35.56

0.00819

0.003

0.00

PLANTA1:HABITACION3

2473.04

2844.00

191.31

0.180

0.207

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

SEP

9/15 16:30:00

24.00

24.00

0.00772

33.22

0.00864

0.004

0.00

PLANTA2:ZONA3

1225.21

1408.99

243.98

0.089

0.103

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 17:00:00

24.00

24.00

0.00774

35.75

0.00867

0.002

0.00

PLANTA2:ZONA5

1965.12

2259.88

151.13

0.143

0.164

SUMMER

DESIGN

DAY IN

8/15 16:30:00

24.00

24.00

0.00771

36.26

0.00819

0.004

0.00

None

Page 154: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

SITIO (20-

01:26-01)

AGO

PLANTA2:ZONA1

731.19

840.87

134.54

0.053

0.061

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 16:30:00

24.00

24.00

0.00774

36.45

0.00867

0.002

0.00

PLANTA2:ZONA4

1627.16

1871.23

184.30

0.118

0.136

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

AGO

8/15 16:30:00

24.00

24.00

0.00771

36.26

0.00819

0.003

0.00

PLANTA2:ZONA2

3666.75

4216.77

95.20

0.267

0.307

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 17:00:00

24.00

24.00

0.00779

35.75

0.00867

0.013

0.00

PLANTA3:ZONA1

4909.61

5646.06

141.16

0.357

0.411

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 17:00:00

24.00

24.00

0.00776

35.75

0.00867

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

Zone Sensible Heating

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

458.26

572.82

136.37

0.030

0.038

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01442

-4.00

0.00289

0.001

0.00

PLANTA0:SALON

3763.62

4704.53

90.82

0.249

0.311

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.98

0.01391

-4.00

0.00289

0.016

0.00

PLANTA0:ENTRADA

1065.45

1331.82

91.74

0.070

0.088

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01392

-4.00

0.00289

0.004

0.00

PLANTA0:COCINA

827.36

1034.20

105.51

0.042

0.052

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

18.00

17.99

0.01373

-4.00

0.00289

0.003

0.00

PLANTA0:ASEO

124.21

155.26

100.45

0.006

0.008

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

18.00

17.99

0.01365

-4.00

0.00289

0.000

0.00

PLANTA1:HABITACION1

2398.46

2998.07

120.34

0.159

0.198

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01431

-4.00

0.00289

0.007

0.00

PLANTA1:PASILLO

1172.92

1466.15

69.65

0.078

0.097

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01353

-4.00

0.00289

0.006

0.00

PLANTA1:BANO

714.05

892.57

110.56

0.047

0.059

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01421

-4.00

0.00289

0.002

0.00

PLANTA1:HABITACION2

943.05

1178.81

104.95

0.062

0.078

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01415

-4.00

0.00289

0.003

0.00

PLANTA1:HABITACION3

1687.62

2109.52

141.90

0.112

0.140

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01449

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA3

1019.75

1274.68

220.72

0.067

0.084

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01503

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA5

2032.25

2540.31

169.89

0.134

0.168

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01487

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA1

723.94

904.93

144.79

0.048

0.060

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01475

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA4

1912.04

2390.05

235.39

0.127

0.158

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01506

-4.00

0.00289

0.003

0.00

WINTER

DESIGN

DAY IN

Page 155: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

PLANTA2:ZONA2

3367.85

4209.81

95.04

0.223

0.279

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01435

-4.00

0.00289

0.013

0.00

PLANTA3:ZONA1

6137.60

7672.00

191.82

0.406

0.508

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01495

-4.00

0.00289

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

System Design Air Flow Rates

Calculated cooling [m3/s] User cooling [m3/s] Calculated heating [m3/s] User heating [m3/s]

None

Plant Loop Coincident Design Fluid Flow Rate Adjustments

Previous Design Volume

Flow Rate [m3/s]

Algorithm Volume Flow

Rate [m3/s]

Coincident Design Volume

Flow Rate [m3/s]

Coincident Size

Adjusted

Peak Sizing

Period Name

Peak Day into Period

{TIMESTAMP}[day]

Peak Hour Of Day

{TIMESTAMP}[hr]

Peak Step Start Minute

{TIMESTAMP}[min]

None

Report: System Summary

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Economizer

Demand Controlled Ventilation using Controller:MechanicalVentilation

Time Not Comfortable Based on Simple ASHRAE 55-2004

Winter Clothes [hr] Summer Clothes [hr] Summer or Winter Clothes [hr]

PLANTA0:PASILLO 133.00 138.00 133.00

PLANTA0:SALON 89.00 135.50 88.00

PLANTA0:ENTRADA 133.50 138.00 133.50

PLANTA0:COCINA 49.00 49.00 49.00

PLANTA0:ASEO 49.00 49.00 49.00

PLANTA1:HABITACION1 138.00 138.00 138.00

PLANTA1:PASILLO 102.50 138.00 102.50

PLANTA1:BANO 120.50 138.00 120.50

PLANTA1:HABITACION2 114.00 138.00 114.00

PLANTA1:HABITACION3 98.50 136.50 98.50

PLANTA2:ZONA3 137.00 138.00 137.00

PLANTA2:ZONA5 134.00 138.00 134.00

PLANTA2:ZONA1 138.00 138.00 138.00

PLANTA2:ZONA4 135.00 138.00 135.00

PLANTA2:ZONA2 138.00 138.00 138.00

PLANTA3:ZONA1 138.00 138.00 138.00

Facility 154.00 154.00 154.00

Aggregated over the RunPeriods for Weather

Time Setpoint Not Met

During Heating [hr] During Cooling [hr] During Occupied Heating [hr] During Occupied Cooling [hr]

PLANTA0:PASILLO 0.00 0.00 0.00 0.00

PLANTA0:SALON 2.50 0.00 2.50 0.00

PLANTA0:ENTRADA 2.50 0.00 2.50 0.00

PLANTA0:COCINA 0.00 0.00 0.00 0.00

PLANTA0:ASEO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION1 2.50 0.00 2.50 0.00

PLANTA1:PASILLO 2.50 0.00 2.50 0.00

PLANTA1:BANO 1.00 0.00 1.00 0.00

PLANTA1:HABITACION2 0.50 0.00 0.50 0.00

PLANTA1:HABITACION3 0.00 0.00 0.00 0.00

PLANTA2:ZONA3 0.00 0.00 0.00 0.00

PLANTA2:ZONA5 0.50 0.00 0.50 0.00

PLANTA2:ZONA1 0.50 0.00 0.50 0.00

PLANTA2:ZONA4 0.00 0.00 0.00 0.00

PLANTA2:ZONA2 2.50 0.00 2.50 0.00

PLANTA3:ZONA1 2.50 0.00 2.50 0.00

Facility 3.00 0.00 3.00 0.00

Aggregated over the RunPeriods for Weather

Report: Outdoor Air Summary

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Table of Contents

Table of Contents

High Limit Shutoff Control Minimum Outdoor Air [m3/s] Maximum Outdoor Air [m3/s] Return Air Temp Limit Return Air Enthalpy Limit Outdoor Air Temperature Limit [C] Outdoor Air Enthalpy Limit [C]

None

Controller:MechanicalVentilation

Name

Outdoor Air Per

Person [m3/s-

person]

Outdoor Air Per

Area [m3/s-m2]

Outdoor Air

Per Zone

[m3/s]

Outdoor Air

ACH [ach]

Outdoor Air

Method

Outdoor Air

Schedule

Name

Air Distribution

Effectiveness in Cooling

Mode

Air Distribution

Effectiveness in Heating

Mode

Air Distribution

Effectiveness Schedule

Name

None

Page 156: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Average Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.70 0.247 0.742 0.000 0.000

PLANTA0:SALON 1.27 1.55 181.30 0.247 0.743 0.000 0.000

PLANTA0:ENTRADA 0.36 0.44 50.81 0.246 0.741 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.31 0.155 0.739 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.41 0.123 0.739 0.000 0.000

PLANTA1:HABITACION1 0.61 0.75 84.71 0.253 0.739 0.000 0.000

PLANTA1:PASILLO 0.52 0.63 71.57 0.255 0.744 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.45 0.254 0.741 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.19 0.254 0.742 0.000 0.000

PLANTA1:HABITACION3 0.36 0.45 50.54 0.254 0.743 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 15.02 0.330 0.738 0.000 0.000

PLANTA2:ZONA5 0.37 0.45 38.88 0.331 0.739 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.331 0.739 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.40 0.331 0.738 0.000 0.000

PLANTA2:ZONA2 1.08 1.33 115.17 0.331 0.738 0.000 0.000

PLANTA3:ZONA1 0.98 1.20 103.99 0.329 0.734 0.000 0.000

Values shown for a single zone without multipliers

Minimum Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.70 0.149 0.012 0.000 0.000

PLANTA0:SALON 1.27 1.55 181.30 0.149 0.012 0.000 0.000

PLANTA0:ENTRADA 0.36 0.44 50.81 0.149 0.012 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.31 0.057 0.012 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.41 0.045 0.012 0.000 0.000

PLANTA1:HABITACION1 0.61 0.75 84.71 0.152 0.012 0.000 0.000

PLANTA1:PASILLO 0.52 0.63 71.57 0.154 0.012 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.45 0.153 0.012 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.19 0.153 0.012 0.000 0.000

PLANTA1:HABITACION3 0.36 0.45 50.54 0.153 0.012 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 15.02 0.198 0.012 0.000 0.000

PLANTA2:ZONA5 0.37 0.45 38.88 0.199 0.012 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.199 0.012 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.40 0.198 0.012 0.000 0.000

PLANTA2:ZONA2 1.08 1.33 115.17 0.198 0.012 0.000 0.000

PLANTA3:ZONA1 0.98 1.20 103.99 0.196 0.012 0.000 0.000

Values shown for a single zone without multipliers

Report: Object Count Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Surfaces by Class

Total Outdoors

Wall 91 23

Floor 46 9

Roof 44 7

Internal Mass 0 0

Building Detached Shading 24 24

Fixed Detached Shading 0 0

Window 23 23

Door 36 4

Glass Door 0 0

Shading 0 0

Overhang 0 0

Fin 0 0

Tubular Daylighting Device Dome 0 0

Tubular Daylighting Device Diffuser 0 0

HVAC

Count

HVAC Air Loops 0

Conditioned Zones 16

Unconditioned Zones 0

Supply Plenums 0

Return Plenums 0

Input Fields

Count

IDF Objects 2253

Defaulted Fields 213

Fields with Defaults 4148

Autosized Fields 64

Autosizable Fields 64

Autocalculated Fields 98

Page 157: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Sensible Heat Gain Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Annual Building Sensible Heat Gain Components

a

Peak Cooling Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 22-JAN-23:01 0.00 -31.22 0.00 0.00 0.00 0.00 9.71 31.50 0.90 0.00 0.00 0.00 66.47 0.00 -0.00 0.00 -

PLANTA0:SALON 22-JAN-23:01 0.00 -389.45 0.00 0.00 0.00 0.00 119.69 388.49 11.06 0.00 0.00 0.00 1850.79 0.00 -1015.41 0.00 -9

PLANTA0:ENTRADA 22-JAN-23:01 0.00 -108.33 0.00 0.00 0.00 0.00 33.55 108.88 3.10 0.00 0.00 0.00 336.67 0.00 -105.39 0.00 -2

PLANTA0:COCINA - 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00

PLANTA0:ASEO - 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00

PLANTA1:HABITACION1 22-JAN-23:01 0.00 -184.69 0.00 0.00 0.00 0.00 57.57 186.85 5.32 0.00 0.00 0.00 772.31 0.00 -392.27 0.00 -4

PLANTA1:PASILLO 22-JAN-23:01 0.00 -158.56 0.00 0.00 0.00 0.00 48.64 157.87 4.50 0.00 0.00 0.00 466.50 0.00 -136.77 0.00 -3

PLANTA1:BANO 22-JAN-23:01 0.00 -60.23 0.00 0.00 0.00 0.00 18.65 60.55 1.72 0.00 0.00 0.00 259.26 0.00 -134.79 0.00 -1

PLANTA1:HABITACION2 22-JAN-23:01 0.00 -84.21 0.00 0.00 0.00 0.00 25.95 84.24 2.40 0.00 0.00 0.00 309.02 0.00 -134.42 0.00 -2

PLANTA1:HABITACION3 22-JAN-23:01 0.00 -111.49 0.00 0.00 0.00 0.00 34.35 111.50 3.18 0.00 0.00 0.00 546.52 0.00 -315.35 0.00 -2

PLANTA2:ZONA3 22-JAN-23:01 0.00 -41.79 0.00 0.00 0.00 0.00 13.34 43.31 1.23 0.00 0.00 0.00 193.39 0.00 -132.40 0.00 -

PLANTA2:ZONA5 22-JAN-23:01 0.00 -109.57 0.00 0.00 0.00 0.00 34.55 112.15 3.19 0.00 0.00 0.00 346.21 0.00 -184.42 0.00 -2

PLANTA2:ZONA1 22-JAN-23:01 0.00 -45.98 0.00 0.00 0.00 0.00 14.44 46.88 1.34 0.00 0.00 0.00 68.16 0.00 -0.00 0.00 -

PLANTA2:ZONA4 22-JAN-23:01 0.00 -73.68 0.00 0.00 0.00 0.00 23.46 76.15 2.17 0.00 0.00 0.00 316.85 0.00 -209.05 0.00 -1

PLANTA2:ZONA2 22-JAN-23:01 0.00 -328.12 0.00 0.00 0.00 0.00 102.35 332.21 9.46 0.00 0.00 0.00 934.86 0.00 -445.52 0.00 -6

PLANTA3:ZONA1 22-JAN-23:01 0.00 -290.34 0.00 0.00 0.00 0.00 92.42 299.97 8.54 0.00 0.00 0.00 1157.38 0.00 -731.95 0.00 -5

Total Facility 22-JAN-23:01 0.00 -2017.68 0.00 0.00 0.00 0.00 628.69 2040.56 77.87 0.00 0.00 0.00 7977.78 0.00 -4138.07 0.00 -45

Peak Heating Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 23-JAN-07:34 594.57 0.00 0.00 0.00 0.00 0.00 7.28 23.63 16.63 0.00 0.00 0.00 0.00 0.00 -0.00 0.00 -

PLANTA0:SALON 23-JAN-07:15 4660.85 0.00 0.00 0.00 0.00 0.00 120.50 291.37 205.13 0.00 0.00 0.00 0.00 0.00 -825.33 0.00 -11

PLANTA0:ENTRADA 24-JAN-08:00 1375.05 0.00 0.00 0.00 0.00 0.00 25.16 81.66 57.49 0.00 0.00 0.00 0.00 0.00 -101.72 0.00 -2

PLANTA0:COCINA 21-JAN-05:06 1004.90 0.00 0.00 0.00 0.00 0.00 0.00 0.00 19.60 0.00 0.00 0.00 0.00 0.00 -137.36 0.00 -1

PLANTA0:ASEO 23-JAN-05:45 165.14 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.15 0.00 0.00 0.00 0.00 0.00 -38.49 0.00 -

PLANTA1:HABITACION1 23-JAN-07:56 3041.92 0.00 0.00 0.00 0.00 0.00 43.18 140.14 98.66 0.00 0.00 0.00 0.00 0.00 -423.82 0.00 -5

PLANTA1:PASILLO 23-JAN-08:30 1551.20 0.00 0.00 0.00 0.00 0.00 25.46 78.93 83.35 0.00 0.00 0.00 0.00 0.00 -141.59 0.00 -4

PLANTA1:BANO 23-JAN-08:30 920.33 0.00 0.00 0.00 0.00 0.00 9.68 30.27 31.97 0.00 0.00 0.00 0.00 0.00 -139.24 0.00 -1

PLANTA1:HABITACION2 23-JAN-08:00 1204.47 0.00 0.00 0.00 0.00 0.00 19.47 63.18 44.48 0.00 0.00 0.00 0.00 0.00 -144.52 0.00 -2

PLANTA1:HABITACION3 23-JAN-07:34 2064.02 0.00 0.00 0.00 0.00 0.00 25.76 83.62 58.87 0.00 0.00 0.00 0.00 0.00 -339.36 0.00 -3

PLANTA2:ZONA3 23-JAN-07:34 1252.77 0.00 0.00 0.00 0.00 0.00 10.01 32.48 22.87 0.00 0.00 0.00 0.00 0.00 -141.31 0.00 -

PLANTA2:ZONA5 23-JAN-07:34 2498.54 0.00 0.00 0.00 0.00 0.00 25.91 84.11 59.21 0.00 0.00 0.00 0.00 0.00 -198.91 0.00 -2

PLANTA2:ZONA1 23-JAN-08:00 919.66 0.00 0.00 0.00 0.00 0.00 10.83 35.16 24.75 0.00 0.00 0.00 0.00 0.00 -0.00 0.00 -1

PLANTA2:ZONA4 23-JAN-07:34 2196.19 0.00 0.00 0.00 0.00 0.00 17.60 57.11 40.21 0.00 0.00 0.00 0.00 0.00 -225.11 0.00 -1

PLANTA2:ZONA2 23-JAN-07:47 4242.34 0.00 0.00 0.00 0.00 0.00 76.77 249.16 175.41 0.00 0.00 0.00 0.00 0.00 -478.83 0.00 -7

PLANTA3:ZONA1 23-JAN-07:34 7298.76 0.00 0.00 0.00 0.00 0.00 69.32 224.98 158.39 0.00 0.00 0.00 0.00 0.00 -778.26 0.00 -6

Total Facility 23-JAN-07:34 34249.66 0.00 0.00 0.00 0.00 0.00 498.08 1689.03 1376.78 0.00 0.00 0.00 0.00 0.00 -4458.19 0.00 -52

Autocalculatable Fields 556

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[kWh]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Heating

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[kWh]

HVAC

Input

Heated

Surface

Heating

[kWh]

HVAC

Input

Cooled

Surface

Cooling

[kWh]

People

Sensible

Heat

Addition

[kWh]

Lights

Sensible

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Addition

[kWh]

Window

Heat

Addition

[kWh]

Interzone

Air

Transfer

Heat

Addition

[kWh]

Infiltration

Heat

Addition

[kWh]

Opaque

Surface

Conduction

and Other

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Removal

[kWh]

Window

Heat

Removal

[kWh]

Interzone

Air

Transfer

Heat

Removal

[kWh]

Infiltration

Heat

Removal

[kWh]

Opaqu

Surfac

Conductio

and Othe

He

Remov

[kWh

PLANTA0:PASILLO 26.650 -1.30 0.000 0.000 0.000 0.000 1.240 3.536 1.174 0.000 0.000 0.000 0.000 0.000 0.000 0.000 -9.38 -21.9

PLANTA0:SALON 120.416 -17.79 0.000 0.000 0.000 0.000 14.998 43.609 14.473 357.320 0.000 0.000 0.000 0.000 -84.56 0.000 -119.38 -329.0

PLANTA0:ENTRADA 67.982 -4.31 0.000 0.000 0.000 0.000 4.332 12.222 4.056 1.705 0.000 0.000 0.000 0.000 -9.48 0.000 -31.88 -44.6

PLANTA0:COCINA 29.805 0.000 0.000 0.000 0.000 0.000 0.622 7.204 10.666 8.666 0.000 0.000 0.065 0.000 -14.82 0.000 -17.17 -24.9

PLANTA0:ASEO 7.218 0.000 0.000 0.000 0.000 0.000 0.070 0.568 0.090 0.853 0.000 0.000 0.000 0.000 -3.12 0.000 -2.88 -2.8

PLANTA1:HABITACION1 148.640 -6.63 0.000 0.000 0.000 0.000 7.607 20.974 6.961 8.202 0.000 0.000 0.000 0.000 -34.08 0.000 -50.91 -100.7

PLANTA1:PASILLO 47.723 -7.24 0.000 0.000 0.000 0.000 6.045 17.721 5.881 53.190 0.000 0.000 0.002 0.000 -11.53 0.000 -47.65 -64.1

PLANTA1:BANO 37.338 -2.48 0.000 0.000 0.000 0.000 2.387 6.796 2.256 12.710 0.000 0.000 0.000 0.000 -11.82 0.000 -17.47 -29.7

PLANTA1:HABITACION2 39.801 -3.55 0.000 0.000 0.000 0.000 3.302 9.456 3.138 12.565 0.000 0.000 0.000 0.000 -11.84 0.000 -24.53 -28.3

PLANTA1:HABITACION3 45.821 -5.08 0.000 0.000 0.000 0.000 4.300 12.515 4.154 106.855 0.000 0.000 0.000 0.000 -25.96 0.000 -33.36 -109.2

PLANTA2:ZONA3 53.368 -1.43 0.000 0.000 0.000 0.000 1.782 4.862 1.614 13.073 0.000 0.000 0.000 0.000 -10.92 0.000 -8.79 -53.5

PLANTA2:ZONA5 97.719 -4.01 0.000 0.000 0.000 0.000 4.550 12.588 4.178 67.587 0.000 0.000 0.000 0.000 -14.42 0.000 -23.55 -144.6

PLANTA2:ZONA1 42.092 -1.71 0.000 0.000 0.000 0.000 1.897 5.262 1.746 0.000 0.000 0.000 0.000 0.000 0.000 0.000 -9.87 -39.4

PLANTA2:ZONA4 84.157 -2.59 0.000 0.000 0.000 0.000 3.115 8.548 2.837 73.765 0.000 0.000 0.000 0.000 -16.06 0.000 -15.70 -138.0

PLANTA2:ZONA2 200.314 -11.51 0.000 0.000 0.000 0.000 13.580 37.291 12.376 19.447 0.000 0.000 0.000 0.000 -37.49 0.000 -68.64 -165.3

PLANTA3:ZONA1 319.708 -8.04 0.000 0.000 0.000 0.000 12.663 33.672 11.175 44.292 0.000 0.000 0.000 0.000 -58.49 0.000 -56.64 -298.3

Total Facility 1368.753 -77.68 0.000 0.000 0.000 0.000 82.489 236.825 86.775 780.229 0.000 0.000 0.067 0.000 -344.59 0.000 -537.80 -1594.9

Page 158: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Component Sizing Summary

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

ZoneHVAC:IdealLoadsAirSystem

User-Specified values were used. Design Size values were used if no User-Specified values were provided.

Report: Adaptive Comfort Summary

For: Entire Facility

Timestamp: 2018-12-12 19:03:13

Time Not Meeting the Adaptive Comfort Models during Occupied Hours

Table of Contents

Table of Contents

ASHRAE55 90% Acceptability Limits

[Hours]

ASHRAE55 80% Acceptability Limits

[Hours]

CEN15251 Category I Acceptability Limits

[Hours]

CEN15251 Category II Acceptability Limits

[Hours]

CEN15251 Category III Acceptability Limits

[Hours]

Design Size Maximum Heating Air Flow Rate

[m3/s]

Design Size Maximum Sensible Heating

Capacity [W]

Design Size Maximum Cooling Air Flow Rate

[m3/s]

Design Size Maximum Total Cooling

Capacity [W]

PLANTA0:PASILLO IDEAL LOADS AIR 0.037910 610.86 0.031061 451.60

PLANTA0:SALON IDEAL LOADS AIR 0.311165 5173.52 0.303270 4718.18

PLANTA0:ENTRADA IDEAL LOADS AIR 0.088114 1463.28 0.055142 910.97

PLANTA0:COCINA IDEAL LOADS AIR 0.052330 1105.39 0.049613 787.50

PLANTA0:ASEO IDEAL LOADS AIR 0.007859 164.14 0.009205 144.41

PLANTA1:HABITACION1 IDEAL LOADS

AIR

0.198346

3223.66

0.162298

2517.59

PLANTA1:PASILLO IDEAL LOADS AIR 0.097004 1656.76 0.191498 2745.79

PLANTA1:BANO IDEAL LOADS AIR 0.059061 965.68 0.099213 1420.61

PLANTA1:HABITACION2 IDEAL LOADS

AIR

0.077996

1280.53

0.126636

1804.59

PLANTA1:HABITACION3 IDEAL LOADS

AIR

0.139581

2244.14

0.206991

2916.02

PLANTA2:ZONA3 IDEAL LOADS AIR 0.084364 1326.99 0.102547 1448.15

PLANTA2:ZONA5 IDEAL LOADS AIR 0.168106 2675.73 0.164477 2336.06

PLANTA2:ZONA1 IDEAL LOADS AIR 0.059887 961.53 0.061200 879.89

PLANTA2:ZONA4 IDEAL LOADS AIR 0.158175 2482.01 0.136191 1921.79

PLANTA2:ZONA2 IDEAL LOADS AIR 0.278500 4610.90 0.306902 4509.11

PLANTA3:ZONA1 IDEAL LOADS AIR 0.507609 8034.19 0.410928 5914.31

Page 159: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ANEXO 2. RESULTADOS NUMÉRICOS SIMULACIÓN INICIAL. SEMANA

EXTREMA DE VERANO.

Page 160: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Program Version:EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.11 19:22

Tabular Output Report in Format: HTML

Building: Building

Environment: SITIO (13-07:19-07) ** MADRID - ESP IWEC Data WMO#=082210

Simulation Timestamp: 2018-12-11 19:22:41

Report: Annual Building Utility Performance Summary

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Values gathered over 168.00 hours

WARNING: THE REPORT DOES NOT REPRESENT A FULL ANNUAL SIMULATION.

Site and Source Energy

Total Energy [kWh] Energy Per Total Building Area [kWh/m2] Energy Per Conditioned Building Area [kWh/m2]

Total Site Energy 1763.59 6.22 6.22

Net Site Energy 1763.59 6.22 6.22

Total Source Energy 2737.60 9.66 9.66

Net Source Energy 2737.60 9.66 9.66

Site to Source Energy Conversion Factors

Site=>Source Conversion Factor

Electricity 3.167

Natural Gas 1.084

District Cooling 1.056

District Heating 3.613

Steam 0.250

Gasoline 1.050

Diesel 1.050

Coal 1.050

Fuel Oil #1 1.050

Fuel Oil #2 1.050

Propane 1.050

Other Fuel 1 1.000

Other Fuel 2 1.000

Building Area

Area [m2]

Total Building Area 283.42

Net Conditioned Building Area 283.42

Unconditioned Building Area 0.00

End Uses

End Uses By Subcategory

Table of Contents

Table of Contents

Subcategory Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating General 0.00 0.00 0.00 0.00 0.00 0.00

Cooling General 0.00 0.00 0.00 1363.21 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 3.54 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 43.61 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 12.22 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 7.20 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.57 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 20.97 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 17.72 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 6.80 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 9.46 0.00 0.00 0.00 0.00 0.00

Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating 0.00 0.00 0.00 0.00 0.00 0.00

Cooling 0.00 0.00 0.00 1363.21 0.00 0.00

Interior Lighting 236.82 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 95.22 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 68.34 1.23

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 332.05 0.00 0.00 1363.21 68.34 1.23

Page 161: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 12.52 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 4.86 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 12.59 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 5.26 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 8.55 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 37.29 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 33.67 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 1.30 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 16.08 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 4.51 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 10.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.09 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 7.73 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 6.53 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 2.51 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 3.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 4.62 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 1.79 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 4.64 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 1.94 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 3.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 13.75 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 12.42 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 0.98 0.02

DHW Planta0:Salon 0.00 0.00 0.00 0.00 12.13 0.22

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 3.40 0.06

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 4.02 0.07

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 0.63 0.01

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 5.83 0.10

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 4.93 0.09

DHW Planta1:Bano 0.00 0.00 0.00 0.00 1.89 0.03

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 2.63 0.05

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 3.48 0.06

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 1.35 0.02

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 3.50 0.06

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 1.46 0.03

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 2.38 0.04

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 10.37 0.19

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 9.36 0.17

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Normalized Metrics

Utility Use Per Conditioned Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 0.84 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 4.81 0.24 0.00

Other 0.34 0.00 0.00 0.00 0.00 0.00

Total 1.17 0.00 0.00 4.81 0.24 0.00

Utility Use Per Total Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 0.84 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 4.81 0.24 0.00

Other 0.34 0.00 0.00 0.00 0.00 0.00

Total 1.17 0.00 0.00 4.81 0.24 0.00

Electric Loads Satisfied

Electricity [kWh] Percent Electricity [%]

Fuel-Fired Power Generation 0.000 0.00

High Temperature Geothermal* 0.000 0.00

Photovoltaic Power 0.000 0.00

Wind Power 0.000 0.00

Power Conversion 0.000 0.00

Net Decrease in On-Site Storage 0.000 0.00

Total On-Site Electric Sources 0.000 0.00

Electricity Coming From Utility 332.046 100.00

Surplus Electricity Going To Utility 0.000 0.00

Net Electricity From Utility 332.046 100.00

Page 162: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Total On-Site and Utility Electric Sources 332.046 100.00

Total Electricity End Uses 332.046 100.00

On-Site Thermal Sources

Heat [kWh] Percent Heat [%]

Water-Side Heat Recovery 0.00

Air to Air Heat Recovery for Cooling 0.00

Air to Air Heat Recovery for Heating 0.00

High-Temperature Geothermal* 0.00

Solar Water Thermal 0.00

Solar Air Thermal 0.00

Total On-Site Thermal Sources 0.00

Water Source Summary

Water [m3] Percent Water [%]

Rainwater Collection 0.00 0.00

Condensate Collection 0.00 0.00

Groundwater Well 0.00 0.00

Total On Site Water Sources 0.00 0.00

- - -

Initial Storage 0.00 0.00

Final Storage 0.00 0.00

Change in Storage 0.00 0.00

- - -

Water Supplied by Utility 1.23 100.00

- - -

Total On Site, Change in Storage, and Utility Water Sources 1.23 100.00

Total Water End Uses 1.23 100.00

Setpoint Not Met Criteria

Degrees [deltaC]

Tolerance for Zone Heating Setpoint Not Met Time 1.11

Tolerance for Zone Cooling Setpoint Not Met Time 1.11

Comfort and Setpoint Not Met Summary

Facility [Hours]

Time Setpoint Not Met During Occupied Heating 0.00

Time Setpoint Not Met During Occupied Cooling 1.00

Time Not Comfortable Based on Simple ASHRAE 55-2004 107.00

Note 1: An asterisk (*) indicates that the feature is not yet implemented.

Table of Contents

Top

Annual Building Utility Performance Summary

Input Verification and Results Summary

Demand End Use Components Summary

Component Sizing Summary

Adaptive Comfort Summary

Climatic Data Summary

Envelope Summary

Lighting Summary

Equipment Summary

HVAC Sizing Summary

System Summary

Outdoor Air Summary

Object Count Summary

Sensible Heat Gain Summary

Report: Input Verification and Results Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

General

Value

Program Version and Build EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.11 19:22

RunPeriod SITIO (13-07:19-07)

Weather File MADRID - ESP IWEC Data WMO#=082210

Latitude [deg] 40.45

Longitude [deg] -3.5

Elevation [m] 582.00

Time Zone 1.00

North Axis Angle [deg] 0.00

Rotation for Appendix G [deg] 0.00

Hours Simulated [hrs] 168.00

ENVELOPE

Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.79 29.22 0.00 33.07 11.49

Page 163: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Gross Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Above Ground Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Conditioned Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.79 29.22 0.00 33.07 11.49

Gross Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Above Ground Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Skylight-Roof Ratio

Total

Gross Roof Area [m2] 94.67

Skylight Area [m2] 0.00

Skylight-Roof Ratio [%] 0.00

PERFORMANCE

Zone Summary

Area

[m2]

Conditioned

(Y/N)

Part of Total

Floor Area (Y/N)

Volume

[m3]

Multipliers Above Ground Gross

Wall Area [m2]

Underground Gross

Wall Area [m2]

Window Glass

Area [m2]

Opening

Area [m2]

Lighting

[W/m2]

People [m2

per person]

Plug and

Process [W/m2]

PLANTA0:PASILLO 4.20 Yes Yes 14.70 1.00 5.28 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA0:SALON 51.80 Yes Yes 181.30 1.00 53.00 0.00 17.65 18.77 7.5000 33.33 4.4000

PLANTA0:ENTRADA 14.52 Yes Yes 50.81 1.00 10.48 0.00 1.54 1.83 7.5000 33.33 4.4000

PLANTA0:COCINA 9.80 Yes Yes 34.31 1.00 24.65 0.00 2.92 3.59 15.0000 42.19 30.2800

PLANTA0:ASEO 1.55 Yes Yes 5.41 1.00 2.98 0.00 0.58 0.71 7.5000 53.37 1.6700

PLANTA1:HABITACION1 24.91 Yes Yes 84.71 1.00 40.67 0.00 6.26 6.97 7.5000 33.33 4.4000

PLANTA1:PASILLO 21.05 Yes Yes 71.57 1.00 5.67 0.00 2.25 2.55 7.5000 33.33 4.4000

PLANTA1:BANO 8.07 Yes Yes 27.45 1.00 8.75 0.00 1.97 2.21 7.5000 33.33 4.4000

PLANTA1:HABITACION2 11.23 Yes Yes 38.19 1.00 11.90 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA1:HABITACION3 14.87 Yes Yes 50.54 1.00 29.40 0.00 4.61 5.05 7.5000 33.33 4.4000

PLANTA2:ZONA3 5.78 Yes Yes 15.02 1.00 7.29 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA2:ZONA5 14.95 Yes Yes 38.88 1.00 8.15 0.00 2.83 3.25 7.5000 33.33 4.4000

PLANTA2:ZONA1 6.25 Yes Yes 16.25 1.00 0.00 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA2:ZONA4 10.15 Yes Yes 26.40 1.00 20.79 0.00 3.12 3.46 7.5000 33.33 4.4000

PLANTA2:ZONA2 44.30 Yes Yes 115.17 1.00 38.12 0.00 6.75 7.41 7.5000 33.33 4.4000

PLANTA3:ZONA1 40.00 Yes Yes 103.99 1.00 54.65 0.00 12.66 13.61 7.5000 33.33 4.4000

Total 283.42

874.68

321.79 0.00 67.04 73.79 7.7594 33.65 5.2801

Conditioned Total 283.42

874.68

321.79 0.00 67.04 73.79 7.7594 33.65 5.2801

Unconditioned Total 0.00

0.00

0.00 0.00 0.00 0.00

Not Part of Total 0.00

0.00

0.00 0.00 0.00 0.00

Report: Demand End Use Components Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

End Uses

Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Time of Peak 15-JUL-14:30 - - 17-JUL-15:00 15-JUL-08:30 15-JUL-08:30

Heating 0.00 0.00 0.00 0.00 0.00 0.00

Cooling 0.00 0.00 0.00 32448.83 0.00 0.00

Interior Lighting 2040.56 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 1216.88 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 1590.02 0.00

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 3257.44 0.00 0.00 32448.83 1590.02 0.00

End Uses By Subcategory

Subcategory Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Heating General 0.00 0.00 0.00 0.00 0.00 0.00

Cooling General 0.00 0.00 0.00 32448.83 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 31.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 388.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 108.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

Page 164: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 186.85 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 157.87 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 60.55 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 84.24 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 111.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 43.31 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 112.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 46.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 76.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 332.21 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 299.97 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 18.48 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 227.92 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 63.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 19.60 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 109.62 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 92.62 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 35.52 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 49.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 65.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 25.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 65.79 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 27.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 44.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 194.90 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 175.99 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 21.85 0.00

DHW Planta0:Salon 0.00 0.00 0.00 0.00 269.45 0.00

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 75.52 0.00

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 150.94 0.00

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 23.80 0.00

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 129.59 0.00

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 109.49 0.00

DHW Planta1:Bano 0.00 0.00 0.00 0.00 41.99 0.00

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 58.43 0.00

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 77.33 0.00

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 30.04 0.00

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 77.78 0.00

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 32.51 0.00

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 52.82 0.00

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 230.41 0.00

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 208.05 0.00

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Report: Climatic Data Summary

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

SizingPeriod:DesignDay

Weather Statistics File

Value

None

Report: Envelope Summary

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Opaque Exterior

Table of Contents

Table of Contents

U-Factor with Film [W/m2- U-Factor no Film [W/m2- Gross Area Net Area Azimuth Tilt Cardinal

Maximum Dry Bulb [C] Daily Temperature Range [deltaC] Humidity Value Humidity Type Wind Speed [m/s] Wind Direction

SUMMER DESIGN DAY IN SITIO (13-07:19-07) JUL 38.20 17.50 20.30 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (13-07:19-07) AGO 38.00 17.40 19.90 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (13-07:19-07) SEP 34.90 16.80 19.30 Wetbulb [C] 0.00 0.00

WINTER DESIGN DAY IN SITIO (13-07:19-07) -4.00 0.00 -4.00 Wetbulb [C] 11.60 0.00

Page 165: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Construction Reflectance K] K] [m2] [m2] [deg] [deg] Direction

PLANTA0:PASILLO_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 5.28 3.51 270.00 90.00 W

PLANTA0:PASILLO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

5.43

5.43

0.00

180.00

PLANTA0:SALON_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 29.83 28.46 270.00 90.00 W

PLANTA0:SALON_WALL_7_0_0 MURO TFM INICIAL 0.40 1.689 2.260 23.17 5.78 180.00 90.00 S

PLANTA0:SALON_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

30.68

30.68

0.00

180.00

PLANTA0:SALON_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

26.95

26.95

0.00

180.00

PLANTA0:ENTRADA_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 10.48 6.71 0.00 90.00 N

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

0.03

0.03

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_1

SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

0.64

0.64

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_2 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

16.10

16.10

0.00

180.00

PLANTA0:COCINA_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 9.71 7.44 0.00 90.00 N

PLANTA0:COCINA_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 14.94 13.62 270.00 90.00 W

PLANTA0:COCINA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

7.68

7.68

0.00

180.00

PLANTA0:COCINA_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

4.80

4.80

0.00

180.00

PLANTA0:ASEO_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 2.98 2.26 0.00 90.00 N

PLANTA0:ASEO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

2.35

2.35

0.00

180.00

PLANTA1:HABITACION1_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 23.17 16.20 0.00 90.00 N

PLANTA1:HABITACION1_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.50 17.50 270.00 90.00 W

PLANTA1:PASILLO_WALL_10_0_0 MURO TFM INICIAL 0.40 1.689 2.260 5.67 3.12 180.00 90.00 S

PLANTA1:BANO_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 8.75 6.54 270.00 90.00 W

PLANTA1:HABITACION2_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 11.90 9.71 270.00 90.00 W

PLANTA1:HABITACION3_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 11.90 11.90 270.00 90.00 W

PLANTA1:HABITACION3_WALL_7_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.50 12.45 180.00 90.00 S

PLANTA2:ZONA3_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 7.29 5.10 270.00 90.00 W

PLANTA2:ZONA3_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 7.29 7.29 180.00 0.00

PLANTA2:ZONA5_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 8.15 4.91 180.00 90.00 S

PLANTA2:ZONA5_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 11.07 11.07 180.00 0.00

PLANTA2:ZONA5_ROOF_1_0_1 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 6.45 6.45 180.00 0.00

PLANTA2:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 7.29 7.29 180.00 0.00

PLANTA2:ZONA4_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 11.07 11.07 270.00 90.00 W

PLANTA2:ZONA4_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 9.72 6.26 180.00 90.00 S

PLANTA2:ZONA4_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 12.91 12.91 180.00 0.00

PLANTA2:ZONA2_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.87 10.72 0.00 90.00 N

PLANTA2:ZONA2_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 20.25 18.04 270.00 90.00 W

PLANTA2:ZONA2_ROOF_1_1_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 3.31 3.31 180.00 0.00

PLANTA3:ZONA1_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.87 5.63 0.00 90.00 N

PLANTA3:ZONA1_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 18.90 18.90 270.00 90.00 W

PLANTA3:ZONA1_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.87 14.54 180.00 90.00 S

PLANTA3:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 46.34 46.34 180.00 0.00

Exterior Fenestration

Construction

Glass

Area

[m2]

Frame

Area

[m2]

Divider

Area

[m2]

Area of

One

Opening

[m2]

Area of

Multiplied

Openings

[m2]

Glass

U-

Factor

[W/m2-

K]

Glass

SHGC

Glass Visible

Transmittance

Frame

Conductance

[W/m2-K]

Divider

Conductance

[W/m2-K]

Shade

Control

Parent Surface

Azimut

[de

PLANTA0:SALON_WALL_6_0_0_0_0_0_WIN 1001 1.19 0.18 0.00 1.37 1.37 3.835 0.768 0.821 9.500 0.000 No PLANTA0:SALON_WALL_6_0_0 270.

PLANTA0:SALON_WALL_7_0_0_0_0_0_WIN 1001 13.62 0.62 0.45 14.69 14.69 3.835 0.768 0.821 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:SALON_WALL_7_0_0_1_0_1_WIN 1001 2.36 0.32 0.03 2.70 2.70 3.835 0.768 0.821 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:ENTRADA_WALL_3_0_0_1_0_1_WIN 1001 0.70 0.14 0.00 0.84 0.84 3.835 0.768 0.821 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:ENTRADA_WALL_3_0_0_2_0_2_WIN 1001 0.84 0.15 0.00 0.99 0.99 3.835 0.768 0.821 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:COCINA_WALL_5_0_0_0_0_0_WIN 1001 2.00 0.25 0.02 2.27 2.27 3.835 0.768 0.821 9.500 9.500 No PLANTA0:COCINA_WALL_5_0_0 0.

PLANTA0:COCINA_WALL_6_0_0_0_0_0_WIN 1001 0.22 0.11 0.00 0.33 1.32 3.835 0.768 0.821 9.500 0.000 No PLANTA0:COCINA_WALL_6_0_0 270.

PLANTA0:ASEO_WALL_3_0_0_0_0_0_WIN 1001 0.58 0.13 0.00 0.71 0.71 3.835 0.768 0.821 9.500 0.000 No PLANTA0:ASEO_WALL_3_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_0_0_0_WIN 1001 2.22 0.30 0.05 2.57 2.57 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_1_0_1_WIN 1001 3.94 0.40 0.06 4.40 4.40 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:PASILLO_WALL_10_0_0_0_0_0_WIN 1001 2.22 0.30 0.03 2.55 2.55 3.835 0.768 0.821 9.500 9.500 No PLANTA1:PASILLO_WALL_10_0_0 180.

PLANTA1:BANO_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 3.835 0.768 0.821 9.500 9.500 No PLANTA1:BANO_WALL_4_0_0 270.

PLANTA1:HABITACION2_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION2_WALL_4_0_0 270.

PLANTA1:HABITACION3_WALL_7_0_0_0_0_0_WIN 1001 4.54 0.45 0.06 5.05 5.05 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION3_WALL_7_0_0 180.

PLANTA2:ZONA3_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA3_WALL_4_0_0 270.

PLANTA2:ZONA5_WALL_6_0_0_0_0_0_WIN 1001 1.62 0.24 0.02 1.87 1.87 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA5_WALL_6_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.37 1.37 3.835 0.768 0.821 9.500 0.000 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA4_WALL_5_0_0_0_0_0_WIN 1001 3.08 0.33 0.04 3.46 3.46 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA4_WALL_5_0_0 180.

PLANTA2:ZONA2_WALL_3_0_0_1_0_1_WIN 1001 4.71 0.42 0.07 5.20 5.20 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA2_WALL_3_0_0 0.

PLANTA2:ZONA2_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA2_WALL_4_0_0 270.

PLANTA3:ZONA1_WALL_3_0_0_0_0_0_WIN 1001 1.74 0.25 0.05 2.04 2.04 3.835 0.768 0.821 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_3_0_0_1_0_1_WIN 1001 9.38 0.52 0.30 10.20 10.20 3.835 0.768 0.821 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_5_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.38 1.38 3.835 0.768 0.821 9.500 0.000 No PLANTA3:ZONA1_WALL_5_0_0 180.

Total or Average

73.79 3.835 0.768 0.821

North Total or Average

29.22 3.835 0.768 0.821

Non-North Total or Average

44.57 3.835 0.768 0.821

Interior Fenestration

Page 166: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Construction Area of One Opening [m2] Area of Openings [m2] Glass U-Factor [W/m2-K] Glass SHGC Glass Visible Transmittance Parent Surface

Total or Average

0.00 - - -

Exterior Door

Construction U-Factor with Film [W/m2-K] U-Factor no Film [W/m2-K] Gross Area [m2] Parent Surface

PLANTA0:PASILLO_WALL_6_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.77 PLANTA0:PASILLO_WALL_6_0_0

PLANTA0:ENTRADA_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.94 PLANTA0:ENTRADA_WALL_3_0_0

PLANTA2:ZONA2_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.96 PLANTA2:ZONA2_WALL_3_0_0

PLANTA3:ZONA1_WALL_5_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.95 PLANTA3:ZONA1_WALL_5_0_0

Report: Lighting Summary

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Interior Lighting

Daylighting

Zone Daylighting Type Control Type Fraction Controlled Lighting Installed in Zone [W] Lighting Controlled [W]

None

Exterior Lighting

Report: Equipment Summary

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Central Plant

Type Nominal Capacity [W] Nominal Efficiency [W/W] IPLV in SI Units [W/W] IPLV in IP Units [Btu/W-h]

None

Cooling Coils

DX Cooling Coils

DX Cooling Coil ASHRAE 127 Standard Ratings Report

Table of Contents

Table of Contents

DX Cooling

Coil Type

Rated Net Cooling

Capacity Test A [W]

Rated Electric Power

Test A [W]

Rated Net Cooling

Capacity Test B [W]

Rated Electric Power

Test B [W]

Rated Net Cooling

Capacity Test C [W]

Rated Electric Power

Test C [W]

Rated Net Cooling

Capacity Test D [W]

Rated Electric Power

Test D [W]

Zone

Lighting

Power

Density

[W/m2]

Zone

Area

[m2]

Total

Power

[W]

End Use Subcategory

Schedule Name

Scheduled

Hours/Week

[hr]

Hours/Week

> 1% [hr]

Full Load

Hours/Week

[hr]

Return

Air

Fraction

Conditioned

(Y/N)

Consump

[k

PLANTA0:PASILLO

GENERAL LIGHTING

PLANTA0:PASILLO

7.5000

4.20

31.50 ELECTRIC

EQUIPMENT#Planta0:Pasillo#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA0:SALON

GENERAL LIGHTING

PLANTA0:SALON

7.5000

51.80

388.49 ELECTRIC

EQUIPMENT#Planta0:Salon#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

4

PLANTA0:ENTRADA

GENERAL LIGHTING

PLANTA0:ENTRADA

7.5000

14.52

108.88 ELECTRIC

EQUIPMENT#Planta0:Entrada#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA0:COCINA

GENERAL LIGHTING

PLANTA0:COCINA

15.0000

9.80

147.02 ELECTRIC

EQUIPMENT#Planta0:Cocina#GeneralLights

DWELL_DOMKITCHEN_LIGHT

49.00

49.00

49.00

0.0000

Y

PLANTA0:ASEO

GENERAL LIGHTING

PLANTA0:ASEO

7.5000

1.55

11.59 ELECTRIC

EQUIPMENT#Planta0:Aseo#GeneralLights

DWELL_DOMBATH_LIGHT

49.00

49.00

49.00

0.0000

Y

PLANTA1:HABITACION1

GENERAL LIGHTING

PLANTA1:HABITACION1

7.5000

24.91

186.85 ELECTRIC

EQUIPMENT#Planta1:Habitacion1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

2

PLANTA1:PASILLO

GENERAL LIGHTING

PLANTA1:PASILLO

7.5000

21.05

157.87 ELECTRIC

EQUIPMENT#Planta1:Pasillo#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA1:BANO

GENERAL LIGHTING

PLANTA1:BANO

7.5000

8.07

60.55

ELECTRIC

EQUIPMENT#Planta1:Bano#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA1:HABITACION2

GENERAL LIGHTING

PLANTA1:HABITACION2

7.5000

11.23

84.24 ELECTRIC

EQUIPMENT#Planta1:Habitacion2#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA1:HABITACION3

GENERAL LIGHTING

PLANTA1:HABITACION3

7.5000

14.87

111.50 ELECTRIC

EQUIPMENT#Planta1:Habitacion3#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA2:ZONA3

GENERAL LIGHTING

PLANTA2:ZONA3

7.5000

5.78

43.31 ELECTRIC

EQUIPMENT#Planta2:Zona3#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA5

GENERAL LIGHTING

PLANTA2:ZONA5

7.5000

14.95

112.15 ELECTRIC

EQUIPMENT#Planta2:Zona5#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA2:ZONA1

GENERAL LIGHTING

PLANTA2:ZONA1

7.5000

6.25

46.88 ELECTRIC

EQUIPMENT#Planta2:Zona1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA4

GENERAL LIGHTING

PLANTA2:ZONA4

7.5000

10.15

76.15 ELECTRIC

EQUIPMENT#Planta2:Zona4#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA2

GENERAL LIGHTING

PLANTA2:ZONA2

7.5000

44.30

332.21 ELECTRIC

EQUIPMENT#Planta2:Zona2#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

3

PLANTA3:ZONA1

GENERAL LIGHTING

PLANTA3:ZONA1

7.5000

40.00

299.97 ELECTRIC

EQUIPMENT#Planta3:Zona1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

3

Interior Lighting Total

7.7594 283.42 2199.17

23

Total Watts Astronomical Clock/Schedule Schedule Name Scheduled Hours/Week [hr] Hours/Week > 1% [hr] Full Load Hours/Week [hr] Consumption [kWh]

Exterior Lighting Total 0.00

0.00

Type Design Coil Load

[W]

Nominal Total Capacity

[W]

Nominal Sensible Capacity

[W]

Nominal Latent Capacity

[W]

Nominal Sensible Heat

Ratio

Nominal Efficiency

[W/W]

Nominal Coil UA Value

[W/C]

Nominal Coil Surface Area

[m2]

None

DX Cooling Coil Type Standard Rated Net Cooling Capacity [W] Standard Rated Net COP [W/W] EER [Btu/W-h] SEER [Btu/W-h] IEER [Btu/W-h]

None

Page 167: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

DX Heating Coils

DX Heating Coil Type High Temperature Heating (net) Rating Capacity [W] Low Temperature Heating (net) Rating Capacity [W] HSPF [Btu/W-h] Region Number

None

Heating Coils

Type Design Coil Load [W] Nominal Total Capacity [W] Nominal Efficiency [W/W]

None

Fans

Type Total Efficiency [W/W] Delta Pressure [pa] Max Air Flow Rate [m3/s] Rated Electric Power [W] Rated Power Per Max Air Flow Rate [W-s/m3] Motor Heat In Air Fraction End Use

None

Pumps

Type Control Head [pa] Water Flow [m3/s] Electric Power [W] Power Per Water Flow Rate [W-s/m3] Motor Efficiency [W/W]

None

Service Water Heating

Type Storage Volume [m3] Input [W] Thermal Efficiency [W/W] Recovery Efficiency [W/W] Energy Factor

None

Report: HVAC Sizing Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Zone Sensible Cooling

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

371.11

426.78

101.60

0.027

0.031

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

AGO

8/15 16:30:00

24.00

24.00

0.00776

36.26

0.00819

0.001

0.00

PLANTA0:SALON

4058.20

4666.94

90.10

0.264

0.303

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

SEP

9/15 16:00:00

24.00

24.00

0.00811

33.89

0.00864

0.016

0.00

PLANTA0:ENTRADA

696.47

800.94

55.17

0.048

0.055

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 16:00:00

24.00

24.00

0.00822

37.15

0.00867

0.004

0.00

PLANTA0:COCINA

642.14

738.46

75.34

0.043

0.050

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 19:00:00

25.00

25.00

0.00786

31.38

0.00867

0.003

0.00

PLANTA0:ASEO

119.15

137.02

88.64

0.008

0.009

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 17:30:00

25.00

25.00

0.00780

34.88

0.00867

0.000

0.00

PLANTA1:HABITACION1

2100.46

2415.53

96.96

0.141

0.162

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 16:00:00

24.00

24.00

0.00805

37.15

0.00867

0.007

0.00

PLANTA1:PASILLO

2287.96

2631.15

125.00

0.167

0.191

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

AGO

8/15 16:30:00

24.00

24.00

0.00773

36.26

0.00819

0.006

0.00

PLANTA1:BANO

1185.37

1363.17

168.86

0.086

0.099

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 17:00:00

24.00

24.00

0.00777

35.75

0.00867

0.002

0.00

PLANTA1:HABITACION2

1513.01

1739.97

154.91

0.110

0.127

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

AGO

8/15 17:00:00

24.00

24.00

0.00774

35.56

0.00819

0.003

0.00

PLANTA1:HABITACION3

2473.04

2844.00

191.31

0.180

0.207

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

SEP

9/15 16:30:00

24.00

24.00

0.00772

33.22

0.00864

0.004

0.00

PLANTA2:ZONA3

1225.21

1408.99

243.98

0.089

0.103

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 17:00:00

24.00

24.00

0.00774

35.75

0.00867

0.002

0.00

PLANTA2:ZONA5

1965.12

2259.88

151.13

0.143

0.164

SUMMER

DESIGN

DAY IN

8/15 16:30:00

24.00

24.00

0.00771

36.26

0.00819

0.004

0.00

None

Page 168: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

SITIO (13-

07:19-07)

AGO

PLANTA2:ZONA1

731.19

840.87

134.54

0.053

0.061

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 16:30:00

24.00

24.00

0.00774

36.45

0.00867

0.002

0.00

PLANTA2:ZONA4

1627.16

1871.23

184.30

0.118

0.136

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

AGO

8/15 16:30:00

24.00

24.00

0.00771

36.26

0.00819

0.003

0.00

PLANTA2:ZONA2

3666.75

4216.77

95.20

0.267

0.307

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 17:00:00

24.00

24.00

0.00779

35.75

0.00867

0.013

0.00

PLANTA3:ZONA1

4909.61

5646.06

141.16

0.357

0.411

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 17:00:00

24.00

24.00

0.00776

35.75

0.00867

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

Zone Sensible Heating

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

458.26

572.82

136.37

0.030

0.038

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01442

-4.00

0.00289

0.001

0.00

PLANTA0:SALON

3763.62

4704.53

90.82

0.249

0.311

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.98

0.01391

-4.00

0.00289

0.016

0.00

PLANTA0:ENTRADA

1065.45

1331.82

91.74

0.070

0.088

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01392

-4.00

0.00289

0.004

0.00

PLANTA0:COCINA

827.36

1034.20

105.51

0.042

0.052

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

18.00

17.99

0.01373

-4.00

0.00289

0.003

0.00

PLANTA0:ASEO

124.21

155.26

100.45

0.006

0.008

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

18.00

17.99

0.01365

-4.00

0.00289

0.000

0.00

PLANTA1:HABITACION1

2398.46

2998.07

120.34

0.159

0.198

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01431

-4.00

0.00289

0.007

0.00

PLANTA1:PASILLO

1172.92

1466.15

69.65

0.078

0.097

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01353

-4.00

0.00289

0.006

0.00

PLANTA1:BANO

714.05

892.57

110.56

0.047

0.059

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01421

-4.00

0.00289

0.002

0.00

PLANTA1:HABITACION2

943.05

1178.81

104.95

0.062

0.078

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01415

-4.00

0.00289

0.003

0.00

PLANTA1:HABITACION3

1687.62

2109.52

141.90

0.112

0.140

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01449

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA3

1019.75

1274.68

220.72

0.067

0.084

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01503

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA5

2032.25

2540.31

169.89

0.134

0.168

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01487

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA1

723.94

904.93

144.79

0.048

0.060

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01475

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA4

1912.04

2390.05

235.39

0.127

0.158

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01506

-4.00

0.00289

0.003

0.00

WINTER

DESIGN

DAY IN

Page 169: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

PLANTA2:ZONA2

3367.85

4209.81

95.04

0.223

0.279

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01435

-4.00

0.00289

0.013

0.00

PLANTA3:ZONA1

6137.60

7672.00

191.82

0.406

0.508

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01495

-4.00

0.00289

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

System Design Air Flow Rates

Calculated cooling [m3/s] User cooling [m3/s] Calculated heating [m3/s] User heating [m3/s]

None

Plant Loop Coincident Design Fluid Flow Rate Adjustments

Previous Design Volume

Flow Rate [m3/s]

Algorithm Volume Flow

Rate [m3/s]

Coincident Design Volume

Flow Rate [m3/s]

Coincident Size

Adjusted

Peak Sizing

Period Name

Peak Day into Period

{TIMESTAMP}[day]

Peak Hour Of Day

{TIMESTAMP}[hr]

Peak Step Start Minute

{TIMESTAMP}[min]

None

Report: System Summary

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Economizer

Demand Controlled Ventilation using Controller:MechanicalVentilation

Time Not Comfortable Based on Simple ASHRAE 55-2004

Winter Clothes [hr] Summer Clothes [hr] Summer or Winter Clothes [hr]

PLANTA0:PASILLO 119.50 7.50 7.50

PLANTA0:SALON 124.50 27.50 27.50

PLANTA0:ENTRADA 93.00 10.50 6.50

PLANTA0:COCINA 49.00 0.00 0.00

PLANTA0:ASEO 46.50 0.00 0.00

PLANTA1:HABITACION1 138.00 73.50 73.50

PLANTA1:PASILLO 138.00 62.00 62.00

PLANTA1:BANO 138.00 73.00 73.00

PLANTA1:HABITACION2 138.00 75.00 75.00

PLANTA1:HABITACION3 138.00 76.00 76.00

PLANTA2:ZONA3 138.00 88.00 88.00

PLANTA2:ZONA5 138.00 79.00 79.00

PLANTA2:ZONA1 138.00 75.50 75.50

PLANTA2:ZONA4 138.00 93.50 93.50

PLANTA2:ZONA2 138.00 78.00 78.00

PLANTA3:ZONA1 138.00 107.00 107.00

Facility 154.00 111.00 107.00

Aggregated over the RunPeriods for Weather

Time Setpoint Not Met

During Heating [hr] During Cooling [hr] During Occupied Heating [hr] During Occupied Cooling [hr]

PLANTA0:PASILLO 0.00 0.00 0.00 0.00

PLANTA0:SALON 0.00 1.00 0.00 1.00

PLANTA0:ENTRADA 0.00 0.00 0.00 0.00

PLANTA0:COCINA 0.00 0.00 0.00 0.00

PLANTA0:ASEO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION1 0.00 1.00 0.00 1.00

PLANTA1:PASILLO 0.00 0.00 0.00 0.00

PLANTA1:BANO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION2 0.00 0.00 0.00 0.00

PLANTA1:HABITACION3 0.00 0.00 0.00 0.00

PLANTA2:ZONA3 0.00 0.00 0.00 0.00

PLANTA2:ZONA5 0.00 0.00 0.00 0.00

PLANTA2:ZONA1 0.00 0.00 0.00 0.00

PLANTA2:ZONA4 0.00 0.00 0.00 0.00

PLANTA2:ZONA2 0.00 1.00 0.00 1.00

PLANTA3:ZONA1 0.00 0.00 0.00 0.00

Facility 0.00 1.00 0.00 1.00

Aggregated over the RunPeriods for Weather

Report: Outdoor Air Summary

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Table of Contents

Table of Contents

High Limit Shutoff Control Minimum Outdoor Air [m3/s] Maximum Outdoor Air [m3/s] Return Air Temp Limit Return Air Enthalpy Limit Outdoor Air Temperature Limit [C] Outdoor Air Enthalpy Limit [C]

None

Controller:MechanicalVentilation

Name

Outdoor Air Per

Person [m3/s-

person]

Outdoor Air Per

Area [m3/s-m2]

Outdoor Air

Per Zone

[m3/s]

Outdoor Air

ACH [ach]

Outdoor Air

Method

Outdoor Air

Schedule

Name

Air Distribution

Effectiveness in Cooling

Mode

Air Distribution

Effectiveness in Heating

Mode

Air Distribution

Effectiveness Schedule

Name

None

Page 170: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Average Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.70 0.258 0.696 0.000 0.000

PLANTA0:SALON 1.27 1.55 181.30 0.258 0.697 0.000 0.000

PLANTA0:ENTRADA 0.36 0.44 50.81 0.258 0.695 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.31 0.163 0.692 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.41 0.129 0.692 0.000 0.000

PLANTA1:HABITACION1 0.61 0.75 84.71 0.267 0.699 0.000 0.000

PLANTA1:PASILLO 0.52 0.63 71.57 0.266 0.698 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.45 0.267 0.699 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.19 0.267 0.699 0.000 0.000

PLANTA1:HABITACION3 0.36 0.45 50.54 0.267 0.699 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 15.02 0.350 0.701 0.000 0.000

PLANTA2:ZONA5 0.37 0.45 38.88 0.349 0.700 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.349 0.700 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.40 0.350 0.701 0.000 0.000

PLANTA2:ZONA2 1.08 1.33 115.17 0.349 0.700 0.000 0.000

PLANTA3:ZONA1 0.98 1.20 103.99 0.350 0.702 0.000 0.000

Values shown for a single zone without multipliers

Minimum Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.70 0.155 0.013 0.000 0.000

PLANTA0:SALON 1.27 1.55 181.30 0.155 0.013 0.000 0.000

PLANTA0:ENTRADA 0.36 0.44 50.81 0.155 0.013 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.31 0.060 0.022 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.41 0.047 0.022 0.000 0.000

PLANTA1:HABITACION1 0.61 0.75 84.71 0.160 0.013 0.000 0.000

PLANTA1:PASILLO 0.52 0.63 71.57 0.160 0.013 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.45 0.160 0.013 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.19 0.160 0.013 0.000 0.000

PLANTA1:HABITACION3 0.36 0.45 50.54 0.160 0.013 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 15.02 0.210 0.013 0.000 0.000

PLANTA2:ZONA5 0.37 0.45 38.88 0.210 0.013 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.210 0.013 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.40 0.210 0.013 0.000 0.000

PLANTA2:ZONA2 1.08 1.33 115.17 0.210 0.013 0.000 0.000

PLANTA3:ZONA1 0.98 1.20 103.99 0.210 0.013 0.000 0.000

Values shown for a single zone without multipliers

Report: Object Count Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Surfaces by Class

Total Outdoors

Wall 91 23

Floor 46 9

Roof 44 7

Internal Mass 0 0

Building Detached Shading 24 24

Fixed Detached Shading 0 0

Window 23 23

Door 36 4

Glass Door 0 0

Shading 0 0

Overhang 0 0

Fin 0 0

Tubular Daylighting Device Dome 0 0

Tubular Daylighting Device Diffuser 0 0

HVAC

Count

HVAC Air Loops 0

Conditioned Zones 16

Unconditioned Zones 0

Supply Plenums 0

Return Plenums 0

Input Fields

Count

IDF Objects 1844

Defaulted Fields 213

Fields with Defaults 3384

Autosized Fields 64

Autosizable Fields 64

Autocalculated Fields 98

Page 171: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Sensible Heat Gain Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Annual Building Sensible Heat Gain Components

a

Peak Cooling Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 17-JUL-15:48 0.00 -414.25 0.00 0.00 0.00 0.00 8.63 31.50 16.63 0.00 0.00 40.77 316.71 0.00 -0.00 0.00

PLANTA0:SALON 17-JUL-06:02 0.00 -4358.38 0.00 0.00 0.00 0.00 68.93 291.37 205.13 0.00 0.00 0.00 4055.10 0.00 -143.94 0.00 -1

PLANTA0:ENTRADA 19-JUL-15:01 0.00 -836.72 0.00 0.00 0.00 0.00 19.99 108.88 57.49 187.44 0.00 90.26 372.66 0.00 -0.00 0.00

PLANTA0:COCINA 17-JUL-16:03 0.00 -717.40 0.00 0.00 0.00 0.00 0.00 0.00 19.60 690.71 0.00 67.73 0.00 0.00 -0.00 0.00

PLANTA0:ASEO 17-JUL-16:45 0.00 -140.07 0.00 0.00 0.00 0.00 0.00 0.00 0.15 65.22 0.00 14.28 60.42 0.00 -0.00 0.00

PLANTA1:HABITACION1 18-JUL-06:02 0.00 -2320.33 0.00 0.00 0.00 0.00 30.13 140.14 98.66 0.00 0.00 0.00 2363.93 0.00 -149.09 0.00 -1

PLANTA1:PASILLO 19-JUL-15:38 0.00 -2608.26 0.00 0.00 0.00 0.00 43.23 157.87 83.35 431.03 0.00 185.06 1707.72 0.00 -0.00 0.00

PLANTA1:BANO 19-JUL-15:38 0.00 -1354.38 0.00 0.00 0.00 0.00 16.58 60.55 31.97 986.95 0.00 71.30 187.02 0.00 -0.00 0.00

PLANTA1:HABITACION2 19-JUL-15:38 0.00 -1711.89 0.00 0.00 0.00 0.00 23.07 84.24 44.48 981.44 0.00 99.42 479.24 0.00 -0.00 0.00

PLANTA1:HABITACION3 17-JUL-15:01 0.00 -2520.60 0.00 0.00 0.00 0.00 6.24 111.50 58.87 937.98 0.00 58.39 1347.62 0.00 -0.00 0.00

PLANTA2:ZONA3 17-JUL-15:36 0.00 -1280.48 0.00 0.00 0.00 0.00 11.86 43.31 22.87 963.68 0.00 39.59 199.17 0.00 -0.00 0.00

PLANTA2:ZONA5 17-JUL-15:48 0.00 -2220.78 0.00 0.00 0.00 0.00 30.71 112.15 59.21 533.77 0.00 105.45 1379.48 0.00 -0.00 0.00

PLANTA2:ZONA1 17-JUL-15:48 0.00 -820.31 0.00 0.00 0.00 0.00 12.84 46.88 24.75 0.00 0.00 44.77 691.08 0.00 -0.00 0.00

PLANTA2:ZONA4 17-JUL-15:36 0.00 -1814.32 0.00 0.00 0.00 0.00 20.85 76.15 40.21 586.01 0.00 69.16 1021.93 0.00 -0.00 0.00

PLANTA2:ZONA2 17-JUL-16:03 0.00 -4189.89 0.00 0.00 0.00 0.00 0.00 0.00 175.41 1629.84 0.00 323.73 2060.91 0.00 -0.00 0.00

PLANTA3:ZONA1 17-JUL-15:36 0.00 -5374.95 0.00 0.00 0.00 0.00 82.15 299.97 158.39 1482.68 0.00 269.30 3082.46 0.00 -0.00 0.00

Total Facility

17-JUL-15:36

0.00 -

31246.24

0.00

0.00

0.00

0.00

558.84

2040.56

1097.17

13440.74

0.00

2223.59

11885.34

0.00

0.00

0.00

Peak Heating Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 18-JUL-14:40 14.30 0.00 0.00 0.00 0.00 0.00 6.10 31.50 16.63 0.00 0.00 30.07 0.00 0.00 -0.00 0.00

PLANTA0:SALON 16-JUL-22:01 153.30 0.00 0.00 0.00 0.00 0.00 106.39 388.49 11.06 250.50 0.00 328.96 0.00 0.00 -0.00 0.00

PLANTA0:ENTRADA 18-JUL-14:40 48.21 0.00 0.00 0.00 0.00 0.00 20.43 108.88 57.49 181.86 0.00 101.39 0.00 0.00 -0.00 0.00

PLANTA0:COCINA - 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00

PLANTA0:ASEO - 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00

PLANTA1:HABITACION1 16-JUL-22:01 71.50 0.00 0.00 0.00 0.00 0.00 51.17 186.85 5.32 107.29 0.00 148.50 0.00 0.00 -0.00 0.00

PLANTA1:PASILLO 16-JUL-22:01 61.23 0.00 0.00 0.00 0.00 0.00 43.23 157.87 4.50 32.19 0.00 127.22 0.00 0.00 -0.00 0.00

PLANTA1:BANO 16-JUL-22:01 22.80 0.00 0.00 0.00 0.00 0.00 16.58 60.55 1.72 34.44 0.00 47.32 0.00 0.00 -0.00 0.00

PLANTA1:HABITACION2 16-JUL-22:01 31.77 0.00 0.00 0.00 0.00 0.00 23.07 84.24 2.40 33.53 0.00 65.95 0.00 0.00 -0.00 0.00

PLANTA1:HABITACION3 16-JUL-22:01 41.84 0.00 0.00 0.00 0.00 0.00 30.53 111.50 3.18 70.21 0.00 86.84 0.00 0.00 -0.00 0.00

PLANTA2:ZONA3 16-JUL-22:01 15.11 0.00 0.00 0.00 0.00 0.00 11.86 43.31 1.23 30.98 0.00 23.89 0.00 0.00 -0.00 0.00

PLANTA2:ZONA5 16-JUL-22:01 40.94 0.00 0.00 0.00 0.00 0.00 30.71 112.15 3.19 39.58 0.00 64.80 0.00 0.00 -0.00 0.00

PLANTA2:ZONA1 16-JUL-22:01 17.28 0.00 0.00 0.00 0.00 0.00 12.84 46.88 1.34 0.00 0.00 27.35 0.00 0.00 -0.00 0.00

PLANTA2:ZONA4 16-JUL-22:01 26.85 0.00 0.00 0.00 0.00 0.00 20.85 76.15 2.17 42.98 0.00 42.47 0.00 0.00 -0.00 0.00

PLANTA2:ZONA2 16-JUL-22:01 125.26 0.00 0.00 0.00 0.00 0.00 90.98 332.21 9.46 106.29 0.00 198.41 0.00 0.00 -0.00 0.00

PLANTA3:ZONA1 16-JUL-22:01 107.43 0.00 0.00 0.00 0.00 0.00 82.15 299.97 8.54 135.53 0.00 169.62 0.00 0.00 -0.00 0.00

Total Facility 16-JUL-22:01 350.17 0.00 0.00 0.00 0.00 0.00 558.84 2040.56 77.87 972.47 0.00 1517.09 0.00 0.00 0.00 0.00

Autocalculatable Fields 556

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[kWh]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Heating

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[kWh]

HVAC

Input

Heated

Surface

Heating

[kWh]

HVAC

Input

Cooled

Surface

Cooling

[kWh]

People

Sensible

Heat

Addition

[kWh]

Lights

Sensible

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Addition

[kWh]

Window

Heat

Addition

[kWh]

Interzone

Air

Transfer

Heat

Addition

[kWh]

Infiltration

Heat

Addition

[kWh]

Opaque

Surface

Conduction

and Other

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Removal

[kWh]

Window

Heat

Removal

[kWh]

Interzone

Air

Transfer

Heat

Removal

[kWh]

Infiltration

Heat

Removal

[kWh]

Opaqu

Surfac

Conductio

and Othe

He

Remov

[kWh

PLANTA0:PASILLO 0.193 -15.64 0.000 0.000 0.000 0.000 0.868 3.536 1.174 0.000 0.000 2.624 7.932 0.000 0.000 0.000 -0.69 -0.0

PLANTA0:SALON 1.527 -132.14 0.000 0.000 0.000 0.000 10.263 43.609 14.473 236.223 0.000 29.459 0.005 0.000 -11.35 0.000 -8.32 -183.7

PLANTA0:ENTRADA 0.683 -26.09 0.000 0.000 0.000 0.000 3.071 12.222 4.056 15.095 0.000 9.076 0.000 0.000 -0.98 0.000 -2.02 -15.1

PLANTA0:COCINA 0.000 -33.34 0.000 0.000 0.000 0.000 0.417 7.204 10.666 37.912 0.000 5.261 0.083 0.000 -2.43 0.000 -1.80 -23.8

PLANTA0:ASEO 0.000 -3.77 0.000 0.000 0.000 0.000 0.049 0.568 0.090 5.738 0.000 0.881 0.010 0.000 -0.43 0.000 -0.24 -2.8

PLANTA1:HABITACION1 0.599 -109.22 0.000 0.000 0.000 0.000 4.583 20.974 6.961 56.068 0.000 13.281 17.841 0.000 -5.60 0.000 -5.48 0.00

PLANTA1:PASILLO 0.571 -91.02 0.000 0.000 0.000 0.000 3.982 17.721 5.881 31.435 0.000 11.420 26.136 0.000 -1.87 0.000 -4.26 0.00

PLANTA1:BANO 0.195 -54.05 0.000 0.000 0.000 0.000 1.483 6.796 2.256 43.200 0.000 4.319 0.022 0.000 -1.98 0.000 -1.79 -0.4

PLANTA1:HABITACION2 0.257 -69.89 0.000 0.000 0.000 0.000 2.031 9.456 3.138 42.917 0.000 5.971 10.769 0.000 -2.05 0.000 -2.61 0.00

PLANTA1:HABITACION3 0.279 -94.48 0.000 0.000 0.000 0.000 2.654 12.515 4.154 63.987 0.000 7.703 11.464 0.000 -4.83 0.000 -3.45 -0.0

PLANTA2:ZONA3 0.086 -57.15 0.000 0.000 0.000 0.000 0.958 4.862 1.614 42.089 0.000 2.238 8.993 0.000 -2.44 0.000 -1.25 0.00

PLANTA2:ZONA5 0.252 -95.44 0.000 0.000 0.000 0.000 2.542 12.588 4.178 39.340 0.000 5.849 37.049 0.000 -3.29 0.000 -3.07 0.00

PLANTA2:ZONA1 0.154 -35.65 0.000 0.000 0.000 0.000 1.097 5.262 1.746 0.000 0.000 2.564 26.090 0.000 0.000 0.000 -1.26 0.00

PLANTA2:ZONA4 0.138 -81.18 0.000 0.000 0.000 0.000 1.670 8.548 2.837 42.864 0.000 3.894 27.403 0.000 -3.96 0.000 -2.22 0.00

PLANTA2:ZONA2 0.722 -187.44 0.000 0.000 0.000 0.000 7.614 37.291 12.376 87.145 0.000 17.199 41.497 0.000 -7.63 0.000 -8.77 0.00

PLANTA3:ZONA1 0.390 -257.91 0.000 0.000 0.000 0.000 6.266 33.672 11.175 113.828 0.000 14.930 102.933 0.000 -15.83 0.000 -9.45 0.00

Total Facility 6.047 -1344.41 0.000 0.000 0.000 0.000 49.548 236.825 86.775 857.839 0.000 136.667 318.228 0.000 -64.69 0.000 -56.66 -226.1

Page 172: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Component Sizing Summary

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

ZoneHVAC:IdealLoadsAirSystem

User-Specified values were used. Design Size values were used if no User-Specified values were provided.

Report: Adaptive Comfort Summary

For: Entire Facility

Timestamp: 2018-12-11 19:22:41

Time Not Meeting the Adaptive Comfort Models during Occupied Hours

Table of Contents

Table of Contents

ASHRAE55 90% Acceptability Limits

[Hours]

ASHRAE55 80% Acceptability Limits

[Hours]

CEN15251 Category I Acceptability Limits

[Hours]

CEN15251 Category II Acceptability Limits

[Hours]

CEN15251 Category III Acceptability Limits

[Hours]

Design Size Maximum Heating Air Flow Rate

[m3/s]

Design Size Maximum Sensible Heating

Capacity [W]

Design Size Maximum Cooling Air Flow Rate

[m3/s]

Design Size Maximum Total Cooling

Capacity [W]

PLANTA0:PASILLO IDEAL LOADS AIR 0.037910 610.86 0.031061 451.60

PLANTA0:SALON IDEAL LOADS AIR 0.311165 5173.52 0.303270 4718.18

PLANTA0:ENTRADA IDEAL LOADS AIR 0.088114 1463.28 0.055142 910.97

PLANTA0:COCINA IDEAL LOADS AIR 0.052330 1105.39 0.049613 787.50

PLANTA0:ASEO IDEAL LOADS AIR 0.007859 164.14 0.009205 144.41

PLANTA1:HABITACION1 IDEAL LOADS

AIR

0.198346

3223.66

0.162298

2517.59

PLANTA1:PASILLO IDEAL LOADS AIR 0.097004 1656.76 0.191498 2745.79

PLANTA1:BANO IDEAL LOADS AIR 0.059061 965.68 0.099213 1420.61

PLANTA1:HABITACION2 IDEAL LOADS

AIR

0.077996

1280.53

0.126636

1804.59

PLANTA1:HABITACION3 IDEAL LOADS

AIR

0.139581

2244.14

0.206991

2916.02

PLANTA2:ZONA3 IDEAL LOADS AIR 0.084364 1326.99 0.102547 1448.15

PLANTA2:ZONA5 IDEAL LOADS AIR 0.168106 2675.73 0.164477 2336.06

PLANTA2:ZONA1 IDEAL LOADS AIR 0.059887 961.53 0.061200 879.89

PLANTA2:ZONA4 IDEAL LOADS AIR 0.158175 2482.01 0.136191 1921.79

PLANTA2:ZONA2 IDEAL LOADS AIR 0.278500 4610.90 0.306902 4509.11

PLANTA3:ZONA1 IDEAL LOADS AIR 0.507609 8034.19 0.410928 5914.31

Page 173: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ANEXO 3. RESULTADOS NUMÉRICOS SIMULACIÓN INICIAL. ANUAL.

Page 174: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Program Version:EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.13 18:49

Tabular Output Report in Format: HTML

Building: Building

Environment: SITIO (01-01:31-12) ** MADRID - ESP IWEC Data WMO#=082210

Simulation Timestamp: 2018-12-13 18:49:14

Report: Annual Building Utility Performance Summary

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Values gathered over 8760.00 hours

Site and Source Energy

Total Energy [kWh] Energy Per Total Building Area [kWh/m2] Energy Per Conditioned Building Area [kWh/m2]

Total Site Energy 59636.56 210.42 210.42

Net Site Energy 59636.56 210.42 210.42

Total Source Energy 179021.81 631.65 631.65

Net Source Energy 179021.81 631.65 631.65

Site to Source Energy Conversion Factors

Site=>Source Conversion Factor

Electricity 3.167

Natural Gas 1.084

District Cooling 1.056

District Heating 3.613

Steam 0.250

Gasoline 1.050

Diesel 1.050

Coal 1.050

Fuel Oil #1 1.050

Fuel Oil #2 1.050

Propane 1.050

Other Fuel 1 1.000

Other Fuel 2 1.000

Building Area

Area [m2]

Total Building Area 283.42

Net Conditioned Building Area 283.42

Unconditioned Building Area 0.00

End Uses

Note: District heat appears to be the principal heating source based on energy usage.

End Uses By Subcategory

Table of Contents

Table of Contents

Subcategory Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating General 0.00 0.00 0.00 0.00 27516.34 0.00

Cooling General 0.00 0.00 0.00 11234.92 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 184.40 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 2273.96 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 637.31 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 375.64 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 29.62 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 1093.68 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 924.05 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 354.40 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 493.08 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 652.61 0.00 0.00 0.00 0.00 0.00

Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating 0.00 0.00 0.00 0.00 27516.34 0.00

Cooling 0.00 0.00 0.00 11234.92 0.00 0.00

Interior Lighting 12349.15 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 4969.31 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 3566.84 64.00

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 17318.46 0.00 0.00 11234.92 31083.19 64.00

Page 175: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 253.52 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 656.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 274.37 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 445.73 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 1944.54 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 1755.83 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 68.06 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 839.30 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 235.23 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 556.18 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 4.71 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 403.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 341.06 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 130.81 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 181.99 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 240.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 93.57 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 242.28 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 101.27 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 164.52 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 717.72 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 648.06 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 51.33 0.92

DHW Planta0:Salon 0.00 0.00 0.00 0.00 632.93 11.36

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 177.39 3.18

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 209.36 3.76

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 33.02 0.59

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 304.42 5.46

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 257.20 4.61

DHW Planta1:Bano 0.00 0.00 0.00 0.00 98.64 1.77

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 137.24 2.46

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 181.65 3.26

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 70.56 1.27

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 182.71 3.28

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 76.37 1.37

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 124.06 2.23

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 541.24 9.71

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 488.72 8.77

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Normalized Metrics

Utility Use Per Conditioned Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 43.57 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 39.64 109.67 0.23

Other 17.53 0.00 0.00 0.00 0.00 0.00

Total 61.10 0.00 0.00 39.64 109.67 0.23

Utility Use Per Total Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 43.57 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 39.64 109.67 0.23

Other 17.53 0.00 0.00 0.00 0.00 0.00

Total 61.10 0.00 0.00 39.64 109.67 0.23

Electric Loads Satisfied

Electricity [kWh] Percent Electricity [%]

Fuel-Fired Power Generation 0.000 0.00

High Temperature Geothermal* 0.000 0.00

Photovoltaic Power 0.000 0.00

Wind Power 0.000 0.00

Power Conversion 0.000 0.00

Net Decrease in On-Site Storage 0.000 0.00

Total On-Site Electric Sources 0.000 0.00

Electricity Coming From Utility 17318.461 100.00

Surplus Electricity Going To Utility 0.000 0.00

Net Electricity From Utility 17318.461 100.00

Total On-Site and Utility Electric Sources 17318.461 100.00

Page 176: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Total Electricity End Uses 17318.461 100.00

On-Site Thermal Sources

Heat [kWh] Percent Heat [%]

Water-Side Heat Recovery 0.00

Air to Air Heat Recovery for Cooling 0.00

Air to Air Heat Recovery for Heating 0.00

High-Temperature Geothermal* 0.00

Solar Water Thermal 0.00

Solar Air Thermal 0.00

Total On-Site Thermal Sources 0.00

Water Source Summary

Water [m3] Percent Water [%]

Rainwater Collection 0.00 0.00

Condensate Collection 0.00 0.00

Groundwater Well 0.00 0.00

Total On Site Water Sources 0.00 0.00

- - -

Initial Storage 0.00 0.00

Final Storage 0.00 0.00

Change in Storage 0.00 0.00

- - -

Water Supplied by Utility 64.00 100.00

- - -

Total On Site, Change in Storage, and Utility Water Sources 64.00 100.00

Total Water End Uses 64.00 100.00

Setpoint Not Met Criteria

Degrees [deltaC]

Tolerance for Zone Heating Setpoint Not Met Time 1.11

Tolerance for Zone Cooling Setpoint Not Met Time 1.11

Comfort and Setpoint Not Met Summary

Facility [Hours]

Time Setpoint Not Met During Occupied Heating 18.00

Time Setpoint Not Met During Occupied Cooling 4.50

Time Not Comfortable Based on Simple ASHRAE 55-2004 5611.00

Note 1: An asterisk (*) indicates that the feature is not yet implemented.

Table of Contents

Top

Annual Building Utility Performance Summary

Input Verification and Results Summary

Demand End Use Components Summary

Component Sizing Summary

Adaptive Comfort Summary

Climatic Data Summary

Envelope Summary

Lighting Summary

Equipment Summary

HVAC Sizing Summary

System Summary

Outdoor Air Summary

Object Count Summary

Sensible Heat Gain Summary

Report: Input Verification and Results Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

General

Value

Program Version and Build EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.13 18:49

RunPeriod SITIO (01-01:31-12)

Weather File MADRID - ESP IWEC Data WMO#=082210

Latitude [deg] 40.45

Longitude [deg] -3.5

Elevation [m] 582.00

Time Zone 1.00

North Axis Angle [deg] 0.00

Rotation for Appendix G [deg] 0.00

Hours Simulated [hrs] 8760.00

ENVELOPE

Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.79 29.22 0.00 33.07 11.49

Gross Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Page 177: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Above Ground Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Conditioned Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.79 29.22 0.00 33.07 11.49

Gross Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Above Ground Window-Wall Ratio [%] 22.93 35.60 0.00 40.29 7.29

Skylight-Roof Ratio

Total

Gross Roof Area [m2] 94.67

Skylight Area [m2] 0.00

Skylight-Roof Ratio [%] 0.00

PERFORMANCE

Zone Summary

Area

[m2]

Conditioned

(Y/N)

Part of Total

Floor Area (Y/N)

Volume

[m3]

Multipliers Above Ground Gross

Wall Area [m2]

Underground Gross

Wall Area [m2]

Window Glass

Area [m2]

Opening

Area [m2]

Lighting

[W/m2]

People [m2

per person]

Plug and

Process [W/m2]

PLANTA0:PASILLO 4.20 Yes Yes 14.70 1.00 5.28 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA0:SALON 51.80 Yes Yes 181.30 1.00 53.00 0.00 17.65 18.77 7.5000 33.33 4.4000

PLANTA0:ENTRADA 14.52 Yes Yes 50.81 1.00 10.48 0.00 1.54 1.83 7.5000 33.33 4.4000

PLANTA0:COCINA 9.80 Yes Yes 34.31 1.00 24.65 0.00 2.92 3.59 15.0000 42.19 30.2800

PLANTA0:ASEO 1.55 Yes Yes 5.41 1.00 2.98 0.00 0.58 0.71 7.5000 53.37 1.6700

PLANTA1:HABITACION1 24.91 Yes Yes 84.71 1.00 40.67 0.00 6.26 6.97 7.5000 33.33 4.4000

PLANTA1:PASILLO 21.05 Yes Yes 71.57 1.00 5.67 0.00 2.25 2.55 7.5000 33.33 4.4000

PLANTA1:BANO 8.07 Yes Yes 27.45 1.00 8.75 0.00 1.97 2.21 7.5000 33.33 4.4000

PLANTA1:HABITACION2 11.23 Yes Yes 38.19 1.00 11.90 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA1:HABITACION3 14.87 Yes Yes 50.54 1.00 29.40 0.00 4.61 5.05 7.5000 33.33 4.4000

PLANTA2:ZONA3 5.78 Yes Yes 15.02 1.00 7.29 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA2:ZONA5 14.95 Yes Yes 38.88 1.00 8.15 0.00 2.83 3.25 7.5000 33.33 4.4000

PLANTA2:ZONA1 6.25 Yes Yes 16.25 1.00 0.00 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA2:ZONA4 10.15 Yes Yes 26.40 1.00 20.79 0.00 3.12 3.46 7.5000 33.33 4.4000

PLANTA2:ZONA2 44.30 Yes Yes 115.17 1.00 38.12 0.00 6.75 7.41 7.5000 33.33 4.4000

PLANTA3:ZONA1 40.00 Yes Yes 103.99 1.00 54.65 0.00 12.66 13.61 7.5000 33.33 4.4000

Total 283.42

874.68

321.79 0.00 67.04 73.79 7.7594 33.65 5.2801

Conditioned Total 283.42

874.68

321.79 0.00 67.04 73.79 7.7594 33.65 5.2801

Unconditioned Total 0.00

0.00

0.00 0.00 0.00 0.00

Not Part of Total 0.00

0.00

0.00 0.00 0.00 0.00

Report: Demand End Use Components Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

End Uses

Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Time of Peak 01-JAN-15:30 - - 20-AUG-15:00 18-JAN-07:00 20-FEB-09:30

Heating 0.00 0.00 0.00 0.00 34779.18 0.00

Cooling 0.00 0.00 0.00 33757.99 0.00 0.00

Interior Lighting 2040.56 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 1216.88 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 528.56 0.00

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 3257.44 0.00 0.00 33757.99 35307.75 0.00

End Uses By Subcategory

Subcategory Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Heating General 0.00 0.00 0.00 0.00 34779.18 0.00

Cooling General 0.00 0.00 0.00 33757.99 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 31.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 388.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 108.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 186.85 0.00 0.00 0.00 0.00 0.00

Page 178: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 157.87 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 60.55 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 84.24 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 111.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 43.31 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 112.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 46.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 76.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 332.21 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 299.97 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 18.48 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 227.92 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 63.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 19.60 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 109.62 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 92.62 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 35.52 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 49.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 65.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 25.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 65.79 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 27.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 44.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 194.90 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 175.99 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 5.46 0.00

DHW Planta0:Salon 0.00 0.00 0.00 0.00 67.36 0.00

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 18.88 0.00

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 150.94 0.00

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 23.80 0.00

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 32.40 0.00

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 27.37 0.00

DHW Planta1:Bano 0.00 0.00 0.00 0.00 10.50 0.00

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 14.61 0.00

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 19.33 0.00

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 7.51 0.00

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 19.45 0.00

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 8.13 0.00

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 13.20 0.00

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 57.60 0.00

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 52.01 0.00

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Report: Climatic Data Summary

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

SizingPeriod:DesignDay

Weather Statistics File

Value

None

Report: Envelope Summary

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Opaque Exterior

Table of Contents

Table of Contents

Construction

Reflectance U-Factor with Film [W/m2-

K]

U-Factor no Film [W/m2-

K]

Gross Area

[m2]

Net Area

[m2]

Azimuth

[deg]

Tilt

[deg]

Cardinal

Direction

Maximum Dry Bulb [C] Daily Temperature Range [deltaC] Humidity Value Humidity Type Wind Speed [m/s] Wind Direction

SUMMER DESIGN DAY IN SITIO (01-01:31-12) JUL 38.20 17.50 20.30 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (01-01:31-12) AGO 38.00 17.40 19.90 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (01-01:31-12) SEP 34.90 16.80 19.30 Wetbulb [C] 0.00 0.00

WINTER DESIGN DAY IN SITIO (01-01:31-12) -4.00 0.00 -4.00 Wetbulb [C] 11.60 0.00

Page 179: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

PLANTA0:PASILLO_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 5.28 3.51 270.00 90.00 W

PLANTA0:PASILLO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

5.43

5.43

0.00

180.00

PLANTA0:SALON_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 29.83 28.46 270.00 90.00 W

PLANTA0:SALON_WALL_7_0_0 MURO TFM INICIAL 0.40 1.689 2.260 23.17 5.78 180.00 90.00 S

PLANTA0:SALON_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

30.68

30.68

0.00

180.00

PLANTA0:SALON_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

26.95

26.95

0.00

180.00

PLANTA0:ENTRADA_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 10.48 6.71 0.00 90.00 N

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

0.03

0.03

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

0.64

0.64

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_2 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

16.10

16.10

0.00

180.00

PLANTA0:COCINA_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 9.71 7.44 0.00 90.00 N

PLANTA0:COCINA_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 14.94 13.62 270.00 90.00 W

PLANTA0:COCINA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

7.68

7.68

0.00

180.00

PLANTA0:COCINA_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

4.80

4.80

0.00

180.00

PLANTA0:ASEO_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 2.98 2.26 0.00 90.00 N

PLANTA0:ASEO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

INICIAL

0.60

2.558

4.368

2.35

2.35

0.00

180.00

PLANTA1:HABITACION1_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 23.17 16.20 0.00 90.00 N

PLANTA1:HABITACION1_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.50 17.50 270.00 90.00 W

PLANTA1:PASILLO_WALL_10_0_0 MURO TFM INICIAL 0.40 1.689 2.260 5.67 3.12 180.00 90.00 S

PLANTA1:BANO_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 8.75 6.54 270.00 90.00 W

PLANTA1:HABITACION2_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 11.90 9.71 270.00 90.00 W

PLANTA1:HABITACION3_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 11.90 11.90 270.00 90.00 W

PLANTA1:HABITACION3_WALL_7_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.50 12.45 180.00 90.00 S

PLANTA2:ZONA3_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 7.29 5.10 270.00 90.00 W

PLANTA2:ZONA3_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 7.29 7.29 180.00 0.00

PLANTA2:ZONA5_WALL_6_0_0 MURO TFM INICIAL 0.40 1.689 2.260 8.15 4.91 180.00 90.00 S

PLANTA2:ZONA5_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 11.07 11.07 180.00 0.00

PLANTA2:ZONA5_ROOF_1_0_1 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 6.45 6.45 180.00 0.00

PLANTA2:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 7.29 7.29 180.00 0.00

PLANTA2:ZONA4_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 11.07 11.07 270.00 90.00 W

PLANTA2:ZONA4_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 9.72 6.26 180.00 90.00 S

PLANTA2:ZONA4_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 12.91 12.91 180.00 0.00

PLANTA2:ZONA2_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.87 10.72 0.00 90.00 N

PLANTA2:ZONA2_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 20.25 18.04 270.00 90.00 W

PLANTA2:ZONA2_ROOF_1_1_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 3.31 3.31 180.00 0.00

PLANTA3:ZONA1_WALL_3_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.87 5.63 0.00 90.00 N

PLANTA3:ZONA1_WALL_4_0_0 MURO TFM INICIAL 0.40 1.689 2.260 18.90 18.90 270.00 90.00 W

PLANTA3:ZONA1_WALL_5_0_0 MURO TFM INICIAL 0.40 1.689 2.260 17.87 14.54 180.00 90.00 S

PLANTA3:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM INICIAL 0.40 3.794 7.921 46.34 46.34 180.00 0.00

Exterior Fenestration

Construction

Glass

Area

[m2]

Frame

Area

[m2]

Divider

Area

[m2]

Area of

One

Opening

[m2]

Area of

Multiplied

Openings

[m2]

Glass

U-

Factor

[W/m2-

K]

Glass

SHGC

Glass Visible

Transmittance

Frame

Conductance

[W/m2-K]

Divider

Conductance

[W/m2-K]

Shade

Control

Parent Surface

Azimut

[de

PLANTA0:SALON_WALL_6_0_0_0_0_0_WIN 1001 1.19 0.18 0.00 1.37 1.37 3.835 0.768 0.821 9.500 0.000 No PLANTA0:SALON_WALL_6_0_0 270.

PLANTA0:SALON_WALL_7_0_0_0_0_0_WIN 1001 13.62 0.62 0.45 14.69 14.69 3.835 0.768 0.821 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:SALON_WALL_7_0_0_1_0_1_WIN 1001 2.36 0.32 0.03 2.70 2.70 3.835 0.768 0.821 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:ENTRADA_WALL_3_0_0_1_0_1_WIN 1001 0.70 0.14 0.00 0.84 0.84 3.835 0.768 0.821 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:ENTRADA_WALL_3_0_0_2_0_2_WIN 1001 0.84 0.15 0.00 0.99 0.99 3.835 0.768 0.821 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:COCINA_WALL_5_0_0_0_0_0_WIN 1001 2.00 0.25 0.02 2.27 2.27 3.835 0.768 0.821 9.500 9.500 No PLANTA0:COCINA_WALL_5_0_0 0.

PLANTA0:COCINA_WALL_6_0_0_0_0_0_WIN 1001 0.22 0.11 0.00 0.33 1.32 3.835 0.768 0.821 9.500 0.000 No PLANTA0:COCINA_WALL_6_0_0 270.

PLANTA0:ASEO_WALL_3_0_0_0_0_0_WIN 1001 0.58 0.13 0.00 0.71 0.71 3.835 0.768 0.821 9.500 0.000 No PLANTA0:ASEO_WALL_3_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_0_0_0_WIN 1001 2.22 0.30 0.05 2.57 2.57 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_1_0_1_WIN 1001 3.94 0.40 0.06 4.40 4.40 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:PASILLO_WALL_10_0_0_0_0_0_WIN 1001 2.22 0.30 0.03 2.55 2.55 3.835 0.768 0.821 9.500 9.500 No PLANTA1:PASILLO_WALL_10_0_0 180.

PLANTA1:BANO_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 3.835 0.768 0.821 9.500 9.500 No PLANTA1:BANO_WALL_4_0_0 270.

PLANTA1:HABITACION2_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION2_WALL_4_0_0 270.

PLANTA1:HABITACION3_WALL_7_0_0_0_0_0_WIN 1001 4.54 0.45 0.06 5.05 5.05 3.835 0.768 0.821 9.500 9.500 No PLANTA1:HABITACION3_WALL_7_0_0 180.

PLANTA2:ZONA3_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA3_WALL_4_0_0 270.

PLANTA2:ZONA5_WALL_6_0_0_0_0_0_WIN 1001 1.62 0.24 0.02 1.87 1.87 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA5_WALL_6_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.37 1.37 3.835 0.768 0.821 9.500 0.000 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA4_WALL_5_0_0_0_0_0_WIN 1001 3.08 0.33 0.04 3.46 3.46 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA4_WALL_5_0_0 180.

PLANTA2:ZONA2_WALL_3_0_0_1_0_1_WIN 1001 4.71 0.42 0.07 5.20 5.20 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA2_WALL_3_0_0 0.

PLANTA2:ZONA2_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 3.835 0.768 0.821 9.500 9.500 No PLANTA2:ZONA2_WALL_4_0_0 270.

PLANTA3:ZONA1_WALL_3_0_0_0_0_0_WIN 1001 1.74 0.25 0.05 2.04 2.04 3.835 0.768 0.821 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_3_0_0_1_0_1_WIN 1001 9.38 0.52 0.30 10.20 10.20 3.835 0.768 0.821 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_5_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.38 1.38 3.835 0.768 0.821 9.500 0.000 No PLANTA3:ZONA1_WALL_5_0_0 180.

Total or Average

73.79 3.835 0.768 0.821

North Total or Average

29.22 3.835 0.768 0.821

Non-North Total or Average

44.57 3.835 0.768 0.821

Interior Fenestration

Construction Area of One Opening [m2] Area of Openings [m2] Glass U-Factor [W/m2-K] Glass SHGC Glass Visible Transmittance Parent Surface

Page 180: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Total or Average

0.00 - - -

Exterior Door

Construction U-Factor with Film [W/m2-K] U-Factor no Film [W/m2-K] Gross Area [m2] Parent Surface

PLANTA0:PASILLO_WALL_6_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.77 PLANTA0:PASILLO_WALL_6_0_0

PLANTA0:ENTRADA_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.94 PLANTA0:ENTRADA_WALL_3_0_0

PLANTA2:ZONA2_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.96 PLANTA2:ZONA2_WALL_3_0_0

PLANTA3:ZONA1_WALL_5_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.95 PLANTA3:ZONA1_WALL_5_0_0

Report: Lighting Summary

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Interior Lighting

Daylighting

Zone Daylighting Type Control Type Fraction Controlled Lighting Installed in Zone [W] Lighting Controlled [W]

None

Exterior Lighting

Report: Equipment Summary

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Central Plant

Type Nominal Capacity [W] Nominal Efficiency [W/W] IPLV in SI Units [W/W] IPLV in IP Units [Btu/W-h]

None

Cooling Coils

DX Cooling Coils

DX Cooling Coil ASHRAE 127 Standard Ratings Report

Table of Contents

Table of Contents

DX Cooling

Coil Type

Rated Net Cooling

Capacity Test A [W]

Rated Electric Power

Test A [W]

Rated Net Cooling

Capacity Test B [W]

Rated Electric Power

Test B [W]

Rated Net Cooling

Capacity Test C [W]

Rated Electric Power

Test C [W]

Rated Net Cooling

Capacity Test D [W]

Rated Electric Power

Test D [W]

None

Zone

Lighting

Power

Density

[W/m2]

Zone

Area

[m2]

Total

Power

[W]

End Use Subcategory

Schedule Name

Scheduled

Hours/Week

[hr]

Hours/Week

> 1% [hr]

Full Load

Hours/Week

[hr]

Return

Air

Fraction

Conditioned

(Y/N)

Consump

[k

PLANTA0:PASILLO

GENERAL LIGHTING

PLANTA0:PASILLO

7.5000

4.20

31.50 ELECTRIC

EQUIPMENT#Planta0:Pasillo#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

18

PLANTA0:SALON

GENERAL LIGHTING

PLANTA0:SALON

7.5000

51.80

388.49 ELECTRIC

EQUIPMENT#Planta0:Salon#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

227

PLANTA0:ENTRADA

GENERAL LIGHTING

PLANTA0:ENTRADA

7.5000

14.52

108.88 ELECTRIC

EQUIPMENT#Planta0:Entrada#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

63

PLANTA0:COCINA

GENERAL LIGHTING

PLANTA0:COCINA

15.0000

9.80

147.02 ELECTRIC

EQUIPMENT#Planta0:Cocina#GeneralLights

DWELL_DOMKITCHEN_LIGHT

49.00

49.00

49.00

0.0000

Y

37

PLANTA0:ASEO

GENERAL LIGHTING

PLANTA0:ASEO

7.5000

1.55

11.59 ELECTRIC

EQUIPMENT#Planta0:Aseo#GeneralLights

DWELL_DOMBATH_LIGHT

49.00

49.00

49.00

0.0000

Y

2

PLANTA1:HABITACION1

GENERAL LIGHTING

PLANTA1:HABITACION1

7.5000

24.91

186.85 ELECTRIC

EQUIPMENT#Planta1:Habitacion1#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

109

PLANTA1:PASILLO

GENERAL LIGHTING

PLANTA1:PASILLO

7.5000

21.05

157.87 ELECTRIC

EQUIPMENT#Planta1:Pasillo#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

92

PLANTA1:BANO

GENERAL LIGHTING

PLANTA1:BANO

7.5000

8.07

60.55 ELECTRIC

EQUIPMENT#Planta1:Bano#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

35

PLANTA1:HABITACION2

GENERAL LIGHTING

PLANTA1:HABITACION2

7.5000

11.23

84.24 ELECTRIC

EQUIPMENT#Planta1:Habitacion2#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

49

PLANTA1:HABITACION3

GENERAL LIGHTING

PLANTA1:HABITACION3

7.5000

14.87

111.50 ELECTRIC

EQUIPMENT#Planta1:Habitacion3#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

65

PLANTA2:ZONA3

GENERAL LIGHTING

PLANTA2:ZONA3

7.5000

5.78

43.31 ELECTRIC

EQUIPMENT#Planta2:Zona3#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

25

PLANTA2:ZONA5

GENERAL LIGHTING

PLANTA2:ZONA5

7.5000

14.95

112.15 ELECTRIC

EQUIPMENT#Planta2:Zona5#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

65

PLANTA2:ZONA1

GENERAL LIGHTING

PLANTA2:ZONA1

7.5000

6.25

46.88 ELECTRIC

EQUIPMENT#Planta2:Zona1#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

27

PLANTA2:ZONA4

GENERAL LIGHTING

PLANTA2:ZONA4

7.5000

10.15

76.15 ELECTRIC

EQUIPMENT#Planta2:Zona4#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

44

PLANTA2:ZONA2

GENERAL LIGHTING

PLANTA2:ZONA2

7.5000

44.30

332.21 ELECTRIC

EQUIPMENT#Planta2:Zona2#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

194

PLANTA3:ZONA1

GENERAL LIGHTING

PLANTA3:ZONA1

7.5000

40.00

299.97 ELECTRIC

EQUIPMENT#Planta3:Zona1#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

175

Interior Lighting Total

7.7594 283.42 2199.17

1234

Total Watts Astronomical Clock/Schedule Schedule Name Scheduled Hours/Week [hr] Hours/Week > 1% [hr] Full Load Hours/Week [hr] Consumption [kWh]

Exterior Lighting Total 0.00

0.00

Type Design Coil Load

[W]

Nominal Total Capacity

[W]

Nominal Sensible Capacity

[W]

Nominal Latent Capacity

[W]

Nominal Sensible Heat

Ratio

Nominal Efficiency

[W/W]

Nominal Coil UA Value

[W/C]

Nominal Coil Surface Area

[m2]

None

DX Cooling Coil Type Standard Rated Net Cooling Capacity [W] Standard Rated Net COP [W/W] EER [Btu/W-h] SEER [Btu/W-h] IEER [Btu/W-h]

None

Page 181: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

DX Heating Coils

DX Heating Coil Type High Temperature Heating (net) Rating Capacity [W] Low Temperature Heating (net) Rating Capacity [W] HSPF [Btu/W-h] Region Number

None

Heating Coils

Type Design Coil Load [W] Nominal Total Capacity [W] Nominal Efficiency [W/W]

None

Fans

Type Total Efficiency [W/W] Delta Pressure [pa] Max Air Flow Rate [m3/s] Rated Electric Power [W] Rated Power Per Max Air Flow Rate [W-s/m3] Motor Heat In Air Fraction End Use

None

Pumps

Type Control Head [pa] Water Flow [m3/s] Electric Power [W] Power Per Water Flow Rate [W-s/m3] Motor Efficiency [W/W]

None

Service Water Heating

Type Storage Volume [m3] Input [W] Thermal Efficiency [W/W] Recovery Efficiency [W/W] Energy Factor

None

Report: HVAC Sizing Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Zone Sensible Cooling

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

371.11

426.78

101.60

0.027

0.031

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

AGO

8/15 16:30:00

24.00

24.00

0.00776

36.26

0.00819

0.001

0.00

PLANTA0:SALON

4058.20

4666.94

90.10

0.264

0.303

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

SEP

9/15 16:00:00

24.00

24.00

0.00811

33.89

0.00864

0.016

0.00

PLANTA0:ENTRADA

696.47

800.94

55.17

0.048

0.055

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 16:00:00

24.00

24.00

0.00822

37.15

0.00867

0.004

0.00

PLANTA0:COCINA

642.14

738.46

75.34

0.043

0.050

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 19:00:00

25.00

25.00

0.00786

31.38

0.00867

0.003

0.00

PLANTA0:ASEO

119.15

137.02

88.64

0.008

0.009

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 17:30:00

25.00

25.00

0.00780

34.88

0.00867

0.000

0.00

PLANTA1:HABITACION1

2100.46

2415.53

96.96

0.141

0.162

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 16:00:00

24.00

24.00

0.00805

37.15

0.00867

0.007

0.00

PLANTA1:PASILLO

2287.96

2631.15

125.00

0.167

0.191

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

AGO

8/15 16:30:00

24.00

24.00

0.00773

36.26

0.00819

0.006

0.00

PLANTA1:BANO

1185.37

1363.17

168.86

0.086

0.099

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 17:00:00

24.00

24.00

0.00777

35.75

0.00867

0.002

0.00

PLANTA1:HABITACION2

1513.01

1739.97

154.91

0.110

0.127

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

AGO

8/15 17:00:00

24.00

24.00

0.00774

35.56

0.00819

0.003

0.00

PLANTA1:HABITACION3

2473.04

2844.00

191.31

0.180

0.207

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

SEP

9/15 16:30:00

24.00

24.00

0.00772

33.22

0.00864

0.004

0.00

PLANTA2:ZONA3

1225.21

1408.99

243.98

0.089

0.103

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 17:00:00

24.00

24.00

0.00774

35.75

0.00867

0.002

0.00

PLANTA2:ZONA5

1965.12

2259.88

151.13

0.143

0.164

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

8/15 16:30:00

24.00

24.00

0.00771

36.26

0.00819

0.004

0.00

Page 182: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

AGO

PLANTA2:ZONA1

731.19

840.87

134.54

0.053

0.061

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 16:30:00

24.00

24.00

0.00774

36.45

0.00867

0.002

0.00

PLANTA2:ZONA4

1627.16

1871.23

184.30

0.118

0.136

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

AGO

8/15 16:30:00

24.00

24.00

0.00771

36.26

0.00819

0.003

0.00

PLANTA2:ZONA2

3666.75

4216.77

95.20

0.267

0.307

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 17:00:00

24.00

24.00

0.00779

35.75

0.00867

0.013

0.00

PLANTA3:ZONA1

4909.61

5646.06

141.16

0.357

0.411

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 17:00:00

24.00

24.00

0.00776

35.75

0.00867

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

Zone Sensible Heating

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

458.26

572.82

136.37

0.030

0.038

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01442

-4.00

0.00289

0.001

0.00

PLANTA0:SALON

3763.62

4704.53

90.82

0.249

0.311

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.98

0.01391

-4.00

0.00289

0.016

0.00

PLANTA0:ENTRADA

1065.45

1331.82

91.74

0.070

0.088

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01392

-4.00

0.00289

0.004

0.00

PLANTA0:COCINA

827.36

1034.20

105.51

0.042

0.052

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

18.00

17.99

0.01373

-4.00

0.00289

0.003

0.00

PLANTA0:ASEO

124.21

155.26

100.45

0.006

0.008

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

18.00

17.99

0.01365

-4.00

0.00289

0.000

0.00

PLANTA1:HABITACION1

2398.46

2998.07

120.34

0.159

0.198

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01431

-4.00

0.00289

0.007

0.00

PLANTA1:PASILLO

1172.92

1466.15

69.65

0.078

0.097

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01353

-4.00

0.00289

0.006

0.00

PLANTA1:BANO

714.05

892.57

110.56

0.047

0.059

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01421

-4.00

0.00289

0.002

0.00

PLANTA1:HABITACION2

943.05

1178.81

104.95

0.062

0.078

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01415

-4.00

0.00289

0.003

0.00

PLANTA1:HABITACION3

1687.62

2109.52

141.90

0.112

0.140

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01449

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA3

1019.75

1274.68

220.72

0.067

0.084

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01503

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA5

2032.25

2540.31

169.89

0.134

0.168

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01487

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA1

723.94

904.93

144.79

0.048

0.060

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01475

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA4

1912.04

2390.05

235.39

0.127

0.158

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01506

-4.00

0.00289

0.003

0.00

PLANTA2:ZONA2

3367.85

4209.81

95.04

0.223

0.279

WINTER

DESIGN

DAY IN

SITIO

(01-

1/15 24:00:00

22.00

21.99

0.01435

-4.00

0.00289

0.013

0.00

Page 183: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

01:31-12)

PLANTA3:ZONA1

6137.60

7672.00

191.82

0.406

0.508

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01495

-4.00

0.00289

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

System Design Air Flow Rates

Calculated cooling [m3/s] User cooling [m3/s] Calculated heating [m3/s] User heating [m3/s]

None

Plant Loop Coincident Design Fluid Flow Rate Adjustments

Previous Design Volume

Flow Rate [m3/s]

Algorithm Volume Flow

Rate [m3/s]

Coincident Design Volume

Flow Rate [m3/s]

Coincident Size

Adjusted

Peak Sizing

Period Name

Peak Day into Period

{TIMESTAMP}[day]

Peak Hour Of Day

{TIMESTAMP}[hr]

Peak Step Start Minute

{TIMESTAMP}[min]

None

Report: System Summary

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Economizer

Demand Controlled Ventilation using Controller:MechanicalVentilation

Time Not Comfortable Based on Simple ASHRAE 55-2004

Winter Clothes [hr] Summer Clothes [hr] Summer or Winter Clothes [hr]

PLANTA0:PASILLO 4219.50 5850.00 3315.50

PLANTA0:SALON 3990.50 5478.50 2734.00

PLANTA0:ENTRADA 4020.00 6224.50 3502.00

PLANTA0:COCINA 1905.50 1910.50 1389.00

PLANTA0:ASEO 1808.50 2084.00 1469.00

PLANTA1:HABITACION1 5161.50 5546.50 3784.00

PLANTA1:PASILLO 4167.00 5014.50 2369.00

PLANTA1:BANO 4615.50 5240.50 2988.00

PLANTA1:HABITACION2 4656.50 5248.50 3016.00

PLANTA1:HABITACION3 4743.50 5211.50 3062.00

PLANTA2:ZONA3 5569.00 5660.50 4281.50

PLANTA2:ZONA5 5422.50 5578.50 4070.50

PLANTA2:ZONA1 5334.50 5544.00 3990.00

PLANTA2:ZONA4 5571.00 5685.50 4298.50

PLANTA2:ZONA2 5393.00 5556.00 4017.50

PLANTA3:ZONA1 5840.50 5939.00 4790.00

Facility 7196.00 7596.50 5611.00

Aggregated over the RunPeriods for Weather

Time Setpoint Not Met

During Heating [hr] During Cooling [hr] During Occupied Heating [hr] During Occupied Cooling [hr]

PLANTA0:PASILLO 0.00 0.00 0.00 0.00

PLANTA0:SALON 14.00 4.50 14.00 4.50

PLANTA0:ENTRADA 11.00 0.00 11.00 0.00

PLANTA0:COCINA 0.00 0.00 0.00 0.00

PLANTA0:ASEO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION1 10.50 2.00 10.50 2.00

PLANTA1:PASILLO 9.00 0.00 9.00 0.00

PLANTA1:BANO 3.00 0.00 3.00 0.00

PLANTA1:HABITACION2 2.50 0.00 2.50 0.00

PLANTA1:HABITACION3 1.50 0.00 1.50 0.00

PLANTA2:ZONA3 0.00 0.00 0.00 0.00

PLANTA2:ZONA5 1.00 0.00 1.00 0.00

PLANTA2:ZONA1 0.50 0.00 0.50 0.00

PLANTA2:ZONA4 0.00 0.00 0.00 0.00

PLANTA2:ZONA2 10.50 2.00 10.50 2.00

PLANTA3:ZONA1 10.00 1.00 10.00 1.00

Facility 18.00 4.50 18.00 4.50

Aggregated over the RunPeriods for Weather

Report: Outdoor Air Summary

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Average Outdoor Air During Occupied Hours

Table of Contents

Table of Contents

High Limit Shutoff Control Minimum Outdoor Air [m3/s] Maximum Outdoor Air [m3/s] Return Air Temp Limit Return Air Enthalpy Limit Outdoor Air Temperature Limit [C] Outdoor Air Enthalpy Limit [C]

None

Controller:MechanicalVentilation

Name

Outdoor Air Per

Person [m3/s-

person]

Outdoor Air Per

Area [m3/s-m2]

Outdoor Air

Per Zone

[m3/s]

Outdoor Air

ACH [ach]

Outdoor Air

Method

Outdoor Air

Schedule

Name

Air Distribution

Effectiveness in Cooling

Mode

Air Distribution

Effectiveness in Heating

Mode

Air Distribution

Effectiveness Schedule

Name

None

Page 184: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.70 0.253 0.720 0.000 0.000

PLANTA0:SALON 1.26 1.55 181.30 0.253 0.721 0.000 0.000

PLANTA0:ENTRADA 0.35 0.44 50.81 0.253 0.719 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.31 0.160 0.719 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.41 0.126 0.717 0.000 0.000

PLANTA1:HABITACION1 0.61 0.75 84.71 0.260 0.720 0.000 0.000

PLANTA1:PASILLO 0.51 0.63 71.57 0.261 0.723 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.45 0.261 0.722 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.19 0.261 0.722 0.000 0.000

PLANTA1:HABITACION3 0.36 0.45 50.54 0.261 0.722 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 15.02 0.341 0.720 0.000 0.000

PLANTA2:ZONA5 0.36 0.45 38.88 0.341 0.721 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.341 0.721 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.40 0.341 0.720 0.000 0.000

PLANTA2:ZONA2 1.08 1.33 115.17 0.341 0.721 0.000 0.000

PLANTA3:ZONA1 0.98 1.20 103.99 0.340 0.719 0.000 0.000

Values shown for a single zone without multipliers

Minimum Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.70 0.148 0.012 0.000 0.000

PLANTA0:SALON 1.26 1.55 181.30 0.148 0.012 0.000 0.000

PLANTA0:ENTRADA 0.35 0.44 50.81 0.148 0.012 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.31 0.057 0.012 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.41 0.045 0.012 0.000 0.000

PLANTA1:HABITACION1 0.61 0.75 84.71 0.152 0.012 0.000 0.000

PLANTA1:PASILLO 0.51 0.63 71.57 0.153 0.012 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.45 0.153 0.012 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.19 0.153 0.012 0.000 0.000

PLANTA1:HABITACION3 0.36 0.45 50.54 0.153 0.012 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 15.02 0.198 0.012 0.000 0.000

PLANTA2:ZONA5 0.36 0.45 38.88 0.199 0.012 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.199 0.012 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.40 0.198 0.012 0.000 0.000

PLANTA2:ZONA2 1.08 1.33 115.17 0.198 0.012 0.000 0.000

PLANTA3:ZONA1 0.98 1.20 103.99 0.196 0.012 0.000 0.000

Values shown for a single zone without multipliers

Report: Object Count Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Surfaces by Class

Total Outdoors

Wall 91 23

Floor 46 9

Roof 44 7

Internal Mass 0 0

Building Detached Shading 24 24

Fixed Detached Shading 0 0

Window 23 23

Door 36 4

Glass Door 0 0

Shading 0 0

Overhang 0 0

Fin 0 0

Tubular Daylighting Device Dome 0 0

Tubular Daylighting Device Diffuser 0 0

HVAC

Count

HVAC Air Loops 0

Conditioned Zones 16

Unconditioned Zones 0

Supply Plenums 0

Return Plenums 0

Input Fields

Count

IDF Objects 2253

Defaulted Fields 213

Fields with Defaults 4148

Autosized Fields 64

Autosizable Fields 64

Autocalculated Fields 98

Autocalculatable Fields 556

Page 185: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Sensible Heat Gain Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Annual Building Sensible Heat Gain Components

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[kWh]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Heating

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[kWh]

HVAC

Input

Heated

Surface

Heating

[kWh]

HVAC

Input

Cooled

Surface

Cooling

[kWh]

People

Sensible

Heat

Addition

[kWh]

Lights

Sensible

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Addition

[kWh]

Window

Heat

Addition

[kWh]

Interzone

Air

Transfer

Heat

Addition

[kWh]

Infiltration

Heat

Addition

[kWh]

Opaque

Surface

Conduction

and Other

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Removal

[kWh]

Window

Heat

Removal

[kWh]

Interzone

Air

Transfer

Heat

Removal

[kWh]

Infiltration

Heat

Removal

[kWh]

Opa

Sur

Conduc

and O

Rem

[k

PLANTA0:PASILLO 529.577 -145.72 0.000 0.000 0.000 0.000 57.921 184.404 61.256 0.000 0.000 17.679 0.001 0.000 0.000 0.000 -236.53 -46

PLANTA0:SALON 2838.130 -1707.08 0.000 0.000 0.000 0.000 701.363 2273.959 755.373 11854.578 0.000 182.205 0.235 0.000 -2288.68 0.000 -3023.50 -1158

PLANTA0:ENTRADA 1335.075 -285.64 0.000 0.000 0.000 0.000 203.733 637.314 211.706 344.876 0.000 62.493 0.010 0.000 -237.26 0.000 -789.52 -148

PLANTA0:COCINA 337.219 -217.37 0.000 0.000 0.000 0.000 28.089 375.643 556.180 962.888 0.000 36.693 0.033 0.000 -389.89 0.000 -445.82 -124

PLANTA0:ASEO 83.562 -16.15 0.000 0.000 0.000 0.000 3.321 29.619 4.713 144.562 0.000 6.386 0.002 0.000 -79.61 0.000 -71.33 -10

PLANTA1:HABITACION1 2627.260 -1032.31 0.000 0.000 0.000 0.000 340.434 1093.679 363.303 1350.916 0.000 86.870 0.186 0.000 -911.46 0.000 -1356.99 -256

PLANTA1:PASILLO 974.373 -1126.35 0.000 0.000 0.000 0.000 273.278 924.047 306.954 1683.483 0.000 70.989 0.166 0.000 -332.28 0.000 -1283.59 -149

PLANTA1:BANO 657.767 -570.63 0.000 0.000 0.000 0.000 106.417 354.400 117.726 1085.384 0.000 27.246 0.059 0.000 -330.28 0.000 -475.68 -97

PLANTA1:HABITACION2 759.518 -768.29 0.000 0.000 0.000 0.000 146.605 493.078 163.793 1077.470 0.000 37.659 0.142 0.000 -333.83 0.000 -672.66 -90

PLANTA1:HABITACION3 1125.756 -1080.23 0.000 0.000 0.000 0.000 192.832 652.613 216.788 3387.244 0.000 48.327 0.076 0.000 -759.95 0.000 -902.60 -288

PLANTA2:ZONA3 934.723 -530.83 0.000 0.000 0.000 0.000 77.502 253.519 84.215 1079.374 0.000 14.426 0.004 0.000 -313.86 0.000 -245.42 -135

PLANTA2:ZONA5 1816.836 -931.47 0.000 0.000 0.000 0.000 200.480 656.423 218.054 2135.887 0.000 37.477 0.006 0.000 -426.47 0.000 -640.71 -306

PLANTA2:ZONA1 738.772 -341.71 0.000 0.000 0.000 0.000 83.748 274.371 91.142 0.000 0.000 16.891 0.000 0.000 0.000 0.000 -268.83 -59

PLANTA2:ZONA4 1618.630 -750.72 0.000 0.000 0.000 0.000 136.778 445.728 148.064 2331.134 0.000 25.120 0.000 0.000 -478.01 0.000 -427.32 -304

PLANTA2:ZONA2 3432.563 -1934.19 0.000 0.000 0.000 0.000 595.706 1944.538 645.945 2204.434 0.000 110.725 0.000 0.000 -1055.57 0.000 -1889.17 -405

PLANTA3:ZONA1 5675.842 -2328.30 0.000 0.000 0.000 0.000 548.114 1755.827 583.258 3469.810 0.000 97.953 0.003 0.000 -1686.72 0.000 -1591.08 -652

Total Facility

25485.603 -

13767.01

0.000

0.000

0.000

0.000

3696.321

12349.164

4528.469

33112.042

0.000

879.141

0.923

0.000

-9623.87

0.000

-14320.73

-4233

Peak Cooling Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 19-JUL-15:38 0.00 -412.43 0.00 0.00 0.00 0.00 8.63 31.50 16.63 0.00 0.00 38.97 316.69 0.00 -0.00 0.00

PLANTA0:SALON 10-SEP-15:02 0.00 -4393.68 0.00 0.00 0.00 0.00 46.32 388.49 205.13 5893.25 0.00 0.00 0.00 0.00 -0.00 0.00

PLANTA0:ENTRADA 20-JUL-00:02 0.00 -860.84 0.00 0.00 0.00 0.00 24.82 108.88 3.10 0.00 0.00 16.74 709.99 0.00 -2.69 0.00

PLANTA0:COCINA 20-AUG-16:03 0.00 -717.93 0.00 0.00 0.00 0.00 0.00 0.00 19.60 692.78 0.00 83.14 0.00 0.00 -0.00 0.00

PLANTA0:ASEO 17-JUL-16:45 0.00 -140.10 0.00 0.00 0.00 0.00 0.00 0.00 0.15 65.22 0.00 14.27 60.46 0.00 -0.00 0.00

PLANTA1:HABITACION1 18-JUL-06:02 0.00 -2320.35 0.00 0.00 0.00 0.00 30.12 140.14 98.66 0.00 0.00 0.00 2364.04 0.00 -149.13 0.00 -1

PLANTA1:PASILLO 19-JUL-15:38 0.00 -2605.16 0.00 0.00 0.00 0.00 43.23 157.87 83.35 415.80 0.00 185.36 1719.55 0.00 -0.00 0.00

PLANTA1:BANO 19-JUL-15:38 0.00 -1353.90 0.00 0.00 0.00 0.00 16.58 60.55 31.97 986.37 0.00 71.32 187.11 0.00 -0.00 0.00

PLANTA1:HABITACION2 19-JUL-15:38 0.00 -1710.23 0.00 0.00 0.00 0.00 23.07 84.24 44.48 980.88 0.00 99.50 478.07 0.00 -0.00 0.00

PLANTA1:HABITACION3 20-AUG-15:34 0.00 -2728.71 0.00 0.00 0.00 0.00 30.53 111.50 58.87 1253.97 0.00 160.13 1113.71 0.00 -0.00 0.00

PLANTA2:ZONA3 17-JUL-15:36 0.00 -1281.18 0.00 0.00 0.00 0.00 11.86 43.31 22.87 963.03 0.00 39.57 200.54 0.00 -0.00 0.00

PLANTA2:ZONA5 17-JUL-15:48 0.00 -2219.74 0.00 0.00 0.00 0.00 30.71 112.15 59.21 513.55 0.00 105.74 1398.37 0.00 -0.00 0.00

PLANTA2:ZONA1 17-JUL-15:48 0.00 -822.79 0.00 0.00 0.00 0.00 12.84 46.88 24.75 0.00 0.00 44.73 693.60 0.00 -0.00 0.00

PLANTA2:ZONA4 20-AUG-15:41 0.00 -1808.61 0.00 0.00 0.00 0.00 20.85 76.15 40.21 849.34 0.00 86.05 736.01 0.00 -0.00 0.00

PLANTA2:ZONA2 17-JUL-16:03 0.00 -4187.38 0.00 0.00 0.00 0.00 0.00 0.00 175.41 1628.22 0.00 323.65 2060.10 0.00 -0.00 0.00

PLANTA3:ZONA1 17-JUL-15:36 0.00 -5380.74 0.00 0.00 0.00 0.00 82.15 299.97 158.39 1474.01 0.00 269.24 3096.98 0.00 -0.00 0.00

Total Facility

17-JUL-15:36

0.00 -

31205.78

0.00

0.00

0.00

0.00

558.84

2040.56

1097.17

13226.93

0.00

2227.24

12055.05

0.00

0.00

0.00

Peak Heating Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 08-JAN-17:30 610.84 0.00 0.00 0.00 0.00 0.00 0.00 0.00 16.63 0.00 0.00 0.00 0.00 0.00 -0.00 0.00 -

PLANTA0:SALON 18-JAN-07:15 4729.60 0.00 0.00 0.00 0.00 0.00 120.67 291.37 205.13 0.00 0.00 0.00 0.00 0.00 -744.77 0.00 -10

PLANTA0:ENTRADA 08-JAN-17:02 1444.09 0.00 0.00 0.00 0.00 0.00 0.00 0.00 57.49 0.00 0.00 0.00 0.00 0.00 -101.08 0.00 -1

PLANTA0:COCINA 08-JAN-05:06 1008.07 0.00 0.00 0.00 0.00 0.00 0.00 0.00 19.60 0.00 0.00 0.00 0.00 0.00 -113.30 0.00 -1

PLANTA0:ASEO 18-JAN-05:45 165.14 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.15 0.00 0.00 0.00 0.00 0.00 -39.09 0.00 -

PLANTA1:HABITACION1 08-JAN-17:02 3146.57 0.00 0.00 0.00 0.00 0.00 0.00 0.00 98.66 0.00 0.00 0.00 0.00 0.00 -350.51 0.00 -3

PLANTA1:PASILLO 18-DEC-17:30 1656.37 0.00 0.00 0.00 0.00 0.00 0.00 0.00 83.35 0.00 0.00 0.00 0.00 0.00 -71.16 0.00 -2

PLANTA1:BANO 08-JAN-17:30 965.57 0.00 0.00 0.00 0.00 0.00 0.00 0.00 31.97 0.00 0.00 0.00 0.00 0.00 -115.14 0.00 -1

PLANTA1:HABITACION2 08-JAN-17:11 1272.44 0.00 0.00 0.00 0.00 0.00 0.00 0.00 44.48 0.00 0.00 0.00 0.00 0.00 -114.84 0.00 -1

PLANTA1:HABITACION3 08-JAN-17:02 2206.70 0.00 0.00 0.00 0.00 0.00 0.00 0.00 58.87 0.00 0.00 0.00 0.00 0.00 -275.50 0.00 -1

PLANTA2:ZONA3 18-JAN-07:35 1270.80 0.00 0.00 0.00 0.00 0.00 10.01 32.48 22.87 0.00 0.00 0.00 0.00 0.00 -139.61 0.00 -

PLANTA2:ZONA5 18-JAN-07:35 2531.65 0.00 0.00 0.00 0.00 0.00 25.91 84.11 59.21 0.00 0.00 0.00 0.00 0.00 -192.95 0.00 -2

PLANTA2:ZONA1 08-JAN-17:02 936.49 0.00 0.00 0.00 0.00 0.00 0.00 0.00 24.75 0.00 0.00 0.00 0.00 0.00 -0.00 0.00 -

PLANTA2:ZONA4 18-JAN-07:35 2307.51 0.00 0.00 0.00 0.00 0.00 17.60 57.11 40.21 0.00 0.00 0.00 0.00 0.00 -219.60 0.00 -1

PLANTA2:ZONA2 08-JAN-17:02 4524.59 0.00 0.00 0.00 0.00 0.00 0.00 0.00 175.41 0.00 0.00 0.00 0.00 0.00 -385.69 0.00 -4

PLANTA3:ZONA1 18-JAN-07:35 7337.11 0.00 0.00 0.00 0.00 0.00 69.32 224.98 158.39 0.00 0.00 0.00 0.00 0.00 -774.95 0.00 -5

Total Facility 18-JAN-07:35 34690.33 0.00 0.00 0.00 0.00 0.00 497.64 1689.03 1376.78 0.00 0.00 0.00 0.00 0.00 -4412.49 0.00 -44

Page 186: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Component Sizing Summary

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

ZoneHVAC:IdealLoadsAirSystem

User-Specified values were used. Design Size values were used if no User-Specified values were provided.

Report: Adaptive Comfort Summary

For: Entire Facility

Timestamp: 2018-12-13 18:49:14

Time Not Meeting the Adaptive Comfort Models during Occupied Hours

Table of Contents

Table of Contents

ASHRAE55 90% Acceptability Limits

[Hours]

ASHRAE55 80% Acceptability Limits

[Hours]

CEN15251 Category I Acceptability Limits

[Hours]

CEN15251 Category II Acceptability Limits

[Hours]

CEN15251 Category III Acceptability Limits

[Hours]

Design Size Maximum Heating Air Flow Rate

[m3/s]

Design Size Maximum Sensible Heating

Capacity [W]

Design Size Maximum Cooling Air Flow Rate

[m3/s]

Design Size Maximum Total Cooling

Capacity [W]

PLANTA0:PASILLO IDEAL LOADS AIR 0.037910 610.86 0.031061 451.60

PLANTA0:SALON IDEAL LOADS AIR 0.311165 5173.52 0.303270 4718.18

PLANTA0:ENTRADA IDEAL LOADS AIR 0.088114 1463.28 0.055142 910.97

PLANTA0:COCINA IDEAL LOADS AIR 0.052330 1105.39 0.049613 787.50

PLANTA0:ASEO IDEAL LOADS AIR 0.007859 164.14 0.009205 144.41

PLANTA1:HABITACION1 IDEAL LOADS

AIR

0.198346

3223.66

0.162298

2517.59

PLANTA1:PASILLO IDEAL LOADS AIR 0.097004 1656.76 0.191498 2745.79

PLANTA1:BANO IDEAL LOADS AIR 0.059061 965.68 0.099213 1420.61

PLANTA1:HABITACION2 IDEAL LOADS

AIR

0.077996

1280.53

0.126636

1804.59

PLANTA1:HABITACION3 IDEAL LOADS

AIR

0.139581

2244.14

0.206991

2916.02

PLANTA2:ZONA3 IDEAL LOADS AIR 0.084364 1326.99 0.102547 1448.15

PLANTA2:ZONA5 IDEAL LOADS AIR 0.168106 2675.73 0.164477 2336.06

PLANTA2:ZONA1 IDEAL LOADS AIR 0.059887 961.53 0.061200 879.89

PLANTA2:ZONA4 IDEAL LOADS AIR 0.158175 2482.01 0.136191 1921.79

PLANTA2:ZONA2 IDEAL LOADS AIR 0.278500 4610.90 0.306902 4509.11

PLANTA3:ZONA1 IDEAL LOADS AIR 0.507609 8034.19 0.410928 5914.31

Page 187: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ANEXO 4. RESULTADOS NUMÉRICOS SIMULACIÓN MEJORAS. SEMANA

EXTREMA DE INVIERNO.

Page 188: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Program Version:EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.16 17:14

Tabular Output Report in Format: HTML

Building: Building

Environment: SITIO (20-01:26-01) ** MADRID - ESP IWEC Data WMO#=082210

Simulation Timestamp: 2018-12-16 17:15:03

Report: Annual Building Utility Performance Summary

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Values gathered over 168.00 hours

WARNING: THE REPORT DOES NOT REPRESENT A FULL ANNUAL SIMULATION.

Site and Source Energy

Total Energy [kWh] Energy Per Total Building Area [kWh/m2] Energy Per Conditioned Building Area [kWh/m2]

Total Site Energy 870.28 3.08 3.08

Net Site Energy 870.28 3.08 3.08

Total Source Energy 2996.90 10.61 10.61

Net Source Energy 2996.90 10.61 10.61

Site to Source Energy Conversion Factors

Site=>Source Conversion Factor

Electricity 3.167

Natural Gas 1.084

District Cooling 1.056

District Heating 3.613

Steam 0.250

Gasoline 1.050

Diesel 1.050

Coal 1.050

Fuel Oil #1 1.050

Fuel Oil #2 1.050

Propane 1.050

Other Fuel 1 1.000

Other Fuel 2 1.000

Building Area

Area [m2]

Total Building Area 282.47

Net Conditioned Building Area 282.47

Unconditioned Building Area 0.00

End Uses

Note: District heat appears to be the principal heating source based on energy usage.

End Uses By Subcategory

Table of Contents

Table of Contents

Subcategory Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating General 0.00 0.00 0.00 0.00 471.26 0.00

Cooling General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 3.53 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 43.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 12.20 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 7.16 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.57 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 20.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 17.71 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 6.78 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 9.43 0.00 0.00 0.00 0.00 0.00

Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating 0.00 0.00 0.00 0.00 471.26 0.00

Cooling 0.00 0.00 0.00 0.00 0.00 0.00

Interior Lighting 236.03 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 94.88 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 68.10 1.22

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 330.91 0.00 0.00 0.00 539.36 1.22

Page 189: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 12.45 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 4.84 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 12.56 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 5.26 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 8.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 37.18 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 33.51 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 1.30 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 16.04 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 4.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 10.60 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.09 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 7.70 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 6.53 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 2.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 3.48 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 4.59 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 1.79 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 4.63 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 1.94 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 3.13 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 13.71 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 12.36 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 0.98 0.02

DHW Planta0:Salon 0.00 0.00 0.00 0.00 12.09 0.22

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 3.39 0.06

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 3.99 0.07

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 0.63 0.01

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 5.81 0.10

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 4.92 0.09

DHW Planta1:Bano 0.00 0.00 0.00 0.00 1.88 0.03

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 2.62 0.05

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 3.46 0.06

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 1.35 0.02

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 3.49 0.06

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 1.46 0.03

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 2.36 0.04

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 10.34 0.19

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 9.32 0.17

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Normalized Metrics

Utility Use Per Conditioned Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 0.84 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 0.00 1.91 0.00

Other 0.34 0.00 0.00 0.00 0.00 0.00

Total 1.17 0.00 0.00 0.00 1.91 0.00

Utility Use Per Total Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 0.84 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 0.00 1.91 0.00

Other 0.34 0.00 0.00 0.00 0.00 0.00

Total 1.17 0.00 0.00 0.00 1.91 0.00

Electric Loads Satisfied

Electricity [kWh] Percent Electricity [%]

Fuel-Fired Power Generation 0.000 0.00

High Temperature Geothermal* 0.000 0.00

Photovoltaic Power 0.000 0.00

Wind Power 0.000 0.00

Power Conversion 0.000 0.00

Net Decrease in On-Site Storage 0.000 0.00

Total On-Site Electric Sources 0.000 0.00

Electricity Coming From Utility 330.912 100.00

Surplus Electricity Going To Utility 0.000 0.00

Net Electricity From Utility 330.912 100.00

Page 190: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Total On-Site and Utility Electric Sources 330.912 100.00

Total Electricity End Uses 330.912 100.00

On-Site Thermal Sources

Heat [kWh] Percent Heat [%]

Water-Side Heat Recovery 0.00

Air to Air Heat Recovery for Cooling 0.00

Air to Air Heat Recovery for Heating 0.00

High-Temperature Geothermal* 0.00

Solar Water Thermal 0.00

Solar Air Thermal 0.00

Total On-Site Thermal Sources 0.00

Water Source Summary

Water [m3] Percent Water [%]

Rainwater Collection 0.00 0.00

Condensate Collection 0.00 0.00

Groundwater Well 0.00 0.00

Total On Site Water Sources 0.00 0.00

- - -

Initial Storage 0.00 0.00

Final Storage 0.00 0.00

Change in Storage 0.00 0.00

- - -

Water Supplied by Utility 1.22 100.00

- - -

Total On Site, Change in Storage, and Utility Water Sources 1.22 100.00

Total Water End Uses 1.22 100.00

Setpoint Not Met Criteria

Degrees [deltaC]

Tolerance for Zone Heating Setpoint Not Met Time 1.11

Tolerance for Zone Cooling Setpoint Not Met Time 1.11

Comfort and Setpoint Not Met Summary

Facility [Hours]

Time Setpoint Not Met During Occupied Heating 1.50

Time Setpoint Not Met During Occupied Cooling 0.00

Time Not Comfortable Based on Simple ASHRAE 55-2004 148.00

Note 1: An asterisk (*) indicates that the feature is not yet implemented.

Table of Contents

Top

Annual Building Utility Performance Summary

Input Verification and Results Summary

Demand End Use Components Summary

Component Sizing Summary

Adaptive Comfort Summary

Climatic Data Summary

Envelope Summary

Lighting Summary

Equipment Summary

HVAC Sizing Summary

System Summary

Outdoor Air Summary

Object Count Summary

Sensible Heat Gain Summary

Report: Input Verification and Results Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

General

Value

Program Version and Build EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.16 17:14

RunPeriod SITIO (20-01:26-01)

Weather File MADRID - ESP IWEC Data WMO#=082210

Latitude [deg] 40.45

Longitude [deg] -3.5

Elevation [m] 582.00

Time Zone 1.00

North Axis Angle [deg] 0.00

Rotation for Appendix G [deg] 0.00

Hours Simulated [hrs] 168.00

ENVELOPE

Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.75 29.22 0.00 33.03 11.49

Page 191: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Gross Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Above Ground Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Conditioned Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.75 29.22 0.00 33.03 11.49

Gross Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Above Ground Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Skylight-Roof Ratio

Total

Gross Roof Area [m2] 94.67

Skylight Area [m2] 0.00

Skylight-Roof Ratio [%] 0.00

PERFORMANCE

Zone Summary

Area

[m2]

Conditioned

(Y/N)

Part of Total

Floor Area (Y/N)

Volume

[m3]

Multipliers Above Ground Gross

Wall Area [m2]

Underground Gross

Wall Area [m2]

Window Glass

Area [m2]

Opening

Area [m2]

Lighting

[W/m2]

People [m2

per person]

Plug and

Process [W/m2]

PLANTA0:PASILLO 4.19 Yes Yes 14.66 1.00 5.28 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA0:SALON 51.66 Yes Yes 180.80 1.00 53.00 0.00 17.63 18.74 7.5000 33.33 4.4000

PLANTA0:ENTRADA 14.49 Yes Yes 50.71 1.00 10.48 0.00 1.54 1.83 7.5000 33.33 4.4000

PLANTA0:COCINA 9.74 Yes Yes 34.09 1.00 24.65 0.00 2.92 3.59 15.0000 42.19 30.2800

PLANTA0:ASEO 1.54 Yes Yes 5.39 1.00 2.98 0.00 0.58 0.71 7.5000 53.37 1.6700

PLANTA1:HABITACION1 24.81 Yes Yes 84.34 1.00 40.67 0.00 6.26 6.97 7.5000 33.33 4.4000

PLANTA1:PASILLO 21.04 Yes Yes 71.52 1.00 5.67 0.00 2.25 2.55 7.5000 33.33 4.4000

PLANTA1:BANO 8.05 Yes Yes 27.37 1.00 8.75 0.00 1.97 2.21 7.5000 33.33 4.4000

PLANTA1:HABITACION2 11.20 Yes Yes 38.08 1.00 11.90 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA1:HABITACION3 14.79 Yes Yes 50.29 1.00 29.40 0.00 4.60 5.05 7.5000 33.33 4.4000

PLANTA2:ZONA3 5.75 Yes Yes 14.95 1.00 7.29 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA2:ZONA5 14.92 Yes Yes 38.80 1.00 8.15 0.00 2.83 3.25 7.5000 33.33 4.4000

PLANTA2:ZONA1 6.25 Yes Yes 16.25 1.00 0.00 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA2:ZONA4 10.09 Yes Yes 26.22 1.00 20.79 0.00 3.11 3.44 7.5000 33.33 4.4000

PLANTA2:ZONA2 44.16 Yes Yes 114.82 1.00 38.12 0.00 6.75 7.41 7.5000 33.33 4.4000

PLANTA3:ZONA1 39.81 Yes Yes 103.50 1.00 54.65 0.00 12.66 13.61 7.5000 33.33 4.4000

Total 282.47

871.78

321.79 0.00 67.00 73.75 7.7586 33.65 5.2774

Conditioned Total 282.47

871.78

321.79 0.00 67.00 73.75 7.7586 33.65 5.2774

Unconditioned Total 0.00

0.00

0.00 0.00 0.00 0.00

Not Part of Total 0.00

0.00

0.00 0.00 0.00 0.00

Report: Demand End Use Components Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

End Uses

Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Time of Peak 21-JAN-15:30 - - - 23-JAN-07:30 21-JAN-09:00

Heating 0.00 0.00 0.00 0.00 14728.06 0.00

Cooling 0.00 0.00 0.00 0.00 0.00 0.00

Interior Lighting 2033.94 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 1212.88 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 526.35 0.00

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 3246.82 0.00 0.00 0.00 15254.41 0.00

End Uses By Subcategory

Subcategory Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Heating General 0.00 0.00 0.00 0.00 14728.06 0.00

Cooling General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 31.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 387.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 108.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

Page 192: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 186.04 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 157.76 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 60.38 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 84.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 110.93 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 43.13 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 111.93 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 46.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 75.64 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 331.21 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 298.56 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 18.43 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 227.29 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 63.75 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 19.48 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 109.14 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 92.55 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 35.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 49.28 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 65.08 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 25.30 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 65.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 27.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 44.37 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 194.31 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 175.16 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 5.45 0.00

DHW Planta0:Salon 0.00 0.00 0.00 0.00 67.18 0.00

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 18.84 0.00

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 149.98 0.00

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 23.70 0.00

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 32.26 0.00

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 27.35 0.00

DHW Planta1:Bano 0.00 0.00 0.00 0.00 10.47 0.00

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 14.56 0.00

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 19.23 0.00

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 7.48 0.00

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 19.41 0.00

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 8.13 0.00

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 13.11 0.00

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 57.43 0.00

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 51.77 0.00

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Report: Climatic Data Summary

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

SizingPeriod:DesignDay

Weather Statistics File

Value

None

Report: Envelope Summary

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Opaque Exterior

Table of Contents

Table of Contents

U-Factor with Film [W/m2- U-Factor no Film [W/m2- Gross Area Net Area Azimuth Tilt Cardinal

Maximum Dry Bulb [C] Daily Temperature Range [deltaC] Humidity Value Humidity Type Wind Speed [m/s] Wind Direction

SUMMER DESIGN DAY IN SITIO (20-01:26-01) JUL 38.20 17.50 20.30 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (20-01:26-01) AGO 38.00 17.40 19.90 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (20-01:26-01) SEP 34.90 16.80 19.30 Wetbulb [C] 0.00 0.00

WINTER DESIGN DAY IN SITIO (20-01:26-01) -4.00 0.00 -4.00 Wetbulb [C] 11.60 0.00

Page 193: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Construction Reflectance K] K] [m2] [m2] [deg] [deg] Direction

PLANTA0:PASILLO_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 5.28 3.51 270.00 90.00 W

PLANTA0:PASILLO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

5.43

5.43

0.00

180.00

PLANTA0:SALON_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 29.83 28.46 270.00 90.00 W

PLANTA0:SALON_WALL_7_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 23.17 5.80 180.00 90.00 S

PLANTA0:SALON_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

30.68

30.68

0.00

180.00

PLANTA0:SALON_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

26.95

26.95

0.00

180.00

PLANTA0:ENTRADA_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 10.48 6.71 0.00 90.00 N

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

0.03

0.03

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_1

SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

0.64

0.64

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_2 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

16.10

16.10

0.00

180.00

PLANTA0:COCINA_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 9.71 7.44 0.00 90.00 N

PLANTA0:COCINA_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 14.94 13.62 270.00 90.00 W

PLANTA0:COCINA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

7.68

7.68

0.00

180.00

PLANTA0:COCINA_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

4.80

4.80

0.00

180.00

PLANTA0:ASEO_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 2.98 2.26 0.00 90.00 N

PLANTA0:ASEO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

2.35

2.35

0.00

180.00

PLANTA1:HABITACION1_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 23.17 16.20 0.00 90.00 N

PLANTA1:HABITACION1_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.50 17.50 270.00 90.00 W

PLANTA1:PASILLO_WALL_10_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 5.67 3.12 180.00 90.00 S

PLANTA1:BANO_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 8.75 6.54 270.00 90.00 W

PLANTA1:HABITACION2_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 11.90 9.71 270.00 90.00 W

PLANTA1:HABITACION3_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 11.90 11.90 270.00 90.00 W

PLANTA1:HABITACION3_WALL_7_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.50 12.45 180.00 90.00 S

PLANTA2:ZONA3_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 7.29 5.10 270.00 90.00 W

PLANTA2:ZONA3_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 7.29 7.29 180.00 0.00

PLANTA2:ZONA5_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 8.15 4.91 180.00 90.00 S

PLANTA2:ZONA5_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 11.07 11.07 180.00 0.00

PLANTA2:ZONA5_ROOF_1_0_1 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 6.45 6.45 180.00 0.00

PLANTA2:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 7.29 7.29 180.00 0.00

PLANTA2:ZONA4_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 11.07 11.07 270.00 90.00 W

PLANTA2:ZONA4_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 9.72 6.28 180.00 90.00 S

PLANTA2:ZONA4_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 12.91 12.91 180.00 0.00

PLANTA2:ZONA2_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.87 10.72 0.00 90.00 N

PLANTA2:ZONA2_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 20.25 18.04 270.00 90.00 W

PLANTA2:ZONA2_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 3.31 3.31 180.00 0.00

PLANTA3:ZONA1_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.87 5.63 0.00 90.00 N

PLANTA3:ZONA1_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 18.90 18.90 270.00 90.00 W

PLANTA3:ZONA1_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.87 14.54 180.00 90.00 S

PLANTA3:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 46.34 46.34 180.00 0.00

Exterior Fenestration

Construction

Glass

Area

[m2]

Frame

Area

[m2]

Divider

Area

[m2]

Area of

One

Opening

[m2]

Area of

Multiplied

Openings

[m2]

Glass

U-

Factor

[W/m2-

K]

Glass

SHGC

Glass Visible

Transmittance

Frame

Conductance

[W/m2-K]

Divider

Conductance

[W/m2-K]

Shade

Control

Parent Surface

Azimut

[de

PLANTA0:SALON_WALL_6_0_0_0_0_0_WIN 1001 1.19 0.18 0.00 1.37 1.37 2.617 0.691 0.771 9.500 0.000 No PLANTA0:SALON_WALL_6_0_0 270.

PLANTA0:SALON_WALL_7_0_0_0_0_0_WIN 1001 13.59 0.62 0.45 14.66 14.66 2.617 0.691 0.771 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:SALON_WALL_7_0_0_1_0_1_WIN 1001 2.36 0.32 0.03 2.70 2.70 2.617 0.691 0.771 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:ENTRADA_WALL_3_0_0_1_0_1_WIN 1001 0.70 0.14 0.00 0.84 0.84 2.617 0.691 0.771 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:ENTRADA_WALL_3_0_0_2_0_2_WIN 1001 0.84 0.15 0.00 0.99 0.99 2.617 0.691 0.771 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:COCINA_WALL_5_0_0_0_0_0_WIN 1001 2.00 0.25 0.02 2.27 2.27 2.617 0.691 0.771 9.500 9.500 No PLANTA0:COCINA_WALL_5_0_0 0.

PLANTA0:COCINA_WALL_6_0_0_0_0_0_WIN 1001 0.22 0.11 0.00 0.33 1.32 2.617 0.691 0.771 9.500 0.000 No PLANTA0:COCINA_WALL_6_0_0 270.

PLANTA0:ASEO_WALL_3_0_0_0_0_0_WIN 1001 0.58 0.13 0.00 0.71 0.71 2.617 0.691 0.771 9.500 0.000 No PLANTA0:ASEO_WALL_3_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_0_0_0_WIN 1001 2.22 0.30 0.05 2.57 2.57 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_1_0_1_WIN 1001 3.94 0.40 0.06 4.40 4.40 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:PASILLO_WALL_10_0_0_0_0_0_WIN 1001 2.22 0.30 0.03 2.55 2.55 2.617 0.691 0.771 9.500 9.500 No PLANTA1:PASILLO_WALL_10_0_0 180.

PLANTA1:BANO_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 2.617 0.691 0.771 9.500 9.500 No PLANTA1:BANO_WALL_4_0_0 270.

PLANTA1:HABITACION2_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION2_WALL_4_0_0 270.

PLANTA1:HABITACION3_WALL_7_0_0_0_0_0_WIN 1001 4.54 0.45 0.06 5.05 5.05 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION3_WALL_7_0_0 180.

PLANTA2:ZONA3_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA3_WALL_4_0_0 270.

PLANTA2:ZONA5_WALL_6_0_0_0_0_0_WIN 1001 1.62 0.24 0.02 1.87 1.87 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA5_WALL_6_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.38 1.38 2.617 0.691 0.771 9.500 0.000 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA4_WALL_5_0_0_0_0_0_WIN 1001 3.07 0.33 0.04 3.44 3.44 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA4_WALL_5_0_0 180.

PLANTA2:ZONA2_WALL_3_0_0_1_0_1_WIN 1001 4.71 0.42 0.07 5.20 5.20 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA2_WALL_3_0_0 0.

PLANTA2:ZONA2_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA2_WALL_4_0_0 270.

PLANTA3:ZONA1_WALL_3_0_0_0_0_0_WIN 1001 1.74 0.25 0.05 2.04 2.04 2.617 0.691 0.771 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_3_0_0_1_0_1_WIN 1001 9.38 0.52 0.30 10.20 10.20 2.617 0.691 0.771 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_5_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.38 1.38 2.617 0.691 0.771 9.500 0.000 No PLANTA3:ZONA1_WALL_5_0_0 180.

Total or Average

73.75 2.617 0.691 0.771

North Total or Average

29.22 2.617 0.691 0.771

Non-North Total or Average

44.53 2.617 0.691 0.771

Interior Fenestration

Page 194: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Construction Area of One Opening [m2] Area of Openings [m2] Glass U-Factor [W/m2-K] Glass SHGC Glass Visible Transmittance Parent Surface

Total or Average

0.00 - - -

Exterior Door

Construction U-Factor with Film [W/m2-K] U-Factor no Film [W/m2-K] Gross Area [m2] Parent Surface

PLANTA0:PASILLO_WALL_6_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.77 PLANTA0:PASILLO_WALL_6_0_0

PLANTA0:ENTRADA_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.94 PLANTA0:ENTRADA_WALL_3_0_0

PLANTA2:ZONA2_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.96 PLANTA2:ZONA2_WALL_3_0_0

PLANTA3:ZONA1_WALL_5_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.95 PLANTA3:ZONA1_WALL_5_0_0

Report: Lighting Summary

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Interior Lighting

Daylighting

Zone Daylighting Type Control Type Fraction Controlled Lighting Installed in Zone [W] Lighting Controlled [W]

None

Exterior Lighting

Report: Equipment Summary

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Central Plant

Type Nominal Capacity [W] Nominal Efficiency [W/W] IPLV in SI Units [W/W] IPLV in IP Units [Btu/W-h]

None

Cooling Coils

DX Cooling Coils

DX Cooling Coil ASHRAE 127 Standard Ratings Report

Table of Contents

Table of Contents

DX Cooling

Coil Type

Rated Net Cooling

Capacity Test A [W]

Rated Electric Power

Test A [W]

Rated Net Cooling

Capacity Test B [W]

Rated Electric Power

Test B [W]

Rated Net Cooling

Capacity Test C [W]

Rated Electric Power

Test C [W]

Rated Net Cooling

Capacity Test D [W]

Rated Electric Power

Test D [W]

Zone

Lighting

Power

Density

[W/m2]

Zone

Area

[m2]

Total

Power

[W]

End Use Subcategory

Schedule Name

Scheduled

Hours/Week

[hr]

Hours/Week

> 1% [hr]

Full Load

Hours/Week

[hr]

Return

Air

Fraction

Conditioned

(Y/N)

Consump

[k

PLANTA0:PASILLO

GENERAL LIGHTING

PLANTA0:PASILLO

7.5000

4.19

31.41 ELECTRIC

EQUIPMENT#Planta0:Pasillo#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA0:SALON

GENERAL LIGHTING

PLANTA0:SALON

7.5000

51.66

387.42 ELECTRIC

EQUIPMENT#Planta0:Salon#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

4

PLANTA0:ENTRADA

GENERAL LIGHTING

PLANTA0:ENTRADA

7.5000

14.49

108.67 ELECTRIC

EQUIPMENT#Planta0:Entrada#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA0:COCINA

GENERAL LIGHTING

PLANTA0:COCINA

15.0000

9.74

146.08 ELECTRIC

EQUIPMENT#Planta0:Cocina#GeneralLights

DWELL_DOMKITCHEN_LIGHT

49.00

49.00

49.00

0.0000

Y

PLANTA0:ASEO

GENERAL LIGHTING

PLANTA0:ASEO

7.5000

1.54

11.54 ELECTRIC

EQUIPMENT#Planta0:Aseo#GeneralLights

DWELL_DOMBATH_LIGHT

49.00

49.00

49.00

0.0000

Y

PLANTA1:HABITACION1

GENERAL LIGHTING

PLANTA1:HABITACION1

7.5000

24.81

186.04 ELECTRIC

EQUIPMENT#Planta1:Habitacion1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

2

PLANTA1:PASILLO

GENERAL LIGHTING

PLANTA1:PASILLO

7.5000

21.04

157.76 ELECTRIC

EQUIPMENT#Planta1:Pasillo#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA1:BANO

GENERAL LIGHTING

PLANTA1:BANO

7.5000

8.05

60.38

ELECTRIC

EQUIPMENT#Planta1:Bano#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA1:HABITACION2

GENERAL LIGHTING

PLANTA1:HABITACION2

7.5000

11.20

84.00 ELECTRIC

EQUIPMENT#Planta1:Habitacion2#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA1:HABITACION3

GENERAL LIGHTING

PLANTA1:HABITACION3

7.5000

14.79

110.93 ELECTRIC

EQUIPMENT#Planta1:Habitacion3#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA2:ZONA3

GENERAL LIGHTING

PLANTA2:ZONA3

7.5000

5.75

43.13 ELECTRIC

EQUIPMENT#Planta2:Zona3#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA5

GENERAL LIGHTING

PLANTA2:ZONA5

7.5000

14.92

111.93 ELECTRIC

EQUIPMENT#Planta2:Zona5#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA2:ZONA1

GENERAL LIGHTING

PLANTA2:ZONA1

7.5000

6.25

46.88 ELECTRIC

EQUIPMENT#Planta2:Zona1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA4

GENERAL LIGHTING

PLANTA2:ZONA4

7.5000

10.09

75.64 ELECTRIC

EQUIPMENT#Planta2:Zona4#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA2

GENERAL LIGHTING

PLANTA2:ZONA2

7.5000

44.16

331.21 ELECTRIC

EQUIPMENT#Planta2:Zona2#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

3

PLANTA3:ZONA1

GENERAL LIGHTING

PLANTA3:ZONA1

7.5000

39.81

298.56 ELECTRIC

EQUIPMENT#Planta3:Zona1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

3

Interior Lighting Total

7.7586 282.47 2191.57

23

Total Watts Astronomical Clock/Schedule Schedule Name Scheduled Hours/Week [hr] Hours/Week > 1% [hr] Full Load Hours/Week [hr] Consumption [kWh]

Exterior Lighting Total 0.00

0.00

Type Design Coil Load

[W]

Nominal Total Capacity

[W]

Nominal Sensible Capacity

[W]

Nominal Latent Capacity

[W]

Nominal Sensible Heat

Ratio

Nominal Efficiency

[W/W]

Nominal Coil UA Value

[W/C]

Nominal Coil Surface Area

[m2]

None

DX Cooling Coil Type Standard Rated Net Cooling Capacity [W] Standard Rated Net COP [W/W] EER [Btu/W-h] SEER [Btu/W-h] IEER [Btu/W-h]

None

Page 195: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

DX Heating Coils

DX Heating Coil Type High Temperature Heating (net) Rating Capacity [W] Low Temperature Heating (net) Rating Capacity [W] HSPF [Btu/W-h] Region Number

None

Heating Coils

Type Design Coil Load [W] Nominal Total Capacity [W] Nominal Efficiency [W/W]

None

Fans

Type Total Efficiency [W/W] Delta Pressure [pa] Max Air Flow Rate [m3/s] Rated Electric Power [W] Rated Power Per Max Air Flow Rate [W-s/m3] Motor Heat In Air Fraction End Use

None

Pumps

Type Control Head [pa] Water Flow [m3/s] Electric Power [W] Power Per Water Flow Rate [W-s/m3] Motor Efficiency [W/W]

None

Service Water Heating

Type Storage Volume [m3] Input [W] Thermal Efficiency [W/W] Recovery Efficiency [W/W] Energy Factor

None

Report: HVAC Sizing Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Zone Sensible Cooling

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

551.67

634.42

151.50

0.040

0.046

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

AGO

8/15 16:30:00

24.00

24.00

0.00774

36.26

0.00819

0.001

0.00

PLANTA0:SALON

5652.58

6500.46

125.84

0.367

0.422

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

SEP

9/15 16:00:00

24.00

24.00

0.00803

33.89

0.00864

0.015

0.00

PLANTA0:ENTRADA

1027.52

1181.65

81.55

0.070

0.081

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 16:00:00

24.00

24.00

0.00809

37.15

0.00867

0.004

0.00

PLANTA0:COCINA

745.89

857.77

88.08

0.050

0.058

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 19:00:00

25.00

25.00

0.00784

31.38

0.00867

0.003

0.00

PLANTA0:ASEO

188.88

217.22

141.12

0.013

0.015

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 17:30:00

25.00

25.00

0.00772

34.88

0.00867

0.000

0.00

PLANTA1:HABITACION1

1865.88

2145.76

86.51

0.126

0.145

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 16:00:00

24.00

24.00

0.00808

37.15

0.00867

0.007

0.00

PLANTA1:PASILLO

2352.76

2705.67

128.63

0.171

0.197

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

SEP

9/15 16:30:00

24.00

24.00

0.00776

33.22

0.00864

0.006

0.00

PLANTA1:BANO

1096.11

1260.53

156.59

0.080

0.092

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

AGO

8/15 17:00:00

24.00

24.00

0.00774

35.56

0.00819

0.002

0.00

PLANTA1:HABITACION2

1469.89

1690.37

150.93

0.107

0.123

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

SEP

9/15 17:00:00

24.00

24.00

0.00777

32.55

0.00864

0.003

0.00

PLANTA1:HABITACION3

2421.62

2784.86

188.29

0.176

0.203

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

SEP

9/15 16:30:00

24.00

24.00

0.00773

33.22

0.00864

0.004

0.00

PLANTA2:ZONA3

863.34

992.84

172.67

0.063

0.072

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

AGO

8/15 17:00:00

24.00

24.00

0.00773

35.56

0.00819

0.002

0.00

PLANTA2:ZONA5

1595.26

1834.55

122.93

0.116

0.134

SUMMER

DESIGN

DAY IN

9/15 16:30:00

24.00

24.00

0.00775

33.22

0.00864

0.004

0.00

None

Page 196: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

SITIO (20-

01:26-01)

SEP

PLANTA2:ZONA1

470.36

540.92

86.55

0.034

0.039

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

AGO

8/15 16:30:00

24.00

24.00

0.00776

36.26

0.00819

0.002

0.00

PLANTA2:ZONA4

1390.57

1599.15

158.57

0.101

0.116

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

SEP

9/15 16:30:00

24.00

24.00

0.00773

33.22

0.00864

0.003

0.00

PLANTA2:ZONA2

2871.48

3302.20

74.77

0.192

0.221

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 16:00:00

24.00

24.00

0.00811

37.15

0.00867

0.013

0.00

PLANTA3:ZONA1

2869.58

3300.02

82.90

0.192

0.220

SUMMER

DESIGN

DAY IN

SITIO (20-

01:26-01)

JUL

7/15 16:00:00

24.00

24.00

0.00808

37.15

0.00867

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

Zone Sensible Heating

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

312.38

390.48

93.25

0.021

0.026

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01395

-4.00

0.00289

0.001

0.00

PLANTA0:SALON

2373.93

2967.42

57.45

0.157

0.196

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.98

0.01312

-4.00

0.00289

0.015

0.00

PLANTA0:ENTRADA

725.17

906.46

62.56

0.048

0.060

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01328

-4.00

0.00289

0.004

0.00

PLANTA0:COCINA

326.29

407.86

41.88

0.017

0.021

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

18.00

17.98

0.01175

-4.00

0.00289

0.003

0.00

PLANTA0:ASEO

41.97

52.46

34.08

0.002

0.003

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

18.00

17.99

0.01117

-4.00

0.00289

0.000

0.00

PLANTA1:HABITACION1

1261.62

1577.03

63.58

0.083

0.104

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01337

-4.00

0.00289

0.007

0.00

PLANTA1:PASILLO

791.79

989.73

47.05

0.052

0.065

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01276

-4.00

0.00289

0.006

0.00

PLANTA1:BANO

403.49

504.36

62.65

0.027

0.033

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01334

-4.00

0.00289

0.002

0.00

PLANTA1:HABITACION2

504.23

630.28

56.28

0.033

0.042

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01314

-4.00

0.00289

0.003

0.00

PLANTA1:HABITACION3

800.45

1000.57

67.65

0.053

0.066

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01348

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA3

302.46

378.07

65.75

0.020

0.025

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01387

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA5

574.46

718.07

48.11

0.038

0.048

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01335

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA1

177.86

222.32

35.57

0.012

0.015

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01273

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA4

541.03

676.29

67.06

0.036

0.045

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01390

-4.00

0.00289

0.003

0.00

WINTER

DESIGN

DAY IN

Page 197: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

PLANTA2:ZONA2

1654.07

2067.58

46.82

0.109

0.137

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.98

0.01330

-4.00

0.00289

0.013

0.00

PLANTA3:ZONA1

1972.64

2465.80

61.94

0.130

0.163

WINTER

DESIGN

DAY IN

SITIO

(20-

01:26-01)

1/15 24:00:00

22.00

21.99

0.01378

-4.00

0.00289

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

System Design Air Flow Rates

Calculated cooling [m3/s] User cooling [m3/s] Calculated heating [m3/s] User heating [m3/s]

None

Plant Loop Coincident Design Fluid Flow Rate Adjustments

Previous Design Volume

Flow Rate [m3/s]

Algorithm Volume Flow

Rate [m3/s]

Coincident Design Volume

Flow Rate [m3/s]

Coincident Size

Adjusted

Peak Sizing

Period Name

Peak Day into Period

{TIMESTAMP}[day]

Peak Hour Of Day

{TIMESTAMP}[hr]

Peak Step Start Minute

{TIMESTAMP}[min]

None

Report: System Summary

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Economizer

Demand Controlled Ventilation using Controller:MechanicalVentilation

Time Not Comfortable Based on Simple ASHRAE 55-2004

Winter Clothes [hr] Summer Clothes [hr] Summer or Winter Clothes [hr]

PLANTA0:PASILLO 104.00 138.00 104.00

PLANTA0:SALON 55.50 110.50 33.50

PLANTA0:ENTRADA 106.00 138.00 106.00

PLANTA0:COCINA 49.00 49.00 49.00

PLANTA0:ASEO 49.00 49.00 49.00

PLANTA1:HABITACION1 118.50 138.00 118.50

PLANTA1:PASILLO 45.50 136.50 45.50

PLANTA1:BANO 87.50 138.00 87.50

PLANTA1:HABITACION2 51.00 137.00 51.00

PLANTA1:HABITACION3 43.00 114.00 27.50

PLANTA2:ZONA3 90.50 138.00 90.50

PLANTA2:ZONA5 44.50 133.50 44.00

PLANTA2:ZONA1 67.00 138.00 67.00

PLANTA2:ZONA4 44.50 122.50 38.00

PLANTA2:ZONA2 114.00 138.00 114.00

PLANTA3:ZONA1 128.00 138.00 128.00

Facility 152.50 154.00 148.00

Aggregated over the RunPeriods for Weather

Time Setpoint Not Met

During Heating [hr] During Cooling [hr] During Occupied Heating [hr] During Occupied Cooling [hr]

PLANTA0:PASILLO 0.00 0.00 0.00 0.00

PLANTA0:SALON 0.00 0.00 0.00 0.00

PLANTA0:ENTRADA 0.50 0.00 0.50 0.00

PLANTA0:COCINA 0.00 0.00 0.00 0.00

PLANTA0:ASEO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION1 1.50 0.00 1.50 0.00

PLANTA1:PASILLO 0.00 0.00 0.00 0.00

PLANTA1:BANO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION2 0.00 0.00 0.00 0.00

PLANTA1:HABITACION3 0.00 0.00 0.00 0.00

PLANTA2:ZONA3 0.00 0.00 0.00 0.00

PLANTA2:ZONA5 0.00 0.00 0.00 0.00

PLANTA2:ZONA1 0.00 0.00 0.00 0.00

PLANTA2:ZONA4 0.00 0.00 0.00 0.00

PLANTA2:ZONA2 1.00 0.00 1.00 0.00

PLANTA3:ZONA1 1.50 0.00 1.50 0.00

Facility 1.50 0.00 1.50 0.00

Aggregated over the RunPeriods for Weather

Report: Outdoor Air Summary

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Table of Contents

Table of Contents

High Limit Shutoff Control Minimum Outdoor Air [m3/s] Maximum Outdoor Air [m3/s] Return Air Temp Limit Return Air Enthalpy Limit Outdoor Air Temperature Limit [C] Outdoor Air Enthalpy Limit [C]

None

Controller:MechanicalVentilation

Name

Outdoor Air Per

Person [m3/s-

person]

Outdoor Air Per

Area [m3/s-m2]

Outdoor Air

Per Zone

[m3/s]

Outdoor Air

ACH [ach]

Outdoor Air

Method

Outdoor Air

Schedule

Name

Air Distribution

Effectiveness in Cooling

Mode

Air Distribution

Effectiveness in Heating

Mode

Air Distribution

Effectiveness Schedule

Name

None

Page 198: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Average Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.66 0.248 0.745 0.000 0.000

PLANTA0:SALON 1.26 1.55 180.80 0.249 0.750 0.000 0.000

PLANTA0:ENTRADA 0.35 0.43 50.71 0.247 0.744 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.09 0.156 0.740 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.39 0.123 0.739 0.000 0.000

PLANTA1:HABITACION1 0.61 0.74 84.34 0.254 0.743 0.000 0.000

PLANTA1:PASILLO 0.51 0.63 71.52 0.256 0.747 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.37 0.255 0.745 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.08 0.256 0.747 0.000 0.000

PLANTA1:HABITACION3 0.36 0.44 50.29 0.257 0.750 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 14.95 0.334 0.746 0.000 0.000

PLANTA2:ZONA5 0.37 0.45 38.80 0.335 0.748 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.334 0.746 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.22 0.335 0.749 0.000 0.000

PLANTA2:ZONA2 1.08 1.32 114.82 0.333 0.743 0.000 0.000

PLANTA3:ZONA1 0.97 1.19 103.50 0.332 0.742 0.000 0.000

Values shown for a single zone without multipliers

Minimum Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.66 0.150 0.021 0.000 0.000

PLANTA0:SALON 1.26 1.55 180.80 0.151 0.021 0.000 0.000

PLANTA0:ENTRADA 0.35 0.43 50.71 0.149 0.021 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.09 0.057 0.021 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.39 0.045 0.021 0.000 0.000

PLANTA1:HABITACION1 0.61 0.74 84.34 0.153 0.021 0.000 0.000

PLANTA1:PASILLO 0.51 0.63 71.52 0.155 0.021 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.37 0.154 0.021 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.08 0.155 0.021 0.000 0.000

PLANTA1:HABITACION3 0.36 0.44 50.29 0.155 0.021 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 14.95 0.202 0.021 0.000 0.000

PLANTA2:ZONA5 0.37 0.45 38.80 0.203 0.021 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.203 0.021 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.22 0.203 0.021 0.000 0.000

PLANTA2:ZONA2 1.08 1.32 114.82 0.201 0.021 0.000 0.000

PLANTA3:ZONA1 0.97 1.19 103.50 0.200 0.021 0.000 0.000

Values shown for a single zone without multipliers

Report: Object Count Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Surfaces by Class

Total Outdoors

Wall 91 23

Floor 46 9

Roof 44 7

Internal Mass 0 0

Building Detached Shading 36 36

Fixed Detached Shading 0 0

Window 23 23

Door 36 4

Glass Door 0 0

Shading 0 0

Overhang 0 0

Fin 0 0

Tubular Daylighting Device Dome 0 0

Tubular Daylighting Device Diffuser 0 0

HVAC

Count

HVAC Air Loops 0

Conditioned Zones 16

Unconditioned Zones 0

Supply Plenums 0

Return Plenums 0

Input Fields

Count

IDF Objects 2269

Defaulted Fields 213

Fields with Defaults 4175

Autosized Fields 64

Autosizable Fields 64

Autocalculated Fields 98

Page 199: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Sensible Heat Gain Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Annual Building Sensible Heat Gain Components

a

Peak Cooling Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 22-JAN-23:02 0.00 -31.12 0.00 0.00 0.00 0.00 9.68 31.41 0.89 0.00 0.00 0.00 66.28 0.00 -0.00 0.00 -

PLANTA0:SALON 23-JAN-07:00 0.00 -399.51 0.00 0.00 0.00 0.00 140.26 387.42 11.03 0.00 0.00 0.00 1862.56 0.00 -992.92 0.00 -10

PLANTA0:ENTRADA 22-JAN-23:02 0.00 -107.81 0.00 0.00 0.00 0.00 33.48 108.67 3.10 0.00 0.00 0.00 314.81 0.00 -85.03 0.00 -2

PLANTA0:COCINA 23-JAN-10:00 0.00 -64.89 0.00 0.00 0.00 0.00 23.22 146.08 294.89 0.00 0.00 0.00 0.00 0.00 -49.43 0.00 -1

PLANTA0:ASEO 20-JAN-10:00 0.00 -6.38 0.00 0.00 0.00 0.00 2.62 11.54 0.15 0.00 0.00 0.00 19.90 0.00 -7.04 0.00 -

PLANTA1:HABITACION1 22-JAN-23:02 0.00 -183.97 0.00 0.00 0.00 0.00 57.32 186.04 5.30 0.00 0.00 0.00 702.80 0.00 -324.04 0.00 -4

PLANTA1:PASILLO 23-JAN-07:00 0.00 -163.85 0.00 0.00 0.00 0.00 56.79 157.76 4.49 0.00 0.00 0.00 477.22 0.00 -130.09 0.00 -4

PLANTA1:BANO 23-JAN-07:00 0.00 -60.37 0.00 0.00 0.00 0.00 22.39 60.38 1.72 0.00 0.00 0.00 236.67 0.00 -112.51 0.00 -1

PLANTA1:HABITACION2 23-JAN-07:00 0.00 -87.54 0.00 0.00 0.00 0.00 30.15 84.00 2.39 0.00 0.00 0.00 302.85 0.00 -116.91 0.00 -2

PLANTA1:HABITACION3 23-JAN-07:00 0.00 -117.58 0.00 0.00 0.00 0.00 39.20 110.93 3.16 0.00 0.00 0.00 531.78 0.00 -278.76 0.00 -2

PLANTA2:ZONA3 23-JAN-07:00 0.00 -43.58 0.00 0.00 0.00 0.00 15.88 43.13 1.23 0.00 0.00 0.00 178.99 0.00 -113.73 0.00 -

PLANTA2:ZONA5 23-JAN-07:00 0.00 -116.94 0.00 0.00 0.00 0.00 40.14 111.93 3.19 0.00 0.00 0.00 351.83 0.00 -170.37 0.00 -2

PLANTA2:ZONA1 23-JAN-07:00 0.00 -49.45 0.00 0.00 0.00 0.00 16.69 46.88 1.34 0.00 0.00 0.00 77.50 0.00 -0.00 0.00 -

PLANTA2:ZONA4 23-JAN-07:00 0.00 -79.71 0.00 0.00 0.00 0.00 26.91 75.64 2.15 0.00 0.00 0.00 313.37 0.00 -188.55 0.00 -1

PLANTA2:ZONA2 22-JAN-23:02 0.00 -327.97 0.00 0.00 0.00 0.00 102.05 331.21 9.43 0.00 0.00 0.00 852.16 0.00 -361.85 0.00 -6

PLANTA3:ZONA1 22-JAN-23:02 0.00 -293.14 0.00 0.00 0.00 0.00 91.99 298.56 8.50 0.00 0.00 0.00 1072.57 0.00 -637.22 0.00 -5

Total Facility 22-JAN-23:02 0.00 -2030.61 0.00 0.00 0.00 0.00 626.65 2033.94 77.56 0.00 0.00 0.00 7512.26 0.00 -3623.99 0.00 -45

Peak Heating Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 24-JAN-07:36 394.60 0.00 0.00 0.00 0.00 0.00 7.26 23.55 16.58 0.00 0.00 0.00 0.00 0.00 -0.00 0.00 -

PLANTA0:SALON 23-JAN-07:07 2851.35 0.00 0.00 0.00 0.00 0.00 105.81 290.56 204.56 0.00 0.00 0.00 0.00 0.00 -960.63 0.00 -11

PLANTA0:ENTRADA 24-JAN-07:17 934.70 0.00 0.00 0.00 0.00 0.00 31.28 81.50 57.38 0.00 0.00 0.00 0.00 0.00 -71.46 0.00 -2

PLANTA0:COCINA 20-JAN-05:06 443.26 0.00 0.00 0.00 0.00 0.00 0.00 0.00 19.48 0.00 0.00 0.00 0.00 0.00 -137.17 0.00 -1

PLANTA0:ASEO 23-JAN-05:08 59.14 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.15 0.00 0.00 0.00 0.00 0.00 -30.53 0.00 -

PLANTA1:HABITACION1 24-JAN-07:17 1617.44 0.00 0.00 0.00 0.00 0.00 54.43 139.53 98.23 0.00 0.00 0.00 0.00 0.00 -271.25 0.00 -4

PLANTA1:PASILLO 23-JAN-07:35 1017.10 0.00 0.00 0.00 0.00 0.00 36.45 118.32 83.30 0.00 0.00 0.00 0.00 0.00 -131.44 0.00 -4

PLANTA1:BANO 24-JAN-07:36 516.29 0.00 0.00 0.00 0.00 0.00 13.95 45.28 31.88 0.00 0.00 0.00 0.00 0.00 -104.27 0.00 -1

PLANTA1:HABITACION2 24-JAN-07:07 627.08 0.00 0.00 0.00 0.00 0.00 22.48 63.00 44.35 0.00 0.00 0.00 0.00 0.00 -101.32 0.00 -2

PLANTA1:HABITACION3 21-JAN-07:06 961.08 0.00 0.00 0.00 0.00 0.00 29.70 83.19 58.57 0.00 0.00 0.00 0.00 0.00 -238.88 0.00 -2

PLANTA2:ZONA3 23-JAN-07:07 366.19 0.00 0.00 0.00 0.00 0.00 11.96 32.34 22.77 0.00 0.00 0.00 0.00 0.00 -109.90 0.00 -

PLANTA2:ZONA5 23-JAN-07:07 711.40 0.00 0.00 0.00 0.00 0.00 30.25 83.95 59.10 0.00 0.00 0.00 0.00 0.00 -165.22 0.00 -2

PLANTA2:ZONA1 23-JAN-16:03 235.48 0.00 0.00 0.00 0.00 0.00 15.27 46.88 24.75 0.00 0.00 0.00 0.00 0.00 -0.00 0.00 -

PLANTA2:ZONA4 25-JAN-07:03 628.59 0.00 0.00 0.00 0.00 0.00 19.81 56.73 39.94 0.00 0.00 0.00 0.00 0.00 -173.66 0.00 -1

PLANTA2:ZONA2 24-JAN-07:36 2136.64 0.00 0.00 0.00 0.00 0.00 76.53 248.41 174.88 0.00 0.00 0.00 0.00 0.00 -339.45 0.00 -6

PLANTA3:ZONA1 24-JAN-07:36 2480.08 0.00 0.00 0.00 0.00 0.00 68.99 223.92 157.64 0.00 0.00 0.00 0.00 0.00 -598.07 0.00 -5

Total Facility 23-JAN-07:35 13959.92 0.00 0.00 0.00 0.00 0.00 495.82 1683.08 1371.39 0.00 0.00 0.00 0.00 0.00 -3797.63 0.00 -53

Autocalculatable Fields 562

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[kWh]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Heating

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[kWh]

HVAC

Input

Heated

Surface

Heating

[kWh]

HVAC

Input

Cooled

Surface

Cooling

[kWh]

People

Sensible

Heat

Addition

[kWh]

Lights

Sensible

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Addition

[kWh]

Window

Heat

Addition

[kWh]

Interzone

Air

Transfer

Heat

Addition

[kWh]

Infiltration

Heat

Addition

[kWh]

Opaque

Surface

Conduction

and Other

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Removal

[kWh]

Window

Heat

Removal

[kWh]

Interzone

Air

Transfer

Heat

Removal

[kWh]

Infiltration

Heat

Removal

[kWh]

Opaqu

Surfac

Conductio

and Othe

He

Remov

[kWh

PLANTA0:PASILLO 11.944 -1.49 0.000 0.000 0.000 0.000 1.186 3.525 1.170 0.000 0.000 0.000 0.000 0.000 0.000 0.000 -9.93 -6.4

PLANTA0:SALON 21.340 -26.93 0.000 0.000 0.000 0.000 13.458 43.488 14.433 311.436 0.000 0.000 0.161 0.000 -90.76 0.000 -136.16 -150.3

PLANTA0:ENTRADA 36.869 -4.89 0.000 0.000 0.000 0.000 4.174 12.199 4.048 1.217 0.000 0.000 0.000 0.000 -8.18 0.000 -33.63 -11.8

PLANTA0:COCINA 4.487 -1.26 0.000 0.000 0.000 0.000 0.610 7.158 10.598 6.381 0.000 0.000 4.640 0.000 -13.49 0.000 -19.12 0.00

PLANTA0:ASEO 1.043 -0.03 0.000 0.000 0.000 0.000 0.069 0.566 0.090 0.586 0.000 0.000 3.610 0.000 -2.82 0.000 -3.12 0.00

PLANTA1:HABITACION1 68.711 -8.06 0.000 0.000 0.000 0.000 7.227 20.883 6.931 5.461 0.000 0.000 0.004 0.000 -30.88 0.000 -55.11 -15.1

PLANTA1:PASILLO 12.044 -9.64 0.000 0.000 0.000 0.000 5.712 17.709 5.877 46.386 0.000 0.000 0.026 0.000 -11.40 0.000 -51.19 -15.5

PLANTA1:BANO 12.267 -3.04 0.000 0.000 0.000 0.000 2.256 6.777 2.249 10.349 0.000 0.000 0.075 0.000 -10.49 0.000 -18.80 -1.5

PLANTA1:HABITACION2 7.237 -5.08 0.000 0.000 0.000 0.000 3.059 9.429 3.129 9.990 0.000 0.000 10.193 0.000 -10.89 0.000 -27.07 -0.0

PLANTA1:HABITACION3 6.844 -8.64 0.000 0.000 0.000 0.000 3.826 12.451 4.132 93.139 0.000 0.000 0.077 0.000 -24.96 0.000 -38.23 -48.5

PLANTA2:ZONA3 8.036 -2.22 0.000 0.000 0.000 0.000 1.605 4.841 1.607 10.096 0.000 0.000 0.003 0.000 -10.46 0.000 -10.34 -3.1

PLANTA2:ZONA5 7.275 -6.85 0.000 0.000 0.000 0.000 4.013 12.564 4.170 58.239 0.000 0.000 0.049 0.000 -14.74 0.000 -28.16 -36.5

PLANTA2:ZONA1 5.032 -2.43 0.000 0.000 0.000 0.000 1.724 5.262 1.746 0.000 0.000 0.000 0.045 0.000 0.000 0.000 -11.38 -0.0

PLANTA2:ZONA4 4.909 -5.08 0.000 0.000 0.000 0.000 2.669 8.490 2.818 63.247 0.000 0.000 0.046 0.000 -16.37 0.000 -19.41 -41.2

PLANTA2:ZONA2 79.933 -14.51 0.000 0.000 0.000 0.000 12.827 37.179 12.339 14.616 0.000 0.000 0.000 0.000 -33.65 0.000 -75.45 -33.2

PLANTA3:ZONA1 100.642 -12.53 0.000 0.000 0.000 0.000 11.694 33.513 11.122 31.779 0.000 0.000 0.007 0.000 -59.38 0.000 -67.04 -49.7

Total Facility 388.614 -112.67 0.000 0.000 0.000 0.000 76.108 236.034 86.460 662.922 0.000 0.000 18.936 0.000 -338.47 0.000 -604.13 -413.4

Page 200: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Component Sizing Summary

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

ZoneHVAC:IdealLoadsAirSystem

User-Specified values were used. Design Size values were used if no User-Specified values were provided.

Report: Adaptive Comfort Summary

For: Entire Facility

Timestamp: 2018-12-16 17:15:03

Time Not Meeting the Adaptive Comfort Models during Occupied Hours

Table of Contents

Table of Contents

ASHRAE55 90% Acceptability Limits

[Hours]

ASHRAE55 80% Acceptability Limits

[Hours]

CEN15251 Category I Acceptability Limits

[Hours]

CEN15251 Category II Acceptability Limits

[Hours]

CEN15251 Category III Acceptability Limits

[Hours]

Design Size Maximum Heating Air Flow Rate

[m3/s]

Design Size Maximum Sensible Heating

Capacity [W]

Design Size Maximum Cooling Air Flow Rate

[m3/s]

Design Size Maximum Total Cooling

Capacity [W]

PLANTA0:PASILLO IDEAL LOADS AIR 0.025841 428.40 0.046173 658.54

PLANTA0:SALON IDEAL LOADS AIR 0.196264 3435.10 0.421882 6400.42

PLANTA0:ENTRADA IDEAL LOADS AIR 0.059970 1037.67 0.080564 1268.55

PLANTA0:COCINA IDEAL LOADS AIR 0.020634 478.59 0.057628 907.10

PLANTA0:ASEO IDEAL LOADS AIR 0.002655 61.30 0.014593 223.03

PLANTA1:HABITACION1 IDEAL LOADS

AIR

0.104326

1801.63

0.144679

2268.69

PLANTA1:PASILLO IDEAL LOADS AIR 0.065480 1180.21 0.196923 2823.08

PLANTA1:BANO IDEAL LOADS AIR 0.033371 577.26 0.091741 1306.87

PLANTA1:HABITACION2 IDEAL LOADS

AIR

0.041700

731.70

0.123028

1756.67

PLANTA1:HABITACION3 IDEAL LOADS

AIR

0.066199

1134.50

0.202686

2860.99

PLANTA2:ZONA3 IDEAL LOADS AIR 0.025019 430.14 0.072259 1024.91

PLANTA2:ZONA5 IDEAL LOADS AIR 0.047511 853.22 0.133522 1911.31

PLANTA2:ZONA1 IDEAL LOADS AIR 0.014711 278.92 0.039369 575.83

PLANTA2:ZONA4 IDEAL LOADS AIR 0.044750 767.62 0.116389 1648.56

PLANTA2:ZONA2 IDEAL LOADS AIR 0.136769 2467.45 0.220784 3512.34

PLANTA3:ZONA1 IDEAL LOADS AIR 0.163121 2826.26 0.220475 3468.49

Page 201: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ANEXO 5. RESULTADOS NUMÉRICOS SIMULACIÓN MEJORAS. SEMANA

EXTREMA DE VERANO.

Page 202: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Program Version:EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.16 17:05

Tabular Output Report in Format: HTML

Building: Building

Environment: SITIO (13-07:19-07) ** MADRID - ESP IWEC Data WMO#=082210

Simulation Timestamp: 2018-12-16 17:05:10

Report: Annual Building Utility Performance Summary

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Values gathered over 168.00 hours

WARNING: THE REPORT DOES NOT REPRESENT A FULL ANNUAL SIMULATION.

Site and Source Energy

Total Energy [kWh] Energy Per Total Building Area [kWh/m2] Energy Per Conditioned Building Area [kWh/m2]

Total Site Energy 1497.69 5.30 5.30

Net Site Energy 1497.69 5.30 5.30

Total Source Energy 2453.90 8.69 8.69

Net Source Energy 2453.90 8.69 8.69

Site to Source Energy Conversion Factors

Site=>Source Conversion Factor

Electricity 3.167

Natural Gas 1.084

District Cooling 1.056

District Heating 3.613

Steam 0.250

Gasoline 1.050

Diesel 1.050

Coal 1.050

Fuel Oil #1 1.050

Fuel Oil #2 1.050

Propane 1.050

Other Fuel 1 1.000

Other Fuel 2 1.000

Building Area

Area [m2]

Total Building Area 282.47

Net Conditioned Building Area 282.47

Unconditioned Building Area 0.00

End Uses

End Uses By Subcategory

Table of Contents

Table of Contents

Subcategory Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating General 0.00 0.00 0.00 0.00 0.00 0.00

Cooling General 0.00 0.00 0.00 1098.67 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 3.53 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 43.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 12.20 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 7.16 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.57 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 20.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 17.71 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 6.78 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 9.43 0.00 0.00 0.00 0.00 0.00

Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating 0.00 0.00 0.00 0.00 0.00 0.00

Cooling 0.00 0.00 0.00 1098.67 0.00 0.00

Interior Lighting 236.03 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 94.88 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 68.10 1.22

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 330.91 0.00 0.00 1098.67 68.10 1.22

Page 203: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 12.45 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 4.84 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 12.56 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 5.26 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 8.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 37.18 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 33.51 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 1.30 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 16.04 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 4.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 10.60 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.09 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 7.70 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 6.53 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 2.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 3.48 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 4.59 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 1.79 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 4.63 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 1.94 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 3.13 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 13.71 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 12.36 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 0.98 0.02

DHW Planta0:Salon 0.00 0.00 0.00 0.00 12.09 0.22

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 3.39 0.06

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 3.99 0.07

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 0.63 0.01

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 5.81 0.10

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 4.92 0.09

DHW Planta1:Bano 0.00 0.00 0.00 0.00 1.88 0.03

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 2.62 0.05

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 3.46 0.06

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 1.35 0.02

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 3.49 0.06

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 1.46 0.03

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 2.36 0.04

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 10.34 0.19

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 9.32 0.17

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Normalized Metrics

Utility Use Per Conditioned Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 0.84 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 3.89 0.24 0.00

Other 0.34 0.00 0.00 0.00 0.00 0.00

Total 1.17 0.00 0.00 3.89 0.24 0.00

Utility Use Per Total Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 0.84 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 3.89 0.24 0.00

Other 0.34 0.00 0.00 0.00 0.00 0.00

Total 1.17 0.00 0.00 3.89 0.24 0.00

Electric Loads Satisfied

Electricity [kWh] Percent Electricity [%]

Fuel-Fired Power Generation 0.000 0.00

High Temperature Geothermal* 0.000 0.00

Photovoltaic Power 0.000 0.00

Wind Power 0.000 0.00

Power Conversion 0.000 0.00

Net Decrease in On-Site Storage 0.000 0.00

Total On-Site Electric Sources 0.000 0.00

Electricity Coming From Utility 330.912 100.00

Surplus Electricity Going To Utility 0.000 0.00

Net Electricity From Utility 330.912 100.00

Page 204: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Total On-Site and Utility Electric Sources 330.912 100.00

Total Electricity End Uses 330.912 100.00

On-Site Thermal Sources

Heat [kWh] Percent Heat [%]

Water-Side Heat Recovery 0.00

Air to Air Heat Recovery for Cooling 0.00

Air to Air Heat Recovery for Heating 0.00

High-Temperature Geothermal* 0.00

Solar Water Thermal 0.00

Solar Air Thermal 0.00

Total On-Site Thermal Sources 0.00

Water Source Summary

Water [m3] Percent Water [%]

Rainwater Collection 0.00 0.00

Condensate Collection 0.00 0.00

Groundwater Well 0.00 0.00

Total On Site Water Sources 0.00 0.00

- - -

Initial Storage 0.00 0.00

Final Storage 0.00 0.00

Change in Storage 0.00 0.00

- - -

Water Supplied by Utility 1.22 100.00

- - -

Total On Site, Change in Storage, and Utility Water Sources 1.22 100.00

Total Water End Uses 1.22 100.00

Setpoint Not Met Criteria

Degrees [deltaC]

Tolerance for Zone Heating Setpoint Not Met Time 1.11

Tolerance for Zone Cooling Setpoint Not Met Time 1.11

Comfort and Setpoint Not Met Summary

Facility [Hours]

Time Setpoint Not Met During Occupied Heating 0.00

Time Setpoint Not Met During Occupied Cooling 2.00

Time Not Comfortable Based on Simple ASHRAE 55-2004 68.00

Note 1: An asterisk (*) indicates that the feature is not yet implemented.

Table of Contents

Top

Annual Building Utility Performance Summary

Input Verification and Results Summary

Demand End Use Components Summary

Component Sizing Summary

Adaptive Comfort Summary

Climatic Data Summary

Envelope Summary

Lighting Summary

Equipment Summary

HVAC Sizing Summary

System Summary

Outdoor Air Summary

Object Count Summary

Sensible Heat Gain Summary

Report: Input Verification and Results Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

General

Value

Program Version and Build EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.16 17:05

RunPeriod SITIO (13-07:19-07)

Weather File MADRID - ESP IWEC Data WMO#=082210

Latitude [deg] 40.45

Longitude [deg] -3.5

Elevation [m] 582.00

Time Zone 1.00

North Axis Angle [deg] 0.00

Rotation for Appendix G [deg] 0.00

Hours Simulated [hrs] 168.00

ENVELOPE

Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.75 29.22 0.00 33.03 11.49

Page 205: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Gross Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Above Ground Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Conditioned Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.75 29.22 0.00 33.03 11.49

Gross Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Above Ground Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Skylight-Roof Ratio

Total

Gross Roof Area [m2] 94.67

Skylight Area [m2] 0.00

Skylight-Roof Ratio [%] 0.00

PERFORMANCE

Zone Summary

Area

[m2]

Conditioned

(Y/N)

Part of Total

Floor Area (Y/N)

Volume

[m3]

Multipliers Above Ground Gross

Wall Area [m2]

Underground Gross

Wall Area [m2]

Window Glass

Area [m2]

Opening

Area [m2]

Lighting

[W/m2]

People [m2

per person]

Plug and

Process [W/m2]

PLANTA0:PASILLO 4.19 Yes Yes 14.66 1.00 5.28 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA0:SALON 51.66 Yes Yes 180.80 1.00 53.00 0.00 17.63 18.74 7.5000 33.33 4.4000

PLANTA0:ENTRADA 14.49 Yes Yes 50.71 1.00 10.48 0.00 1.54 1.83 7.5000 33.33 4.4000

PLANTA0:COCINA 9.74 Yes Yes 34.09 1.00 24.65 0.00 2.92 3.59 15.0000 42.19 30.2800

PLANTA0:ASEO 1.54 Yes Yes 5.39 1.00 2.98 0.00 0.58 0.71 7.5000 53.37 1.6700

PLANTA1:HABITACION1 24.81 Yes Yes 84.34 1.00 40.67 0.00 6.26 6.97 7.5000 33.33 4.4000

PLANTA1:PASILLO 21.04 Yes Yes 71.52 1.00 5.67 0.00 2.25 2.55 7.5000 33.33 4.4000

PLANTA1:BANO 8.05 Yes Yes 27.37 1.00 8.75 0.00 1.97 2.21 7.5000 33.33 4.4000

PLANTA1:HABITACION2 11.20 Yes Yes 38.08 1.00 11.90 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA1:HABITACION3 14.79 Yes Yes 50.29 1.00 29.40 0.00 4.60 5.05 7.5000 33.33 4.4000

PLANTA2:ZONA3 5.75 Yes Yes 14.95 1.00 7.29 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA2:ZONA5 14.92 Yes Yes 38.80 1.00 8.15 0.00 2.83 3.25 7.5000 33.33 4.4000

PLANTA2:ZONA1 6.25 Yes Yes 16.25 1.00 0.00 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA2:ZONA4 10.09 Yes Yes 26.22 1.00 20.79 0.00 3.11 3.44 7.5000 33.33 4.4000

PLANTA2:ZONA2 44.16 Yes Yes 114.82 1.00 38.12 0.00 6.75 7.41 7.5000 33.33 4.4000

PLANTA3:ZONA1 39.81 Yes Yes 103.50 1.00 54.65 0.00 12.66 13.61 7.5000 33.33 4.4000

Total 282.47

871.78

321.79 0.00 67.00 73.75 7.7586 33.65 5.2774

Conditioned Total 282.47

871.78

321.79 0.00 67.00 73.75 7.7586 33.65 5.2774

Unconditioned Total 0.00

0.00

0.00 0.00 0.00 0.00

Not Part of Total 0.00

0.00

0.00 0.00 0.00 0.00

Report: Demand End Use Components Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

End Uses

Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Time of Peak 15-JUL-14:30 - - 19-JUL-15:00 15-JUL-08:30 15-JUL-08:00

Heating 0.00 0.00 0.00 0.00 0.00 0.00

Cooling 0.00 0.00 0.00 28100.70 0.00 0.00

Interior Lighting 2033.94 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 1212.88 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 1584.36 0.00

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 3246.82 0.00 0.00 28100.70 1584.36 0.00

End Uses By Subcategory

Subcategory Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Heating General 0.00 0.00 0.00 0.00 0.00 0.00

Cooling General 0.00 0.00 0.00 28100.70 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 31.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 387.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 108.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

Page 206: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 186.04 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 157.76 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 60.38 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 84.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 110.93 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 43.13 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 111.93 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 46.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 75.64 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 331.21 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 298.56 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 18.43 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 227.29 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 63.75 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 19.48 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 109.14 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 92.55 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 35.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 49.28 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 65.08 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 25.30 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 65.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 27.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 44.37 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 194.31 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 175.16 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 21.78 0.00

DHW Planta0:Salon 0.00 0.00 0.00 0.00 268.70 0.00

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 75.37 0.00

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 149.98 0.00

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 23.70 0.00

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 129.03 0.00

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 109.42 0.00

DHW Planta1:Bano 0.00 0.00 0.00 0.00 41.87 0.00

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 58.26 0.00

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 76.93 0.00

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 29.91 0.00

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 77.63 0.00

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 32.51 0.00

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 52.46 0.00

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 229.72 0.00

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 207.07 0.00

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Report: Climatic Data Summary

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

SizingPeriod:DesignDay

Weather Statistics File

Value

None

Report: Envelope Summary

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Opaque Exterior

Table of Contents

Table of Contents

U-Factor with Film [W/m2- U-Factor no Film [W/m2- Gross Area Net Area Azimuth Tilt Cardinal

Maximum Dry Bulb [C] Daily Temperature Range [deltaC] Humidity Value Humidity Type Wind Speed [m/s] Wind Direction

SUMMER DESIGN DAY IN SITIO (13-07:19-07) JUL 38.20 17.50 20.30 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (13-07:19-07) AGO 38.00 17.40 19.90 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (13-07:19-07) SEP 34.90 16.80 19.30 Wetbulb [C] 0.00 0.00

WINTER DESIGN DAY IN SITIO (13-07:19-07) -4.00 0.00 -4.00 Wetbulb [C] 11.60 0.00

Page 207: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Construction Reflectance K] K] [m2] [m2] [deg] [deg] Direction

PLANTA0:PASILLO_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 5.28 3.51 270.00 90.00 W

PLANTA0:PASILLO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

5.43

5.43

0.00

180.00

PLANTA0:SALON_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 29.83 28.46 270.00 90.00 W

PLANTA0:SALON_WALL_7_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 23.17 5.80 180.00 90.00 S

PLANTA0:SALON_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

30.68

30.68

0.00

180.00

PLANTA0:SALON_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

26.95

26.95

0.00

180.00

PLANTA0:ENTRADA_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 10.48 6.71 0.00 90.00 N

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

0.03

0.03

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_1

SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

0.64

0.64

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_2 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

16.10

16.10

0.00

180.00

PLANTA0:COCINA_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 9.71 7.44 0.00 90.00 N

PLANTA0:COCINA_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 14.94 13.62 270.00 90.00 W

PLANTA0:COCINA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

7.68

7.68

0.00

180.00

PLANTA0:COCINA_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

4.80

4.80

0.00

180.00

PLANTA0:ASEO_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 2.98 2.26 0.00 90.00 N

PLANTA0:ASEO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

2.35

2.35

0.00

180.00

PLANTA1:HABITACION1_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 23.17 16.20 0.00 90.00 N

PLANTA1:HABITACION1_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.50 17.50 270.00 90.00 W

PLANTA1:PASILLO_WALL_10_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 5.67 3.12 180.00 90.00 S

PLANTA1:BANO_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 8.75 6.54 270.00 90.00 W

PLANTA1:HABITACION2_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 11.90 9.71 270.00 90.00 W

PLANTA1:HABITACION3_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 11.90 11.90 270.00 90.00 W

PLANTA1:HABITACION3_WALL_7_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.50 12.45 180.00 90.00 S

PLANTA2:ZONA3_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 7.29 5.10 270.00 90.00 W

PLANTA2:ZONA3_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 7.29 7.29 180.00 0.00

PLANTA2:ZONA5_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 8.15 4.91 180.00 90.00 S

PLANTA2:ZONA5_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 11.07 11.07 180.00 0.00

PLANTA2:ZONA5_ROOF_1_0_1 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 6.45 6.45 180.00 0.00

PLANTA2:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 7.29 7.29 180.00 0.00

PLANTA2:ZONA4_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 11.07 11.07 270.00 90.00 W

PLANTA2:ZONA4_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 9.72 6.28 180.00 90.00 S

PLANTA2:ZONA4_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 12.91 12.91 180.00 0.00

PLANTA2:ZONA2_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.87 10.72 0.00 90.00 N

PLANTA2:ZONA2_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 20.25 18.04 270.00 90.00 W

PLANTA2:ZONA2_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 3.31 3.31 180.00 0.00

PLANTA3:ZONA1_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.87 5.63 0.00 90.00 N

PLANTA3:ZONA1_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 18.90 18.90 270.00 90.00 W

PLANTA3:ZONA1_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.87 14.54 180.00 90.00 S

PLANTA3:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 46.34 46.34 180.00 0.00

Exterior Fenestration

Construction

Glass

Area

[m2]

Frame

Area

[m2]

Divider

Area

[m2]

Area of

One

Opening

[m2]

Area of

Multiplied

Openings

[m2]

Glass

U-

Factor

[W/m2-

K]

Glass

SHGC

Glass Visible

Transmittance

Frame

Conductance

[W/m2-K]

Divider

Conductance

[W/m2-K]

Shade

Control

Parent Surface

Azimut

[de

PLANTA0:SALON_WALL_6_0_0_0_0_0_WIN 1001 1.19 0.18 0.00 1.37 1.37 2.617 0.691 0.771 9.500 0.000 No PLANTA0:SALON_WALL_6_0_0 270.

PLANTA0:SALON_WALL_7_0_0_0_0_0_WIN 1001 13.59 0.62 0.45 14.66 14.66 2.617 0.691 0.771 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:SALON_WALL_7_0_0_1_0_1_WIN 1001 2.36 0.32 0.03 2.70 2.70 2.617 0.691 0.771 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:ENTRADA_WALL_3_0_0_1_0_1_WIN 1001 0.70 0.14 0.00 0.84 0.84 2.617 0.691 0.771 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:ENTRADA_WALL_3_0_0_2_0_2_WIN 1001 0.84 0.15 0.00 0.99 0.99 2.617 0.691 0.771 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:COCINA_WALL_5_0_0_0_0_0_WIN 1001 2.00 0.25 0.02 2.27 2.27 2.617 0.691 0.771 9.500 9.500 No PLANTA0:COCINA_WALL_5_0_0 0.

PLANTA0:COCINA_WALL_6_0_0_0_0_0_WIN 1001 0.22 0.11 0.00 0.33 1.32 2.617 0.691 0.771 9.500 0.000 No PLANTA0:COCINA_WALL_6_0_0 270.

PLANTA0:ASEO_WALL_3_0_0_0_0_0_WIN 1001 0.58 0.13 0.00 0.71 0.71 2.617 0.691 0.771 9.500 0.000 No PLANTA0:ASEO_WALL_3_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_0_0_0_WIN 1001 2.22 0.30 0.05 2.57 2.57 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_1_0_1_WIN 1001 3.94 0.40 0.06 4.40 4.40 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:PASILLO_WALL_10_0_0_0_0_0_WIN 1001 2.22 0.30 0.03 2.55 2.55 2.617 0.691 0.771 9.500 9.500 No PLANTA1:PASILLO_WALL_10_0_0 180.

PLANTA1:BANO_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 2.617 0.691 0.771 9.500 9.500 No PLANTA1:BANO_WALL_4_0_0 270.

PLANTA1:HABITACION2_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION2_WALL_4_0_0 270.

PLANTA1:HABITACION3_WALL_7_0_0_0_0_0_WIN 1001 4.54 0.45 0.06 5.05 5.05 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION3_WALL_7_0_0 180.

PLANTA2:ZONA3_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA3_WALL_4_0_0 270.

PLANTA2:ZONA5_WALL_6_0_0_0_0_0_WIN 1001 1.62 0.24 0.02 1.87 1.87 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA5_WALL_6_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.38 1.38 2.617 0.691 0.771 9.500 0.000 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA4_WALL_5_0_0_0_0_0_WIN 1001 3.07 0.33 0.04 3.44 3.44 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA4_WALL_5_0_0 180.

PLANTA2:ZONA2_WALL_3_0_0_1_0_1_WIN 1001 4.71 0.42 0.07 5.20 5.20 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA2_WALL_3_0_0 0.

PLANTA2:ZONA2_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA2_WALL_4_0_0 270.

PLANTA3:ZONA1_WALL_3_0_0_0_0_0_WIN 1001 1.74 0.25 0.05 2.04 2.04 2.617 0.691 0.771 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_3_0_0_1_0_1_WIN 1001 9.38 0.52 0.30 10.20 10.20 2.617 0.691 0.771 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_5_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.38 1.38 2.617 0.691 0.771 9.500 0.000 No PLANTA3:ZONA1_WALL_5_0_0 180.

Total or Average

73.75 2.617 0.691 0.771

North Total or Average

29.22 2.617 0.691 0.771

Non-North Total or Average

44.53 2.617 0.691 0.771

Interior Fenestration

Page 208: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Construction Area of One Opening [m2] Area of Openings [m2] Glass U-Factor [W/m2-K] Glass SHGC Glass Visible Transmittance Parent Surface

Total or Average

0.00 - - -

Exterior Door

Construction U-Factor with Film [W/m2-K] U-Factor no Film [W/m2-K] Gross Area [m2] Parent Surface

PLANTA0:PASILLO_WALL_6_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.77 PLANTA0:PASILLO_WALL_6_0_0

PLANTA0:ENTRADA_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.94 PLANTA0:ENTRADA_WALL_3_0_0

PLANTA2:ZONA2_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.96 PLANTA2:ZONA2_WALL_3_0_0

PLANTA3:ZONA1_WALL_5_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.95 PLANTA3:ZONA1_WALL_5_0_0

Report: Lighting Summary

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Interior Lighting

Daylighting

Zone Daylighting Type Control Type Fraction Controlled Lighting Installed in Zone [W] Lighting Controlled [W]

None

Exterior Lighting

Report: Equipment Summary

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Central Plant

Type Nominal Capacity [W] Nominal Efficiency [W/W] IPLV in SI Units [W/W] IPLV in IP Units [Btu/W-h]

None

Cooling Coils

DX Cooling Coils

DX Cooling Coil ASHRAE 127 Standard Ratings Report

Table of Contents

Table of Contents

DX Cooling

Coil Type

Rated Net Cooling

Capacity Test A [W]

Rated Electric Power

Test A [W]

Rated Net Cooling

Capacity Test B [W]

Rated Electric Power

Test B [W]

Rated Net Cooling

Capacity Test C [W]

Rated Electric Power

Test C [W]

Rated Net Cooling

Capacity Test D [W]

Rated Electric Power

Test D [W]

Zone

Lighting

Power

Density

[W/m2]

Zone

Area

[m2]

Total

Power

[W]

End Use Subcategory

Schedule Name

Scheduled

Hours/Week

[hr]

Hours/Week

> 1% [hr]

Full Load

Hours/Week

[hr]

Return

Air

Fraction

Conditioned

(Y/N)

Consump

[k

PLANTA0:PASILLO

GENERAL LIGHTING

PLANTA0:PASILLO

7.5000

4.19

31.41 ELECTRIC

EQUIPMENT#Planta0:Pasillo#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA0:SALON

GENERAL LIGHTING

PLANTA0:SALON

7.5000

51.66

387.42 ELECTRIC

EQUIPMENT#Planta0:Salon#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

4

PLANTA0:ENTRADA

GENERAL LIGHTING

PLANTA0:ENTRADA

7.5000

14.49

108.67 ELECTRIC

EQUIPMENT#Planta0:Entrada#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA0:COCINA

GENERAL LIGHTING

PLANTA0:COCINA

15.0000

9.74

146.08 ELECTRIC

EQUIPMENT#Planta0:Cocina#GeneralLights

DWELL_DOMKITCHEN_LIGHT

49.00

49.00

49.00

0.0000

Y

PLANTA0:ASEO

GENERAL LIGHTING

PLANTA0:ASEO

7.5000

1.54

11.54 ELECTRIC

EQUIPMENT#Planta0:Aseo#GeneralLights

DWELL_DOMBATH_LIGHT

49.00

49.00

49.00

0.0000

Y

PLANTA1:HABITACION1

GENERAL LIGHTING

PLANTA1:HABITACION1

7.5000

24.81

186.04 ELECTRIC

EQUIPMENT#Planta1:Habitacion1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

2

PLANTA1:PASILLO

GENERAL LIGHTING

PLANTA1:PASILLO

7.5000

21.04

157.76 ELECTRIC

EQUIPMENT#Planta1:Pasillo#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA1:BANO

GENERAL LIGHTING

PLANTA1:BANO

7.5000

8.05

60.38

ELECTRIC

EQUIPMENT#Planta1:Bano#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA1:HABITACION2

GENERAL LIGHTING

PLANTA1:HABITACION2

7.5000

11.20

84.00 ELECTRIC

EQUIPMENT#Planta1:Habitacion2#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA1:HABITACION3

GENERAL LIGHTING

PLANTA1:HABITACION3

7.5000

14.79

110.93 ELECTRIC

EQUIPMENT#Planta1:Habitacion3#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA2:ZONA3

GENERAL LIGHTING

PLANTA2:ZONA3

7.5000

5.75

43.13 ELECTRIC

EQUIPMENT#Planta2:Zona3#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA5

GENERAL LIGHTING

PLANTA2:ZONA5

7.5000

14.92

111.93 ELECTRIC

EQUIPMENT#Planta2:Zona5#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

1

PLANTA2:ZONA1

GENERAL LIGHTING

PLANTA2:ZONA1

7.5000

6.25

46.88 ELECTRIC

EQUIPMENT#Planta2:Zona1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA4

GENERAL LIGHTING

PLANTA2:ZONA4

7.5000

10.09

75.64 ELECTRIC

EQUIPMENT#Planta2:Zona4#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

PLANTA2:ZONA2

GENERAL LIGHTING

PLANTA2:ZONA2

7.5000

44.16

331.21 ELECTRIC

EQUIPMENT#Planta2:Zona2#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

3

PLANTA3:ZONA1

GENERAL LIGHTING

PLANTA3:ZONA1

7.5000

39.81

298.56 ELECTRIC

EQUIPMENT#Planta3:Zona1#GeneralLights

RESIDENCIAL TFM

112.24

137.50

111.75

0.0000

Y

3

Interior Lighting Total

7.7586 282.47 2191.57

23

Total Watts Astronomical Clock/Schedule Schedule Name Scheduled Hours/Week [hr] Hours/Week > 1% [hr] Full Load Hours/Week [hr] Consumption [kWh]

Exterior Lighting Total 0.00

0.00

Type Design Coil Load

[W]

Nominal Total Capacity

[W]

Nominal Sensible Capacity

[W]

Nominal Latent Capacity

[W]

Nominal Sensible Heat

Ratio

Nominal Efficiency

[W/W]

Nominal Coil UA Value

[W/C]

Nominal Coil Surface Area

[m2]

None

DX Cooling Coil Type Standard Rated Net Cooling Capacity [W] Standard Rated Net COP [W/W] EER [Btu/W-h] SEER [Btu/W-h] IEER [Btu/W-h]

None

Page 209: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

DX Heating Coils

DX Heating Coil Type High Temperature Heating (net) Rating Capacity [W] Low Temperature Heating (net) Rating Capacity [W] HSPF [Btu/W-h] Region Number

None

Heating Coils

Type Design Coil Load [W] Nominal Total Capacity [W] Nominal Efficiency [W/W]

None

Fans

Type Total Efficiency [W/W] Delta Pressure [pa] Max Air Flow Rate [m3/s] Rated Electric Power [W] Rated Power Per Max Air Flow Rate [W-s/m3] Motor Heat In Air Fraction End Use

None

Pumps

Type Control Head [pa] Water Flow [m3/s] Electric Power [W] Power Per Water Flow Rate [W-s/m3] Motor Efficiency [W/W]

None

Service Water Heating

Type Storage Volume [m3] Input [W] Thermal Efficiency [W/W] Recovery Efficiency [W/W] Energy Factor

None

Report: HVAC Sizing Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Zone Sensible Cooling

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

551.67

634.42

151.50

0.040

0.046

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

AGO

8/15 16:30:00

24.00

24.00

0.00774

36.26

0.00819

0.001

0.00

PLANTA0:SALON

5652.58

6500.46

125.84

0.367

0.422

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

SEP

9/15 16:00:00

24.00

24.00

0.00803

33.89

0.00864

0.015

0.00

PLANTA0:ENTRADA

1027.52

1181.65

81.55

0.070

0.081

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 16:00:00

24.00

24.00

0.00809

37.15

0.00867

0.004

0.00

PLANTA0:COCINA

745.89

857.77

88.08

0.050

0.058

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 19:00:00

25.00

25.00

0.00784

31.38

0.00867

0.003

0.00

PLANTA0:ASEO

188.88

217.22

141.12

0.013

0.015

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 17:30:00

25.00

25.00

0.00772

34.88

0.00867

0.000

0.00

PLANTA1:HABITACION1

1865.88

2145.76

86.51

0.126

0.145

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 16:00:00

24.00

24.00

0.00808

37.15

0.00867

0.007

0.00

PLANTA1:PASILLO

2352.76

2705.67

128.63

0.171

0.197

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

SEP

9/15 16:30:00

24.00

24.00

0.00776

33.22

0.00864

0.006

0.00

PLANTA1:BANO

1096.11

1260.53

156.59

0.080

0.092

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

AGO

8/15 17:00:00

24.00

24.00

0.00774

35.56

0.00819

0.002

0.00

PLANTA1:HABITACION2

1469.89

1690.37

150.93

0.107

0.123

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

SEP

9/15 17:00:00

24.00

24.00

0.00777

32.55

0.00864

0.003

0.00

PLANTA1:HABITACION3

2421.62

2784.86

188.29

0.176

0.203

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

SEP

9/15 16:30:00

24.00

24.00

0.00773

33.22

0.00864

0.004

0.00

PLANTA2:ZONA3

863.34

992.84

172.67

0.063

0.072

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

AGO

8/15 17:00:00

24.00

24.00

0.00773

35.56

0.00819

0.002

0.00

PLANTA2:ZONA5

1595.26

1834.55

122.93

0.116

0.134

SUMMER

DESIGN

DAY IN

9/15 16:30:00

24.00

24.00

0.00775

33.22

0.00864

0.004

0.00

None

Page 210: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

SITIO (13-

07:19-07)

SEP

PLANTA2:ZONA1

470.36

540.92

86.55

0.034

0.039

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

AGO

8/15 16:30:00

24.00

24.00

0.00776

36.26

0.00819

0.002

0.00

PLANTA2:ZONA4

1390.57

1599.15

158.57

0.101

0.116

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

SEP

9/15 16:30:00

24.00

24.00

0.00773

33.22

0.00864

0.003

0.00

PLANTA2:ZONA2

2871.48

3302.20

74.77

0.192

0.221

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 16:00:00

24.00

24.00

0.00811

37.15

0.00867

0.013

0.00

PLANTA3:ZONA1

2869.58

3300.02

82.90

0.192

0.220

SUMMER

DESIGN

DAY IN

SITIO (13-

07:19-07)

JUL

7/15 16:00:00

24.00

24.00

0.00808

37.15

0.00867

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

Zone Sensible Heating

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

312.38

390.48

93.25

0.021

0.026

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01395

-4.00

0.00289

0.001

0.00

PLANTA0:SALON

2373.93

2967.42

57.45

0.157

0.196

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.98

0.01312

-4.00

0.00289

0.015

0.00

PLANTA0:ENTRADA

725.17

906.46

62.56

0.048

0.060

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01328

-4.00

0.00289

0.004

0.00

PLANTA0:COCINA

326.29

407.86

41.88

0.017

0.021

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

18.00

17.98

0.01175

-4.00

0.00289

0.003

0.00

PLANTA0:ASEO

41.97

52.46

34.08

0.002

0.003

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

18.00

17.99

0.01117

-4.00

0.00289

0.000

0.00

PLANTA1:HABITACION1

1261.62

1577.03

63.58

0.083

0.104

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01337

-4.00

0.00289

0.007

0.00

PLANTA1:PASILLO

791.79

989.73

47.05

0.052

0.065

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01276

-4.00

0.00289

0.006

0.00

PLANTA1:BANO

403.49

504.36

62.65

0.027

0.033

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01334

-4.00

0.00289

0.002

0.00

PLANTA1:HABITACION2

504.23

630.28

56.28

0.033

0.042

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01314

-4.00

0.00289

0.003

0.00

PLANTA1:HABITACION3

800.45

1000.57

67.65

0.053

0.066

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01348

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA3

302.46

378.07

65.75

0.020

0.025

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01387

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA5

574.46

718.07

48.11

0.038

0.048

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01335

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA1

177.86

222.32

35.57

0.012

0.015

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01273

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA4

541.03

676.29

67.06

0.036

0.045

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01390

-4.00

0.00289

0.003

0.00

WINTER

DESIGN

DAY IN

Page 211: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

PLANTA2:ZONA2

1654.07

2067.58

46.82

0.109

0.137

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.98

0.01330

-4.00

0.00289

0.013

0.00

PLANTA3:ZONA1

1972.64

2465.80

61.94

0.130

0.163

WINTER

DESIGN

DAY IN

SITIO

(13-

07:19-07)

1/15 24:00:00

22.00

21.99

0.01378

-4.00

0.00289

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

System Design Air Flow Rates

Calculated cooling [m3/s] User cooling [m3/s] Calculated heating [m3/s] User heating [m3/s]

None

Plant Loop Coincident Design Fluid Flow Rate Adjustments

Previous Design Volume

Flow Rate [m3/s]

Algorithm Volume Flow

Rate [m3/s]

Coincident Design Volume

Flow Rate [m3/s]

Coincident Size

Adjusted

Peak Sizing

Period Name

Peak Day into Period

{TIMESTAMP}[day]

Peak Hour Of Day

{TIMESTAMP}[hr]

Peak Step Start Minute

{TIMESTAMP}[min]

None

Report: System Summary

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Economizer

Demand Controlled Ventilation using Controller:MechanicalVentilation

Time Not Comfortable Based on Simple ASHRAE 55-2004

Winter Clothes [hr] Summer Clothes [hr] Summer or Winter Clothes [hr]

PLANTA0:PASILLO 134.50 29.00 29.00

PLANTA0:SALON 138.00 59.00 59.00

PLANTA0:ENTRADA 134.00 26.00 26.00

PLANTA0:COCINA 49.00 0.00 0.00

PLANTA0:ASEO 49.00 0.00 0.00

PLANTA1:HABITACION1 138.00 54.00 54.00

PLANTA1:PASILLO 138.00 48.50 48.50

PLANTA1:BANO 138.00 57.00 57.00

PLANTA1:HABITACION2 138.00 63.00 63.00

PLANTA1:HABITACION3 138.00 59.50 59.50

PLANTA2:ZONA3 138.00 67.00 67.00

PLANTA2:ZONA5 138.00 56.50 56.50

PLANTA2:ZONA1 137.50 38.50 38.50

PLANTA2:ZONA4 138.00 64.50 64.50

PLANTA2:ZONA2 138.00 62.50 62.50

PLANTA3:ZONA1 138.00 66.50 66.50

Facility 154.00 68.00 68.00

Aggregated over the RunPeriods for Weather

Time Setpoint Not Met

During Heating [hr] During Cooling [hr] During Occupied Heating [hr] During Occupied Cooling [hr]

PLANTA0:PASILLO 0.00 0.00 0.00 0.00

PLANTA0:SALON 0.00 1.00 0.00 1.00

PLANTA0:ENTRADA 0.00 0.00 0.00 0.00

PLANTA0:COCINA 0.00 0.00 0.00 0.00

PLANTA0:ASEO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION1 0.00 0.00 0.00 0.00

PLANTA1:PASILLO 0.00 0.00 0.00 0.00

PLANTA1:BANO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION2 0.00 0.00 0.00 0.00

PLANTA1:HABITACION3 0.00 0.00 0.00 0.00

PLANTA2:ZONA3 0.00 0.00 0.00 0.00

PLANTA2:ZONA5 0.00 0.00 0.00 0.00

PLANTA2:ZONA1 0.00 0.00 0.00 0.00

PLANTA2:ZONA4 0.00 0.00 0.00 0.00

PLANTA2:ZONA2 0.00 1.50 0.00 1.50

PLANTA3:ZONA1 0.00 1.50 0.00 1.50

Facility 0.00 2.00 0.00 2.00

Aggregated over the RunPeriods for Weather

Report: Outdoor Air Summary

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Table of Contents

Table of Contents

High Limit Shutoff Control Minimum Outdoor Air [m3/s] Maximum Outdoor Air [m3/s] Return Air Temp Limit Return Air Enthalpy Limit Outdoor Air Temperature Limit [C] Outdoor Air Enthalpy Limit [C]

None

Controller:MechanicalVentilation

Name

Outdoor Air Per

Person [m3/s-

person]

Outdoor Air Per

Area [m3/s-m2]

Outdoor Air

Per Zone

[m3/s]

Outdoor Air

ACH [ach]

Outdoor Air

Method

Outdoor Air

Schedule

Name

Air Distribution

Effectiveness in Cooling

Mode

Air Distribution

Effectiveness in Heating

Mode

Air Distribution

Effectiveness Schedule

Name

None

Page 212: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Average Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.66 0.258 0.697 0.000 0.000

PLANTA0:SALON 1.26 1.55 180.80 0.259 0.699 0.000 0.000

PLANTA0:ENTRADA 0.35 0.43 50.71 0.258 0.697 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.09 0.163 0.692 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.39 0.129 0.691 0.000 0.000

PLANTA1:HABITACION1 0.61 0.74 84.34 0.266 0.698 0.000 0.000

PLANTA1:PASILLO 0.51 0.63 71.52 0.266 0.698 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.37 0.266 0.698 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.08 0.266 0.698 0.000 0.000

PLANTA1:HABITACION3 0.36 0.44 50.29 0.266 0.698 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 14.95 0.349 0.699 0.000 0.000

PLANTA2:ZONA5 0.37 0.45 38.80 0.348 0.698 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.348 0.697 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.22 0.349 0.699 0.000 0.000

PLANTA2:ZONA2 1.08 1.32 114.82 0.349 0.699 0.000 0.000

PLANTA3:ZONA1 0.97 1.19 103.50 0.349 0.699 0.000 0.000

Values shown for a single zone without multipliers

Minimum Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.66 0.156 0.015 0.000 0.000

PLANTA0:SALON 1.26 1.55 180.80 0.156 0.015 0.000 0.000

PLANTA0:ENTRADA 0.35 0.43 50.71 0.156 0.015 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.09 0.060 0.029 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.39 0.047 0.029 0.000 0.000

PLANTA1:HABITACION1 0.61 0.74 84.34 0.160 0.015 0.000 0.000

PLANTA1:PASILLO 0.51 0.63 71.52 0.160 0.015 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.37 0.160 0.015 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.08 0.160 0.015 0.000 0.000

PLANTA1:HABITACION3 0.36 0.44 50.29 0.160 0.015 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 14.95 0.210 0.015 0.000 0.000

PLANTA2:ZONA5 0.37 0.45 38.80 0.210 0.015 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.210 0.015 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.22 0.210 0.015 0.000 0.000

PLANTA2:ZONA2 1.08 1.32 114.82 0.210 0.015 0.000 0.000

PLANTA3:ZONA1 0.97 1.19 103.50 0.210 0.015 0.000 0.000

Values shown for a single zone without multipliers

Report: Object Count Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Surfaces by Class

Total Outdoors

Wall 91 23

Floor 46 9

Roof 44 7

Internal Mass 0 0

Building Detached Shading 36 36

Fixed Detached Shading 0 0

Window 23 23

Door 36 4

Glass Door 0 0

Shading 0 0

Overhang 0 0

Fin 0 0

Tubular Daylighting Device Dome 0 0

Tubular Daylighting Device Diffuser 0 0

HVAC

Count

HVAC Air Loops 0

Conditioned Zones 16

Unconditioned Zones 0

Supply Plenums 0

Return Plenums 0

Input Fields

Count

IDF Objects 2269

Defaulted Fields 213

Fields with Defaults 4175

Autosized Fields 64

Autosizable Fields 64

Autocalculated Fields 98

Page 213: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Sensible Heat Gain Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Annual Building Sensible Heat Gain Components

a

Peak Cooling Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 19-JUL-15:38 0.00 -616.95 0.00 0.00 0.00 0.00 8.60 31.41 16.58 0.00 0.00 38.84 521.52 0.00 -0.00 0.00

PLANTA0:SALON 18-JUL-15:38 0.00 -5822.07 0.00 0.00 0.00 0.00 106.10 387.42 204.56 2799.69 0.00 536.17 1788.14 0.00 -0.00 0.00

PLANTA0:ENTRADA 18-JUL-15:38 0.00 -1165.37 0.00 0.00 0.00 0.00 29.76 108.67 57.38 160.90 0.00 148.78 659.87 0.00 -0.00 0.00

PLANTA0:COCINA 17-JUL-16:45 0.00 -847.64 0.00 0.00 0.00 0.00 0.00 0.00 19.48 641.88 0.00 90.98 95.30 0.00 -0.00 0.00

PLANTA0:ASEO 19-JUL-16:45 0.00 -218.96 0.00 0.00 0.00 0.00 0.00 0.00 0.15 50.74 0.00 11.15 156.91 0.00 -0.00 0.00

PLANTA1:HABITACION1 18-JUL-15:38 0.00 -2121.14 0.00 0.00 0.00 0.00 50.95 186.04 98.23 629.19 0.00 244.10 912.63 0.00 -0.00 0.00

PLANTA1:PASILLO 17-JUL-15:38 0.00 -2634.48 0.00 0.00 0.00 0.00 43.21 157.76 83.30 337.98 0.00 193.40 1818.83 0.00 -0.00 0.00

PLANTA1:BANO 19-JUL-15:38 0.00 -1254.31 0.00 0.00 0.00 0.00 16.53 60.38 31.88 858.47 0.00 70.95 216.11 0.00 -0.00 0.00

PLANTA1:HABITACION2 18-JUL-15:38 0.00 -1625.70 0.00 0.00 0.00 0.00 23.00 84.00 44.35 882.15 0.00 114.81 477.38 0.00 -0.00 0.00

PLANTA1:HABITACION3 19-JUL-15:01 0.00 -2430.34 0.00 0.00 0.00 0.00 10.03 110.93 58.57 831.30 0.00 61.79 1357.72 0.00 -0.00 0.00

PLANTA2:ZONA3 19-JUL-15:38 0.00 -967.29 0.00 0.00 0.00 0.00 11.81 43.13 22.77 845.68 0.00 39.00 4.91 0.00 -0.00 0.00

PLANTA2:ZONA5 18-JUL-15:38 0.00 -1680.30 0.00 0.00 0.00 0.00 30.65 111.93 59.10 432.70 0.00 117.03 928.88 0.00 -0.00 0.00

PLANTA2:ZONA1 18-JUL-15:38 0.00 -538.64 0.00 0.00 0.00 0.00 12.84 46.88 24.75 0.00 0.00 48.30 405.88 0.00 -0.00 0.00

PLANTA2:ZONA4 19-JUL-15:01 0.00 -1381.26 0.00 0.00 0.00 0.00 6.96 75.64 39.94 563.07 0.00 33.00 662.65 0.00 -0.00 0.00

PLANTA2:ZONA2 18-JUL-15:38 0.00 -3204.20 0.00 0.00 0.00 0.00 90.71 331.21 174.88 1368.84 0.00 327.58 910.98 0.00 -0.00 0.00

PLANTA3:ZONA1 18-JUL-15:38 0.00 -3202.18 0.00 0.00 0.00 0.00 81.76 298.56 157.64 1271.29 0.00 294.01 1098.91 0.00 -0.00 0.00

Total Facility

18-JUL-15:38

0.00 -

28303.37

0.00

0.00

0.00

0.00

557.02

2033.94

1093.55

11461.33

0.00

2521.71

10635.81

0.00

0.00

0.00

Peak Heating Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 18-JUL-14:45 11.87 0.00 0.00 0.00 0.00 0.00 4.90 31.41 16.58 0.00 0.00 24.98 0.00 0.00 -0.00 0.00

PLANTA0:SALON 16-JUL-22:02 147.13 0.00 0.00 0.00 0.00 0.00 106.10 387.42 11.03 199.55 0.00 315.58 0.00 0.00 -0.00 0.00

PLANTA0:ENTRADA 16-JUL-22:02 41.81 0.00 0.00 0.00 0.00 0.00 29.76 108.67 3.10 26.18 0.00 89.71 0.00 0.00 -0.00 0.00

PLANTA0:COCINA - 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00

PLANTA0:ASEO - 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00

PLANTA1:HABITACION1 16-JUL-22:02 70.22 0.00 0.00 0.00 0.00 0.00 50.95 186.04 5.30 95.17 0.00 145.89 0.00 0.00 -0.00 0.00

PLANTA1:PASILLO 16-JUL-22:02 59.75 0.00 0.00 0.00 0.00 0.00 43.21 157.76 4.49 30.00 0.00 124.14 0.00 0.00 -0.00 0.00

PLANTA1:BANO 16-JUL-22:02 22.26 0.00 0.00 0.00 0.00 0.00 16.53 60.38 1.72 27.88 0.00 46.21 0.00 0.00 -0.00 0.00

PLANTA1:HABITACION2 16-JUL-22:02 31.05 0.00 0.00 0.00 0.00 0.00 23.00 84.00 2.39 26.90 0.00 64.47 0.00 0.00 -0.00 0.00

PLANTA1:HABITACION3 16-JUL-22:02 41.04 0.00 0.00 0.00 0.00 0.00 30.38 110.93 3.16 57.77 0.00 85.23 0.00 0.00 -0.00 0.00

PLANTA2:ZONA3 16-JUL-22:02 15.34 0.00 0.00 0.00 0.00 0.00 11.81 43.13 1.23 26.80 0.00 24.28 0.00 0.00 -0.00 0.00

PLANTA2:ZONA5 16-JUL-22:02 41.73 0.00 0.00 0.00 0.00 0.00 30.65 111.93 3.19 39.39 0.00 66.12 0.00 0.00 -0.00 0.00

PLANTA2:ZONA1 16-JUL-22:02 17.75 0.00 0.00 0.00 0.00 0.00 12.84 46.88 1.34 0.00 0.00 28.13 0.00 0.00 -0.00 0.00

PLANTA2:ZONA4 16-JUL-22:02 27.38 0.00 0.00 0.00 0.00 0.00 20.71 75.64 2.15 39.20 0.00 43.37 0.00 0.00 -0.00 0.00

PLANTA2:ZONA2 16-JUL-22:02 123.64 0.00 0.00 0.00 0.00 0.00 90.71 331.21 9.43 91.44 0.00 195.94 0.00 0.00 -0.00 0.00

PLANTA3:ZONA1 16-JUL-22:02 110.02 0.00 0.00 0.00 0.00 0.00 81.76 298.56 8.50 152.65 0.00 173.94 0.00 0.00 -0.00 0.00

Total Facility 16-JUL-22:02 371.34 0.00 0.00 0.00 0.00 0.00 557.02 2033.94 77.56 859.77 0.00 1493.89 0.00 0.00 0.00 0.00

Autocalculatable Fields 562

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[kWh]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Heating

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[kWh]

HVAC

Input

Heated

Surface

Heating

[kWh]

HVAC

Input

Cooled

Surface

Cooling

[kWh]

People

Sensible

Heat

Addition

[kWh]

Lights

Sensible

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Addition

[kWh]

Window

Heat

Addition

[kWh]

Interzone

Air

Transfer

Heat

Addition

[kWh]

Infiltration

Heat

Addition

[kWh]

Opaque

Surface

Conduction

and Other

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Removal

[kWh]

Window

Heat

Removal

[kWh]

Interzone

Air

Transfer

Heat

Removal

[kWh]

Infiltration

Heat

Removal

[kWh]

Opaqu

Surfac

Conductio

and Othe

He

Remov

[kWh

PLANTA0:PASILLO 0.153 -21.72 0.000 0.000 0.000 0.000 0.831 3.525 1.170 0.000 0.000 2.481 14.331 0.000 0.000 0.000 -0.77 0.00

PLANTA0:SALON 0.998 -186.30 0.000 0.000 0.000 0.000 9.552 43.488 14.433 197.076 0.000 27.606 0.249 0.000 -14.23 0.000 -10.51 -82.1

PLANTA0:ENTRADA 0.517 -42.47 0.000 0.000 0.000 0.000 2.888 12.199 4.048 12.778 0.000 8.505 5.192 0.000 -1.12 0.000 -2.55 -0.0

PLANTA0:COCINA 0.000 -39.50 0.000 0.000 0.000 0.000 0.414 7.158 10.598 32.791 0.000 4.858 0.008 0.000 -2.47 0.000 -1.84 -12.0

PLANTA0:ASEO 0.000 -6.59 0.000 0.000 0.000 0.000 0.049 0.566 0.090 4.888 0.000 0.809 0.930 0.000 -0.47 0.000 -0.27 -0.0

PLANTA1:HABITACION1 0.702 -88.21 0.000 0.000 0.000 0.000 4.752 20.883 6.931 49.389 0.000 13.536 1.559 0.000 -4.75 0.000 -4.79 -0.0

PLANTA1:PASILLO 0.634 -82.00 0.000 0.000 0.000 0.000 4.064 17.709 5.877 26.498 0.000 11.613 21.411 0.000 -1.83 0.000 -3.98 0.00

PLANTA1:BANO 0.225 -46.34 0.000 0.000 0.000 0.000 1.531 6.777 2.249 37.830 0.000 4.398 0.149 0.000 -1.73 0.000 -1.61 -3.3

PLANTA1:HABITACION2 0.299 -58.82 0.000 0.000 0.000 0.000 2.112 9.429 3.129 37.528 0.000 6.080 4.284 0.000 -1.76 0.000 -2.29 -0.0

PLANTA1:HABITACION3 0.344 -74.66 0.000 0.000 0.000 0.000 2.769 12.451 4.132 53.579 0.000 7.855 0.558 0.000 -4.05 0.000 -2.98 -0.2

PLANTA2:ZONA3 0.136 -36.77 0.000 0.000 0.000 0.000 1.066 4.841 1.607 37.133 0.000 2.339 0.061 0.000 -1.84 0.000 -0.95 -7.5

PLANTA2:ZONA5 0.394 -54.69 0.000 0.000 0.000 0.000 2.834 12.564 4.170 33.505 0.000 6.150 0.004 0.000 -2.43 0.000 -2.26 -0.2

PLANTA2:ZONA1 0.223 -18.38 0.000 0.000 0.000 0.000 1.229 5.262 1.746 0.000 0.000 2.713 8.105 0.000 0.000 0.000 -0.90 -0.0

PLANTA2:ZONA4 0.226 -47.67 0.000 0.000 0.000 0.000 1.867 8.490 2.818 36.210 0.000 4.064 0.049 0.000 -2.85 0.000 -1.64 -1.5

PLANTA2:ZONA2 1.039 -134.95 0.000 0.000 0.000 0.000 8.211 37.179 12.339 76.702 0.000 17.882 0.065 0.000 -5.98 0.000 -7.08 -5.3

PLANTA3:ZONA1 0.793 -140.47 0.000 0.000 0.000 0.000 7.242 33.513 11.122 102.083 0.000 15.721 0.052 0.000 -11.41 0.000 -6.75 -11.8

Total Facility 6.686 -1079.53 0.000 0.000 0.000 0.000 51.413 236.034 86.460 737.990 0.000 136.610 57.007 0.000 -56.91 0.000 -51.17 -124.2

Page 214: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Component Sizing Summary

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

ZoneHVAC:IdealLoadsAirSystem

User-Specified values were used. Design Size values were used if no User-Specified values were provided.

Report: Adaptive Comfort Summary

For: Entire Facility

Timestamp: 2018-12-16 17:05:10

Time Not Meeting the Adaptive Comfort Models during Occupied Hours

Table of Contents

Table of Contents

ASHRAE55 90% Acceptability Limits

[Hours]

ASHRAE55 80% Acceptability Limits

[Hours]

CEN15251 Category I Acceptability Limits

[Hours]

CEN15251 Category II Acceptability Limits

[Hours]

CEN15251 Category III Acceptability Limits

[Hours]

Design Size Maximum Heating Air Flow Rate

[m3/s]

Design Size Maximum Sensible Heating

Capacity [W]

Design Size Maximum Cooling Air Flow Rate

[m3/s]

Design Size Maximum Total Cooling

Capacity [W]

PLANTA0:PASILLO IDEAL LOADS AIR 0.025841 428.40 0.046173 658.54

PLANTA0:SALON IDEAL LOADS AIR 0.196264 3435.10 0.421882 6400.42

PLANTA0:ENTRADA IDEAL LOADS AIR 0.059970 1037.67 0.080564 1268.55

PLANTA0:COCINA IDEAL LOADS AIR 0.020634 478.59 0.057628 907.10

PLANTA0:ASEO IDEAL LOADS AIR 0.002655 61.30 0.014593 223.03

PLANTA1:HABITACION1 IDEAL LOADS

AIR

0.104326

1801.63

0.144679

2268.69

PLANTA1:PASILLO IDEAL LOADS AIR 0.065480 1180.21 0.196923 2823.08

PLANTA1:BANO IDEAL LOADS AIR 0.033371 577.26 0.091741 1306.87

PLANTA1:HABITACION2 IDEAL LOADS

AIR

0.041700

731.70

0.123028

1756.67

PLANTA1:HABITACION3 IDEAL LOADS

AIR

0.066199

1134.50

0.202686

2860.99

PLANTA2:ZONA3 IDEAL LOADS AIR 0.025019 430.14 0.072259 1024.91

PLANTA2:ZONA5 IDEAL LOADS AIR 0.047511 853.22 0.133522 1911.31

PLANTA2:ZONA1 IDEAL LOADS AIR 0.014711 278.92 0.039369 575.83

PLANTA2:ZONA4 IDEAL LOADS AIR 0.044750 767.62 0.116389 1648.56

PLANTA2:ZONA2 IDEAL LOADS AIR 0.136769 2467.45 0.220784 3512.34

PLANTA3:ZONA1 IDEAL LOADS AIR 0.163121 2826.26 0.220475 3468.49

Page 215: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ANEXO 6. RESULTADOS NUMÉRICOS SIMULACIÓN MEJORAS. ANUAL.

Page 216: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Program Version:EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.15 19:50

Tabular Output Report in Format: HTML

Building: Building

Environment: SITIO (01-01:31-12) ** MADRID - ESP IWEC Data WMO#=082210

Simulation Timestamp: 2018-12-15 19:50:39

Report: Annual Building Utility Performance Summary

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Values gathered over 8760.00 hours

Site and Source Energy

Total Energy [kWh] Energy Per Total Building Area [kWh/m2] Energy Per Conditioned Building Area [kWh/m2]

Total Site Energy 41570.54 147.17 147.17

Net Site Energy 41570.54 147.17 147.17

Total Source Energy 110543.82 391.35 391.35

Net Source Energy 110543.82 391.35 391.35

Site to Source Energy Conversion Factors

Site=>Source Conversion Factor

Electricity 3.167

Natural Gas 1.084

District Cooling 1.056

District Heating 3.613

Steam 0.250

Gasoline 1.050

Diesel 1.050

Coal 1.050

Fuel Oil #1 1.050

Fuel Oil #2 1.050

Propane 1.050

Other Fuel 1 1.000

Other Fuel 2 1.000

Building Area

Area [m2]

Total Building Area 282.47

Net Conditioned Building Area 282.47

Unconditioned Building Area 0.00

End Uses

Note: District heat appears to be the principal heating source based on energy usage.

End Uses By Subcategory

Table of Contents

Table of Contents

Subcategory Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating General 0.00 0.00 0.00 0.00 8260.46 0.00

Cooling General 0.00 0.00 0.00 12496.14 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 183.83 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 2267.66 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 636.09 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 373.24 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 29.49 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 1088.92 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 923.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 353.39 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 491.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 649.27 0.00 0.00 0.00 0.00 0.00

Electricity [kWh] Natural Gas [kWh] Additional Fuel [kWh] District Cooling [kWh] District Heating [kWh] Water [m3]

Heating 0.00 0.00 0.00 0.00 8260.46 0.00

Cooling 0.00 0.00 0.00 12496.14 0.00 0.00

Interior Lighting 12307.90 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 4951.44 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 3554.59 63.78

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 17259.34 0.00 0.00 12496.14 11815.05 63.78

Page 217: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 252.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 655.16 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 274.37 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 442.73 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 1938.68 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 1747.55 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 67.85 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 836.98 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 234.78 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 552.63 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 4.69 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 401.91 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 340.83 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 130.43 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 181.47 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 239.64 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 93.17 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 241.81 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 101.27 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 163.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 715.56 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 645.01 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 51.17 0.92

DHW Planta0:Salon 0.00 0.00 0.00 0.00 631.18 11.33

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 177.05 3.18

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 208.02 3.73

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 32.88 0.59

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 303.09 5.44

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 257.03 4.61

DHW Planta1:Bano 0.00 0.00 0.00 0.00 98.36 1.76

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 136.85 2.46

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 180.72 3.24

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 70.26 1.26

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 182.36 3.27

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 76.37 1.37

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 123.23 2.21

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 539.61 9.68

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 486.41 8.73

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Normalized Metrics

Utility Use Per Conditioned Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 43.57 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 44.24 41.83 0.23

Other 17.53 0.00 0.00 0.00 0.00 0.00

Total 61.10 0.00 0.00 44.24 41.83 0.23

Utility Use Per Total Floor Area

Electricity Intensity [kWh/m2] Natural Gas Intensity [kWh/m2] Additional Fuel Intensity [kWh/m2] District Cooling Intensity [kWh/m2] District Heating Intensity [kWh/m2] Water Intensity [m3/m2]

Lighting 43.57 0.00 0.00 0.00 0.00 0.00

HVAC 0.00 0.00 0.00 44.24 41.83 0.23

Other 17.53 0.00 0.00 0.00 0.00 0.00

Total 61.10 0.00 0.00 44.24 41.83 0.23

Electric Loads Satisfied

Electricity [kWh] Percent Electricity [%]

Fuel-Fired Power Generation 0.000 0.00

High Temperature Geothermal* 0.000 0.00

Photovoltaic Power 0.000 0.00

Wind Power 0.000 0.00

Power Conversion 0.000 0.00

Net Decrease in On-Site Storage 0.000 0.00

Total On-Site Electric Sources 0.000 0.00

Electricity Coming From Utility 17259.343 100.00

Surplus Electricity Going To Utility 0.000 0.00

Net Electricity From Utility 17259.343 100.00

Total On-Site and Utility Electric Sources 17259.343 100.00

Page 218: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Total Electricity End Uses 17259.343 100.00

On-Site Thermal Sources

Heat [kWh] Percent Heat [%]

Water-Side Heat Recovery 0.00

Air to Air Heat Recovery for Cooling 0.00

Air to Air Heat Recovery for Heating 0.00

High-Temperature Geothermal* 0.00

Solar Water Thermal 0.00

Solar Air Thermal 0.00

Total On-Site Thermal Sources 0.00

Water Source Summary

Water [m3] Percent Water [%]

Rainwater Collection 0.00 0.00

Condensate Collection 0.00 0.00

Groundwater Well 0.00 0.00

Total On Site Water Sources 0.00 0.00

- - -

Initial Storage 0.00 0.00

Final Storage 0.00 0.00

Change in Storage 0.00 0.00

- - -

Water Supplied by Utility 63.78 100.00

- - -

Total On Site, Change in Storage, and Utility Water Sources 63.78 100.00

Total Water End Uses 63.78 100.00

Setpoint Not Met Criteria

Degrees [deltaC]

Tolerance for Zone Heating Setpoint Not Met Time 1.11

Tolerance for Zone Cooling Setpoint Not Met Time 1.11

Comfort and Setpoint Not Met Summary

Facility [Hours]

Time Setpoint Not Met During Occupied Heating 2.50

Time Setpoint Not Met During Occupied Cooling 5.00

Time Not Comfortable Based on Simple ASHRAE 55-2004 4530.00

Note 1: An asterisk (*) indicates that the feature is not yet implemented.

Table of Contents

Top

Annual Building Utility Performance Summary

Input Verification and Results Summary

Demand End Use Components Summary

Component Sizing Summary

Adaptive Comfort Summary

Climatic Data Summary

Envelope Summary

Lighting Summary

Equipment Summary

HVAC Sizing Summary

System Summary

Outdoor Air Summary

Object Count Summary

Sensible Heat Gain Summary

Report: Input Verification and Results Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

General

Value

Program Version and Build EnergyPlus, Version 8.6.0-198c6a3cff, YMD=2018.12.15 19:50

RunPeriod SITIO (01-01:31-12)

Weather File MADRID - ESP IWEC Data WMO#=082210

Latitude [deg] 40.45

Longitude [deg] -3.5

Elevation [m] 582.00

Time Zone 1.00

North Axis Angle [deg] 0.00

Rotation for Appendix G [deg] 0.00

Hours Simulated [hrs] 8760.00

ENVELOPE

Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.75 29.22 0.00 33.03 11.49

Gross Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Page 219: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Above Ground Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Conditioned Window-Wall Ratio

Total North (315 to 45 deg) East (45 to 135 deg) South (135 to 225 deg) West (225 to 315 deg)

Gross Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Above Ground Wall Area [m2] 321.79 82.09 0.00 82.09 157.61

Window Opening Area [m2] 73.75 29.22 0.00 33.03 11.49

Gross Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Above Ground Window-Wall Ratio [%] 22.92 35.60 0.00 40.24 7.29

Skylight-Roof Ratio

Total

Gross Roof Area [m2] 94.67

Skylight Area [m2] 0.00

Skylight-Roof Ratio [%] 0.00

PERFORMANCE

Zone Summary

Area

[m2]

Conditioned

(Y/N)

Part of Total

Floor Area (Y/N)

Volume

[m3]

Multipliers Above Ground Gross

Wall Area [m2]

Underground Gross

Wall Area [m2]

Window Glass

Area [m2]

Opening

Area [m2]

Lighting

[W/m2]

People [m2

per person]

Plug and

Process [W/m2]

PLANTA0:PASILLO 4.19 Yes Yes 14.66 1.00 5.28 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA0:SALON 51.66 Yes Yes 180.80 1.00 53.00 0.00 17.63 18.74 7.5000 33.33 4.4000

PLANTA0:ENTRADA 14.49 Yes Yes 50.71 1.00 10.48 0.00 1.54 1.83 7.5000 33.33 4.4000

PLANTA0:COCINA 9.74 Yes Yes 34.09 1.00 24.65 0.00 2.92 3.59 15.0000 42.19 30.2800

PLANTA0:ASEO 1.54 Yes Yes 5.39 1.00 2.98 0.00 0.58 0.71 7.5000 53.37 1.6700

PLANTA1:HABITACION1 24.81 Yes Yes 84.34 1.00 40.67 0.00 6.26 6.97 7.5000 33.33 4.4000

PLANTA1:PASILLO 21.04 Yes Yes 71.52 1.00 5.67 0.00 2.25 2.55 7.5000 33.33 4.4000

PLANTA1:BANO 8.05 Yes Yes 27.37 1.00 8.75 0.00 1.97 2.21 7.5000 33.33 4.4000

PLANTA1:HABITACION2 11.20 Yes Yes 38.08 1.00 11.90 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA1:HABITACION3 14.79 Yes Yes 50.29 1.00 29.40 0.00 4.60 5.05 7.5000 33.33 4.4000

PLANTA2:ZONA3 5.75 Yes Yes 14.95 1.00 7.29 0.00 1.95 2.19 7.5000 33.33 4.4000

PLANTA2:ZONA5 14.92 Yes Yes 38.80 1.00 8.15 0.00 2.83 3.25 7.5000 33.33 4.4000

PLANTA2:ZONA1 6.25 Yes Yes 16.25 1.00 0.00 0.00 0.00 0.00 7.5000 33.33 4.4000

PLANTA2:ZONA4 10.09 Yes Yes 26.22 1.00 20.79 0.00 3.11 3.44 7.5000 33.33 4.4000

PLANTA2:ZONA2 44.16 Yes Yes 114.82 1.00 38.12 0.00 6.75 7.41 7.5000 33.33 4.4000

PLANTA3:ZONA1 39.81 Yes Yes 103.50 1.00 54.65 0.00 12.66 13.61 7.5000 33.33 4.4000

Total 282.47

871.78

321.79 0.00 67.00 73.75 7.7586 33.65 5.2774

Conditioned Total 282.47

871.78

321.79 0.00 67.00 73.75 7.7586 33.65 5.2774

Unconditioned Total 0.00

0.00

0.00 0.00 0.00 0.00

Not Part of Total 0.00

0.00

0.00 0.00 0.00 0.00

Report: Demand End Use Components Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

End Uses

Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Time of Peak 01-JAN-15:30 - - 20-AUG-15:00 23-DEC-07:30 02-JAN-09:00

Heating 0.00 0.00 0.00 0.00 15393.77 0.00

Cooling 0.00 0.00 0.00 30902.52 0.00 0.00

Interior Lighting 2033.94 0.00 0.00 0.00 0.00 0.00

Exterior Lighting 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment 1212.88 0.00 0.00 0.00 0.00 0.00

Exterior Equipment 0.00 0.00 0.00 0.00 0.00 0.00

Fans 0.00 0.00 0.00 0.00 0.00 0.00

Pumps 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection 0.00 0.00 0.00 0.00 0.00 0.00

Humidification 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems 0.00 0.00 0.00 0.00 526.35 0.00

Refrigeration 0.00 0.00 0.00 0.00 0.00 0.00

Generators 0.00 0.00 0.00 0.00 0.00 0.00

Total End Uses 3246.82 0.00 0.00 30902.52 15920.12 0.00

End Uses By Subcategory

Subcategory Electricity [W] Natural Gas [W] Propane [W] District Cooling [W] District Heating [W] Water [m3/s]

Heating General 0.00 0.00 0.00 0.00 15393.77 0.00

Cooling General 0.00 0.00 0.00 30902.52 0.00 0.00

Interior Lighting ELECTRIC EQUIPMENT#Planta0:Pasillo#GeneralLights 31.41 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#GeneralLights 387.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#GeneralLights 108.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#GeneralLights 0.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#GeneralLights 186.04 0.00 0.00 0.00 0.00 0.00

Page 220: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

ELECTRIC EQUIPMENT#Planta1:Pasillo#GeneralLights 157.76 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#GeneralLights 60.38 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#GeneralLights 84.00 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#GeneralLights 110.93 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#GeneralLights 43.13 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#GeneralLights 111.93 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#GeneralLights 46.88 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#GeneralLights 75.64 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#GeneralLights 331.21 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#GeneralLights 298.56 0.00 0.00 0.00 0.00 0.00

Exterior Lighting General 0.00 0.00 0.00 0.00 0.00 0.00

Interior Equipment ELECTRIC EQUIPMENT#Planta0:Pasillo#02 18.43 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Salon#02 227.29 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Entrada#02 63.75 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Cocina#05 19.48 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta0:Aseo#05 0.15 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion1#02 109.14 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Pasillo#02 92.55 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Bano#02 35.42 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion2#02 49.28 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta1:Habitacion3#02 65.08 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona3#02 25.30 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona5#02 65.67 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona1#02 27.50 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona4#02 44.37 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta2:Zona2#02 194.31 0.00 0.00 0.00 0.00 0.00

ELECTRIC EQUIPMENT#Planta3:Zona1#02 175.16 0.00 0.00 0.00 0.00 0.00

Exterior Equipment General 0.00 0.00 0.00 0.00 0.00 0.00

Fans General 0.00 0.00 0.00 0.00 0.00 0.00

Pumps General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Rejection General 0.00 0.00 0.00 0.00 0.00 0.00

Humidification General 0.00 0.00 0.00 0.00 0.00 0.00

Heat Recovery General 0.00 0.00 0.00 0.00 0.00 0.00

Water Systems DHW Planta0:Pasillo 0.00 0.00 0.00 0.00 5.45 0.00

DHW Planta0:Salon 0.00 0.00 0.00 0.00 67.18 0.00

DHW Planta0:Entrada 0.00 0.00 0.00 0.00 18.84 0.00

DHW Planta0:Cocina 0.00 0.00 0.00 0.00 149.98 0.00

DHW Planta0:Aseo 0.00 0.00 0.00 0.00 23.70 0.00

DHW Planta1:Habitacion1 0.00 0.00 0.00 0.00 32.26 0.00

DHW Planta1:Pasillo 0.00 0.00 0.00 0.00 27.35 0.00

DHW Planta1:Bano 0.00 0.00 0.00 0.00 10.47 0.00

DHW Planta1:Habitacion2 0.00 0.00 0.00 0.00 14.56 0.00

DHW Planta1:Habitacion3 0.00 0.00 0.00 0.00 19.23 0.00

DHW Planta2:Zona3 0.00 0.00 0.00 0.00 7.48 0.00

DHW Planta2:Zona5 0.00 0.00 0.00 0.00 19.41 0.00

DHW Planta2:Zona1 0.00 0.00 0.00 0.00 8.13 0.00

DHW Planta2:Zona4 0.00 0.00 0.00 0.00 13.11 0.00

DHW Planta2:Zona2 0.00 0.00 0.00 0.00 57.43 0.00

DHW Planta3:Zona1 0.00 0.00 0.00 0.00 51.77 0.00

Refrigeration General 0.00 0.00 0.00 0.00 0.00 0.00

Generators General 0.00 0.00 0.00 0.00 0.00 0.00

Report: Climatic Data Summary

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

SizingPeriod:DesignDay

Weather Statistics File

Value

None

Report: Envelope Summary

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Opaque Exterior

Table of Contents

Table of Contents

Construction

Reflectance U-Factor with Film [W/m2-

K]

U-Factor no Film [W/m2-

K]

Gross Area

[m2]

Net Area

[m2]

Azimuth

[deg]

Tilt

[deg]

Cardinal

Direction

Maximum Dry Bulb [C] Daily Temperature Range [deltaC] Humidity Value Humidity Type Wind Speed [m/s] Wind Direction

SUMMER DESIGN DAY IN SITIO (01-01:31-12) JUL 38.20 17.50 20.30 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (01-01:31-12) AGO 38.00 17.40 19.90 Wetbulb [C] 0.00 0.00

SUMMER DESIGN DAY IN SITIO (01-01:31-12) SEP 34.90 16.80 19.30 Wetbulb [C] 0.00 0.00

WINTER DESIGN DAY IN SITIO (01-01:31-12) -4.00 0.00 -4.00 Wetbulb [C] 11.60 0.00

Page 221: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

PLANTA0:PASILLO_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 5.28 3.51 270.00 90.00 W

PLANTA0:PASILLO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

5.43

5.43

0.00

180.00

PLANTA0:SALON_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 29.83 28.46 270.00 90.00 W

PLANTA0:SALON_WALL_7_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 23.17 5.80 180.00 90.00 S

PLANTA0:SALON_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

30.68

30.68

0.00

180.00

PLANTA0:SALON_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

26.95

26.95

0.00

180.00

PLANTA0:ENTRADA_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 10.48 6.71 0.00 90.00 N

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

0.03

0.03

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

0.64

0.64

0.00

180.00

PLANTA0:ENTRADA_GROUNDFLOOR_0_0_2 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

16.10

16.10

0.00

180.00

PLANTA0:COCINA_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 9.71 7.44 0.00 90.00 N

PLANTA0:COCINA_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 14.94 13.62 270.00 90.00 W

PLANTA0:COCINA_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

7.68

7.68

0.00

180.00

PLANTA0:COCINA_GROUNDFLOOR_0_0_1 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

4.80

4.80

0.00

180.00

PLANTA0:ASEO_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 2.98 2.26 0.00 90.00 N

PLANTA0:ASEO_GROUNDFLOOR_0_0_0 SUELO SOBRE TERRENO TFM

MEJORAS

0.60

0.300

0.315

2.35

2.35

0.00

180.00

PLANTA1:HABITACION1_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 23.17 16.20 0.00 90.00 N

PLANTA1:HABITACION1_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.50 17.50 270.00 90.00 W

PLANTA1:PASILLO_WALL_10_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 5.67 3.12 180.00 90.00 S

PLANTA1:BANO_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 8.75 6.54 270.00 90.00 W

PLANTA1:HABITACION2_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 11.90 9.71 270.00 90.00 W

PLANTA1:HABITACION3_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 11.90 11.90 270.00 90.00 W

PLANTA1:HABITACION3_WALL_7_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.50 12.45 180.00 90.00 S

PLANTA2:ZONA3_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 7.29 5.10 270.00 90.00 W

PLANTA2:ZONA3_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 7.29 7.29 180.00 0.00

PLANTA2:ZONA5_WALL_6_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 8.15 4.91 180.00 90.00 S

PLANTA2:ZONA5_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 11.07 11.07 180.00 0.00

PLANTA2:ZONA5_ROOF_1_0_1 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 6.45 6.45 180.00 0.00

PLANTA2:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 7.29 7.29 180.00 0.00

PLANTA2:ZONA4_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 11.07 11.07 270.00 90.00 W

PLANTA2:ZONA4_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 9.72 6.28 180.00 90.00 S

PLANTA2:ZONA4_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 12.91 12.91 180.00 0.00

PLANTA2:ZONA2_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.87 10.72 0.00 90.00 N

PLANTA2:ZONA2_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 20.25 18.04 270.00 90.00 W

PLANTA2:ZONA2_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 3.31 3.31 180.00 0.00

PLANTA3:ZONA1_WALL_3_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.87 5.63 0.00 90.00 N

PLANTA3:ZONA1_WALL_4_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 18.90 18.90 270.00 90.00 W

PLANTA3:ZONA1_WALL_5_0_0 MURO TFM MEJORAS 0.40 0.323 0.340 17.87 14.54 180.00 90.00 S

PLANTA3:ZONA1_ROOF_1_0_0 CUBIERTA PLANA TFM MEJORAS 0.40 0.243 0.251 46.34 46.34 180.00 0.00

Exterior Fenestration

Construction

Glass

Area

[m2]

Frame

Area

[m2]

Divider

Area

[m2]

Area of

One

Opening

[m2]

Area of

Multiplied

Openings

[m2]

Glass

U-

Factor

[W/m2-

K]

Glass

SHGC

Glass Visible

Transmittance

Frame

Conductance

[W/m2-K]

Divider

Conductance

[W/m2-K]

Shade

Control

Parent Surface

Azimut

[de

PLANTA0:SALON_WALL_6_0_0_0_0_0_WIN 1001 1.19 0.18 0.00 1.37 1.37 2.617 0.691 0.771 9.500 0.000 No PLANTA0:SALON_WALL_6_0_0 270.

PLANTA0:SALON_WALL_7_0_0_0_0_0_WIN 1001 13.59 0.62 0.45 14.66 14.66 2.617 0.691 0.771 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:SALON_WALL_7_0_0_1_0_1_WIN 1001 2.36 0.32 0.03 2.70 2.70 2.617 0.691 0.771 9.500 9.500 No PLANTA0:SALON_WALL_7_0_0 180.

PLANTA0:ENTRADA_WALL_3_0_0_1_0_1_WIN 1001 0.70 0.14 0.00 0.84 0.84 2.617 0.691 0.771 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:ENTRADA_WALL_3_0_0_2_0_2_WIN 1001 0.84 0.15 0.00 0.99 0.99 2.617 0.691 0.771 9.500 0.000 No PLANTA0:ENTRADA_WALL_3_0_0 0.

PLANTA0:COCINA_WALL_5_0_0_0_0_0_WIN 1001 2.00 0.25 0.02 2.27 2.27 2.617 0.691 0.771 9.500 9.500 No PLANTA0:COCINA_WALL_5_0_0 0.

PLANTA0:COCINA_WALL_6_0_0_0_0_0_WIN 1001 0.22 0.11 0.00 0.33 1.32 2.617 0.691 0.771 9.500 0.000 No PLANTA0:COCINA_WALL_6_0_0 270.

PLANTA0:ASEO_WALL_3_0_0_0_0_0_WIN 1001 0.58 0.13 0.00 0.71 0.71 2.617 0.691 0.771 9.500 0.000 No PLANTA0:ASEO_WALL_3_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_0_0_0_WIN 1001 2.22 0.30 0.05 2.57 2.57 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:HABITACION1_WALL_5_0_0_1_0_1_WIN 1001 3.94 0.40 0.06 4.40 4.40 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION1_WALL_5_0_0 0.

PLANTA1:PASILLO_WALL_10_0_0_0_0_0_WIN 1001 2.22 0.30 0.03 2.55 2.55 2.617 0.691 0.771 9.500 9.500 No PLANTA1:PASILLO_WALL_10_0_0 180.

PLANTA1:BANO_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 2.617 0.691 0.771 9.500 9.500 No PLANTA1:BANO_WALL_4_0_0 270.

PLANTA1:HABITACION2_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION2_WALL_4_0_0 270.

PLANTA1:HABITACION3_WALL_7_0_0_0_0_0_WIN 1001 4.54 0.45 0.06 5.05 5.05 2.617 0.691 0.771 9.500 9.500 No PLANTA1:HABITACION3_WALL_7_0_0 180.

PLANTA2:ZONA3_WALL_4_0_0_0_0_0_WIN 1001 1.93 0.24 0.02 2.19 2.19 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA3_WALL_4_0_0 270.

PLANTA2:ZONA5_WALL_6_0_0_0_0_0_WIN 1001 1.62 0.24 0.02 1.87 1.87 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA5_WALL_6_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.38 1.38 2.617 0.691 0.771 9.500 0.000 No PLANTA2:ZONA5_WALL_6_0_0 180.

PLANTA2:ZONA4_WALL_5_0_0_0_0_0_WIN 1001 3.07 0.33 0.04 3.44 3.44 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA4_WALL_5_0_0 180.

PLANTA2:ZONA2_WALL_3_0_0_1_0_1_WIN 1001 4.71 0.42 0.07 5.20 5.20 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA2_WALL_3_0_0 0.

PLANTA2:ZONA2_WALL_4_0_0_0_0_0_WIN 1001 1.95 0.24 0.02 2.21 2.21 2.617 0.691 0.771 9.500 9.500 No PLANTA2:ZONA2_WALL_4_0_0 270.

PLANTA3:ZONA1_WALL_3_0_0_0_0_0_WIN 1001 1.74 0.25 0.05 2.04 2.04 2.617 0.691 0.771 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_3_0_0_1_0_1_WIN 1001 9.38 0.52 0.30 10.20 10.20 2.617 0.691 0.771 9.500 9.500 No PLANTA3:ZONA1_WALL_3_0_0 0.

PLANTA3:ZONA1_WALL_5_0_0_1_0_1_WIN 1001 1.19 0.18 0.00 1.38 1.38 2.617 0.691 0.771 9.500 0.000 No PLANTA3:ZONA1_WALL_5_0_0 180.

Total or Average

73.75 2.617 0.691 0.771

North Total or Average

29.22 2.617 0.691 0.771

Non-North Total or Average

44.53 2.617 0.691 0.771

Interior Fenestration

Construction Area of One Opening [m2] Area of Openings [m2] Glass U-Factor [W/m2-K] Glass SHGC Glass Visible Transmittance Parent Surface

Page 222: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Total or Average

0.00 - - -

Exterior Door

Construction U-Factor with Film [W/m2-K] U-Factor no Film [W/m2-K] Gross Area [m2] Parent Surface

PLANTA0:PASILLO_WALL_6_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.77 PLANTA0:PASILLO_WALL_6_0_0

PLANTA0:ENTRADA_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.94 PLANTA0:ENTRADA_WALL_3_0_0

PLANTA2:ZONA2_WALL_3_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.96 PLANTA2:ZONA2_WALL_3_0_0

PLANTA3:ZONA1_WALL_5_0_0_0_0_0_DOOR PUERTA EXTERIOR DEL PROYECTO 2.995 5.429 1.95 PLANTA3:ZONA1_WALL_5_0_0

Report: Lighting Summary

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Interior Lighting

Daylighting

Zone Daylighting Type Control Type Fraction Controlled Lighting Installed in Zone [W] Lighting Controlled [W]

None

Exterior Lighting

Report: Equipment Summary

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Central Plant

Type Nominal Capacity [W] Nominal Efficiency [W/W] IPLV in SI Units [W/W] IPLV in IP Units [Btu/W-h]

None

Cooling Coils

DX Cooling Coils

DX Cooling Coil ASHRAE 127 Standard Ratings Report

Table of Contents

Table of Contents

DX Cooling

Coil Type

Rated Net Cooling

Capacity Test A [W]

Rated Electric Power

Test A [W]

Rated Net Cooling

Capacity Test B [W]

Rated Electric Power

Test B [W]

Rated Net Cooling

Capacity Test C [W]

Rated Electric Power

Test C [W]

Rated Net Cooling

Capacity Test D [W]

Rated Electric Power

Test D [W]

None

Zone

Lighting

Power

Density

[W/m2]

Zone

Area

[m2]

Total

Power

[W]

End Use Subcategory

Schedule Name

Scheduled

Hours/Week

[hr]

Hours/Week

> 1% [hr]

Full Load

Hours/Week

[hr]

Return

Air

Fraction

Conditioned

(Y/N)

Consump

[k

PLANTA0:PASILLO

GENERAL LIGHTING

PLANTA0:PASILLO

7.5000

4.19

31.41 ELECTRIC

EQUIPMENT#Planta0:Pasillo#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

18

PLANTA0:SALON

GENERAL LIGHTING

PLANTA0:SALON

7.5000

51.66

387.42 ELECTRIC

EQUIPMENT#Planta0:Salon#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

226

PLANTA0:ENTRADA

GENERAL LIGHTING

PLANTA0:ENTRADA

7.5000

14.49

108.67 ELECTRIC

EQUIPMENT#Planta0:Entrada#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

63

PLANTA0:COCINA

GENERAL LIGHTING

PLANTA0:COCINA

15.0000

9.74

146.08 ELECTRIC

EQUIPMENT#Planta0:Cocina#GeneralLights

DWELL_DOMKITCHEN_LIGHT

49.00

49.00

49.00

0.0000

Y

37

PLANTA0:ASEO

GENERAL LIGHTING

PLANTA0:ASEO

7.5000

1.54

11.54 ELECTRIC

EQUIPMENT#Planta0:Aseo#GeneralLights

DWELL_DOMBATH_LIGHT

49.00

49.00

49.00

0.0000

Y

2

PLANTA1:HABITACION1

GENERAL LIGHTING

PLANTA1:HABITACION1

7.5000

24.81

186.04 ELECTRIC

EQUIPMENT#Planta1:Habitacion1#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

108

PLANTA1:PASILLO

GENERAL LIGHTING

PLANTA1:PASILLO

7.5000

21.04

157.76 ELECTRIC

EQUIPMENT#Planta1:Pasillo#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

92

PLANTA1:BANO

GENERAL LIGHTING

PLANTA1:BANO

7.5000

8.05

60.38 ELECTRIC

EQUIPMENT#Planta1:Bano#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

35

PLANTA1:HABITACION2

GENERAL LIGHTING

PLANTA1:HABITACION2

7.5000

11.20

84.00 ELECTRIC

EQUIPMENT#Planta1:Habitacion2#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

49

PLANTA1:HABITACION3

GENERAL LIGHTING

PLANTA1:HABITACION3

7.5000

14.79

110.93 ELECTRIC

EQUIPMENT#Planta1:Habitacion3#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

64

PLANTA2:ZONA3

GENERAL LIGHTING

PLANTA2:ZONA3

7.5000

5.75

43.13 ELECTRIC

EQUIPMENT#Planta2:Zona3#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

25

PLANTA2:ZONA5

GENERAL LIGHTING

PLANTA2:ZONA5

7.5000

14.92

111.93 ELECTRIC

EQUIPMENT#Planta2:Zona5#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

65

PLANTA2:ZONA1

GENERAL LIGHTING

PLANTA2:ZONA1

7.5000

6.25

46.88 ELECTRIC

EQUIPMENT#Planta2:Zona1#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

27

PLANTA2:ZONA4

GENERAL LIGHTING

PLANTA2:ZONA4

7.5000

10.09

75.64 ELECTRIC

EQUIPMENT#Planta2:Zona4#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

44

PLANTA2:ZONA2

GENERAL LIGHTING

PLANTA2:ZONA2

7.5000

44.16

331.21 ELECTRIC

EQUIPMENT#Planta2:Zona2#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

193

PLANTA3:ZONA1

GENERAL LIGHTING

PLANTA3:ZONA1

7.5000

39.81

298.56 ELECTRIC

EQUIPMENT#Planta3:Zona1#GeneralLights

RESIDENCIAL TFM

112.25

138.00

112.24

0.0000

Y

174

Interior Lighting Total

7.7586 282.47 2191.57

1230

Total Watts Astronomical Clock/Schedule Schedule Name Scheduled Hours/Week [hr] Hours/Week > 1% [hr] Full Load Hours/Week [hr] Consumption [kWh]

Exterior Lighting Total 0.00

0.00

Type Design Coil Load

[W]

Nominal Total Capacity

[W]

Nominal Sensible Capacity

[W]

Nominal Latent Capacity

[W]

Nominal Sensible Heat

Ratio

Nominal Efficiency

[W/W]

Nominal Coil UA Value

[W/C]

Nominal Coil Surface Area

[m2]

None

DX Cooling Coil Type Standard Rated Net Cooling Capacity [W] Standard Rated Net COP [W/W] EER [Btu/W-h] SEER [Btu/W-h] IEER [Btu/W-h]

None

Page 223: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

DX Heating Coils

DX Heating Coil Type High Temperature Heating (net) Rating Capacity [W] Low Temperature Heating (net) Rating Capacity [W] HSPF [Btu/W-h] Region Number

None

Heating Coils

Type Design Coil Load [W] Nominal Total Capacity [W] Nominal Efficiency [W/W]

None

Fans

Type Total Efficiency [W/W] Delta Pressure [pa] Max Air Flow Rate [m3/s] Rated Electric Power [W] Rated Power Per Max Air Flow Rate [W-s/m3] Motor Heat In Air Fraction End Use

None

Pumps

Type Control Head [pa] Water Flow [m3/s] Electric Power [W] Power Per Water Flow Rate [W-s/m3] Motor Efficiency [W/W]

None

Service Water Heating

Type Storage Volume [m3] Input [W] Thermal Efficiency [W/W] Recovery Efficiency [W/W] Energy Factor

None

Report: HVAC Sizing Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Zone Sensible Cooling

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

551.67

634.42

151.50

0.040

0.046

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

AGO

8/15 16:30:00

24.00

24.00

0.00774

36.26

0.00819

0.001

0.00

PLANTA0:SALON

5652.58

6500.46

125.84

0.367

0.422

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

SEP

9/15 16:00:00

24.00

24.00

0.00803

33.89

0.00864

0.015

0.00

PLANTA0:ENTRADA

1027.52

1181.65

81.55

0.070

0.081

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 16:00:00

24.00

24.00

0.00809

37.15

0.00867

0.004

0.00

PLANTA0:COCINA

745.89

857.77

88.08

0.050

0.058

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 19:00:00

25.00

25.00

0.00784

31.38

0.00867

0.003

0.00

PLANTA0:ASEO

188.88

217.22

141.12

0.013

0.015

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 17:30:00

25.00

25.00

0.00772

34.88

0.00867

0.000

0.00

PLANTA1:HABITACION1

1865.88

2145.76

86.51

0.126

0.145

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 16:00:00

24.00

24.00

0.00808

37.15

0.00867

0.007

0.00

PLANTA1:PASILLO

2352.76

2705.67

128.63

0.171

0.197

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

SEP

9/15 16:30:00

24.00

24.00

0.00776

33.22

0.00864

0.006

0.00

PLANTA1:BANO

1096.11

1260.53

156.59

0.080

0.092

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

AGO

8/15 17:00:00

24.00

24.00

0.00774

35.56

0.00819

0.002

0.00

PLANTA1:HABITACION2

1469.89

1690.37

150.93

0.107

0.123

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

SEP

9/15 17:00:00

24.00

24.00

0.00777

32.55

0.00864

0.003

0.00

PLANTA1:HABITACION3

2421.62

2784.86

188.29

0.176

0.203

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

SEP

9/15 16:30:00

24.00

24.00

0.00773

33.22

0.00864

0.004

0.00

PLANTA2:ZONA3

863.34

992.84

172.67

0.063

0.072

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

AGO

8/15 17:00:00

24.00

24.00

0.00773

35.56

0.00819

0.002

0.00

PLANTA2:ZONA5

1595.26

1834.55

122.93

0.116

0.134

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

9/15 16:30:00

24.00

24.00

0.00775

33.22

0.00864

0.004

0.00

Page 224: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

SEP

PLANTA2:ZONA1

470.36

540.92

86.55

0.034

0.039

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

AGO

8/15 16:30:00

24.00

24.00

0.00776

36.26

0.00819

0.002

0.00

PLANTA2:ZONA4

1390.57

1599.15

158.57

0.101

0.116

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

SEP

9/15 16:30:00

24.00

24.00

0.00773

33.22

0.00864

0.003

0.00

PLANTA2:ZONA2

2871.48

3302.20

74.77

0.192

0.221

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 16:00:00

24.00

24.00

0.00811

37.15

0.00867

0.013

0.00

PLANTA3:ZONA1

2869.58

3300.02

82.90

0.192

0.220

SUMMER

DESIGN

DAY IN

SITIO (01-

01:31-12)

JUL

7/15 16:00:00

24.00

24.00

0.00808

37.15

0.00867

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

Zone Sensible Heating

Calculated

Design

Load [W]

User

Design

Load

[W]

User

Design

Load per

Area

[W/m2]

Calculated

Design Air

Flow

[m3/s]

User

Design

Air Flow

[m3/s]

Design

Day

Name

Date/Time Of

Peak

{TIMESTAMP}

Thermostat

Setpoint

Temperature

at Peak Load

[C]

Indoor

Temperature

at Peak Load

[C]

Indoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Outdoor

Temperature

at Peak Load

[C]

Outdoor Humidity

Ratio at Peak Load

[kgWater/kgAir]

Minimum

Outdoor

Air Flow

Rate

[m3/s]

Heat

Gain

Rate

from

DOAS

[W]

PLANTA0:PASILLO

312.38

390.48

93.25

0.021

0.026

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01395

-4.00

0.00289

0.001

0.00

PLANTA0:SALON

2373.93

2967.42

57.45

0.157

0.196

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.98

0.01312

-4.00

0.00289

0.015

0.00

PLANTA0:ENTRADA

725.17

906.46

62.56

0.048

0.060

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01328

-4.00

0.00289

0.004

0.00

PLANTA0:COCINA

326.29

407.86

41.88

0.017

0.021

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

18.00

17.98

0.01175

-4.00

0.00289

0.003

0.00

PLANTA0:ASEO

41.97

52.46

34.08

0.002

0.003

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

18.00

17.99

0.01117

-4.00

0.00289

0.000

0.00

PLANTA1:HABITACION1

1261.62

1577.03

63.58

0.083

0.104

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01337

-4.00

0.00289

0.007

0.00

PLANTA1:PASILLO

791.79

989.73

47.05

0.052

0.065

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01276

-4.00

0.00289

0.006

0.00

PLANTA1:BANO

403.49

504.36

62.65

0.027

0.033

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01334

-4.00

0.00289

0.002

0.00

PLANTA1:HABITACION2

504.23

630.28

56.28

0.033

0.042

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01314

-4.00

0.00289

0.003

0.00

PLANTA1:HABITACION3

800.45

1000.57

67.65

0.053

0.066

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01348

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA3

302.46

378.07

65.75

0.020

0.025

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01387

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA5

574.46

718.07

48.11

0.038

0.048

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01335

-4.00

0.00289

0.004

0.00

PLANTA2:ZONA1

177.86

222.32

35.57

0.012

0.015

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01273

-4.00

0.00289

0.002

0.00

PLANTA2:ZONA4

541.03

676.29

67.06

0.036

0.045

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01390

-4.00

0.00289

0.003

0.00

PLANTA2:ZONA2

1654.07

2067.58

46.82

0.109

0.137

WINTER

DESIGN

DAY IN

SITIO

(01-

1/15 24:00:00

22.00

21.98

0.01330

-4.00

0.00289

0.013

0.00

Page 225: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

01:31-12)

PLANTA3:ZONA1

1972.64

2465.80

61.94

0.130

0.163

WINTER

DESIGN

DAY IN

SITIO

(01-

01:31-12)

1/15 24:00:00

22.00

21.99

0.01378

-4.00

0.00289

0.012

0.00

The Design Load is the zone sensible load only. It does not include any system effects or ventilation loads.

System Design Air Flow Rates

Calculated cooling [m3/s] User cooling [m3/s] Calculated heating [m3/s] User heating [m3/s]

None

Plant Loop Coincident Design Fluid Flow Rate Adjustments

Previous Design Volume

Flow Rate [m3/s]

Algorithm Volume Flow

Rate [m3/s]

Coincident Design Volume

Flow Rate [m3/s]

Coincident Size

Adjusted

Peak Sizing

Period Name

Peak Day into Period

{TIMESTAMP}[day]

Peak Hour Of Day

{TIMESTAMP}[hr]

Peak Step Start Minute

{TIMESTAMP}[min]

None

Report: System Summary

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Economizer

Demand Controlled Ventilation using Controller:MechanicalVentilation

Time Not Comfortable Based on Simple ASHRAE 55-2004

Winter Clothes [hr] Summer Clothes [hr] Summer or Winter Clothes [hr]

PLANTA0:PASILLO 4246.00 4408.00 1964.00

PLANTA0:SALON 4576.00 4411.50 2245.50

PLANTA0:ENTRADA 4163.50 4483.00 2024.50

PLANTA0:COCINA 1949.00 1370.50 870.00

PLANTA0:ASEO 1878.00 1453.00 945.50

PLANTA1:HABITACION1 4606.50 4577.00 2402.00

PLANTA1:PASILLO 4133.00 4308.50 1744.00

PLANTA1:BANO 4318.00 4589.50 2094.50

PLANTA1:HABITACION2 4412.50 4468.00 2093.00

PLANTA1:HABITACION3 4617.50 4347.50 2229.00

PLANTA2:ZONA3 4572.50 4665.00 2408.00

PLANTA2:ZONA5 4383.00 4333.00 1976.00

PLANTA2:ZONA1 4010.50 4316.00 1626.00

PLANTA2:ZONA4 4664.50 4462.50 2336.00

PLANTA2:ZONA2 4679.50 4712.00 2485.00

PLANTA3:ZONA1 5054.00 4836.50 2983.50

Facility 7089.50 6171.50 4530.00

Aggregated over the RunPeriods for Weather

Time Setpoint Not Met

During Heating [hr] During Cooling [hr] During Occupied Heating [hr] During Occupied Cooling [hr]

PLANTA0:PASILLO 0.00 0.00 0.00 0.00

PLANTA0:SALON 0.00 3.50 0.00 3.50

PLANTA0:ENTRADA 2.00 0.50 2.00 0.50

PLANTA0:COCINA 0.00 0.00 0.00 0.00

PLANTA0:ASEO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION1 2.50 2.00 2.50 2.00

PLANTA1:PASILLO 0.00 0.00 0.00 0.00

PLANTA1:BANO 0.00 0.00 0.00 0.00

PLANTA1:HABITACION2 0.00 0.00 0.00 0.00

PLANTA1:HABITACION3 0.00 0.00 0.00 0.00

PLANTA2:ZONA3 0.00 0.00 0.00 0.00

PLANTA2:ZONA5 0.00 0.00 0.00 0.00

PLANTA2:ZONA1 0.00 0.00 0.00 0.00

PLANTA2:ZONA4 0.00 0.00 0.00 0.00

PLANTA2:ZONA2 1.50 3.50 1.50 3.50

PLANTA3:ZONA1 1.50 3.50 1.50 3.50

Facility 2.50 5.00 2.50 5.00

Aggregated over the RunPeriods for Weather

Report: Outdoor Air Summary

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Average Outdoor Air During Occupied Hours

Table of Contents

Table of Contents

High Limit Shutoff Control Minimum Outdoor Air [m3/s] Maximum Outdoor Air [m3/s] Return Air Temp Limit Return Air Enthalpy Limit Outdoor Air Temperature Limit [C] Outdoor Air Enthalpy Limit [C]

None

Controller:MechanicalVentilation

Name

Outdoor Air Per

Person [m3/s-

person]

Outdoor Air Per

Area [m3/s-m2]

Outdoor Air

Per Zone

[m3/s]

Outdoor Air

ACH [ach]

Outdoor Air

Method

Outdoor Air

Schedule

Name

Air Distribution

Effectiveness in Cooling

Mode

Air Distribution

Effectiveness in Heating

Mode

Air Distribution

Effectiveness Schedule

Name

None

Page 226: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.66 0.254 0.724 0.000 0.000

PLANTA0:SALON 1.26 1.55 180.80 0.255 0.727 0.000 0.000

PLANTA0:ENTRADA 0.35 0.43 50.71 0.254 0.723 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.09 0.161 0.722 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.39 0.127 0.721 0.000 0.000

PLANTA1:HABITACION1 0.61 0.74 84.34 0.262 0.723 0.000 0.000

PLANTA1:PASILLO 0.51 0.63 71.52 0.263 0.726 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.37 0.262 0.725 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.08 0.263 0.726 0.000 0.000

PLANTA1:HABITACION3 0.36 0.44 50.29 0.263 0.727 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 14.95 0.344 0.726 0.000 0.000

PLANTA2:ZONA5 0.36 0.45 38.80 0.344 0.727 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.343 0.726 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.22 0.344 0.727 0.000 0.000

PLANTA2:ZONA2 1.08 1.32 114.82 0.343 0.724 0.000 0.000

PLANTA3:ZONA1 0.97 1.19 103.50 0.342 0.723 0.000 0.000

Values shown for a single zone without multipliers

Minimum Outdoor Air During Occupied Hours

Average Number of Occupants Nominal Number of Occupants Zone Volume [m3] Mechanical Ventilation [ach] Infiltration [ach] AFN Infiltration [ach] Simple Ventilation [ach]

PLANTA0:PASILLO 0.10 0.13 14.66 0.149 0.015 0.000 0.000

PLANTA0:SALON 1.26 1.55 180.80 0.150 0.015 0.000 0.000

PLANTA0:ENTRADA 0.35 0.43 50.71 0.149 0.015 0.000 0.000

PLANTA0:COCINA 0.13 0.23 34.09 0.057 0.021 0.000 0.000

PLANTA0:ASEO 0.02 0.03 5.39 0.045 0.021 0.000 0.000

PLANTA1:HABITACION1 0.61 0.74 84.34 0.153 0.015 0.000 0.000

PLANTA1:PASILLO 0.51 0.63 71.52 0.154 0.015 0.000 0.000

PLANTA1:BANO 0.20 0.24 27.37 0.154 0.015 0.000 0.000

PLANTA1:HABITACION2 0.27 0.34 38.08 0.154 0.015 0.000 0.000

PLANTA1:HABITACION3 0.36 0.44 50.29 0.154 0.015 0.000 0.000

PLANTA2:ZONA3 0.14 0.17 14.95 0.201 0.015 0.000 0.000

PLANTA2:ZONA5 0.36 0.45 38.80 0.202 0.015 0.000 0.000

PLANTA2:ZONA1 0.15 0.19 16.25 0.202 0.015 0.000 0.000

PLANTA2:ZONA4 0.25 0.30 26.22 0.202 0.015 0.000 0.000

PLANTA2:ZONA2 1.08 1.32 114.82 0.200 0.015 0.000 0.000

PLANTA3:ZONA1 0.97 1.19 103.50 0.200 0.015 0.000 0.000

Values shown for a single zone without multipliers

Report: Object Count Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Surfaces by Class

Total Outdoors

Wall 91 23

Floor 46 9

Roof 44 7

Internal Mass 0 0

Building Detached Shading 36 36

Fixed Detached Shading 0 0

Window 23 23

Door 36 4

Glass Door 0 0

Shading 0 0

Overhang 0 0

Fin 0 0

Tubular Daylighting Device Dome 0 0

Tubular Daylighting Device Diffuser 0 0

HVAC

Count

HVAC Air Loops 0

Conditioned Zones 16

Unconditioned Zones 0

Supply Plenums 0

Return Plenums 0

Input Fields

Count

IDF Objects 2269

Defaulted Fields 213

Fields with Defaults 4175

Autosized Fields 64

Autosizable Fields 64

Autocalculated Fields 98

Autocalculatable Fields 562

Page 227: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Sensible Heat Gain Summary Table of Contents

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Annual Building Sensible Heat Gain Components

W

Peak Cooling Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 17-JUL-15:36 0.00 -623.43 0.00 0.00 0.00 0.00 8.60 31.41 16.58 0.00 0.00 40.13 526.71 0.00 -0.00 0.00

PLANTA0:SALON 11-SEP-15:38 0.00 -6118.83 0.00 0.00 0.00 0.00 106.10 387.42 204.56 4332.46 0.00 211.76 876.53 0.00 -0.00 0.00

PLANTA0:ENTRADA 30-SEP-15:02 0.00 -1194.96 0.00 0.00 0.00 0.00 24.96 108.67 57.38 129.48 0.00 0.00 900.09 0.00 -0.00 0.00 -

PLANTA0:COCINA 17-JUL-16:45 0.00 -853.42 0.00 0.00 0.00 0.00 0.00 0.00 19.48 640.68 0.00 90.97 102.30 0.00 -0.00 0.00

PLANTA0:ASEO 17-JUL-16:45 0.00 -219.13 0.00 0.00 0.00 0.00 0.00 0.00 0.15 55.05 0.00 14.40 149.53 0.00 -0.00 0.00

PLANTA1:HABITACION1 30-SEP-15:02 0.00 -2122.99 0.00 0.00 0.00 0.00 41.90 186.04 98.23 514.19 0.00 0.00 1328.07 0.00 -0.00 0.00 -

PLANTA1:PASILLO 17-JUL-15:36 0.00 -2650.98 0.00 0.00 0.00 0.00 43.21 157.76 83.30 326.03 0.00 193.37 1847.31 0.00 -0.00 0.00

PLANTA1:BANO 19-JUL-15:38 0.00 -1253.76 0.00 0.00 0.00 0.00 16.53 60.38 31.88 857.89 0.00 70.94 216.15 0.00 -0.00 0.00

PLANTA1:HABITACION2 17-JUL-15:36 0.00 -1647.58 0.00 0.00 0.00 0.00 23.00 84.00 44.35 838.31 0.00 103.02 554.90 0.00 -0.00 0.00

PLANTA1:HABITACION3 11-SEP-15:38 0.00 -2490.87 0.00 0.00 0.00 0.00 30.38 110.93 58.57 1134.60 0.00 64.11 1092.29 0.00 -0.00 0.00

PLANTA2:ZONA3 19-JUL-15:38 0.00 -967.18 0.00 0.00 0.00 0.00 11.81 43.13 22.77 845.08 0.00 38.98 5.42 0.00 -0.00 0.00

PLANTA2:ZONA5 30-SEP-15:02 0.00 -1681.40 0.00 0.00 0.00 0.00 18.04 111.93 59.10 1021.85 0.00 0.00 510.94 0.00 -0.00 0.00 -

PLANTA2:ZONA1 18-JUL-15:38 0.00 -539.03 0.00 0.00 0.00 0.00 12.84 46.88 24.75 0.00 0.00 48.25 406.31 0.00 -0.00 0.00

PLANTA2:ZONA4 11-SEP-15:01 0.00 -1405.31 0.00 0.00 0.00 0.00 7.71 75.64 39.94 906.51 0.00 0.00 376.97 0.00 -0.00 0.00

PLANTA2:ZONA2 30-SEP-15:02 0.00 -3271.56 0.00 0.00 0.00 0.00 69.96 331.21 174.88 1180.83 0.00 0.00 1589.78 0.00 -0.00 0.00 -

PLANTA3:ZONA1 18-JUL-15:38 0.00 -3208.38 0.00 0.00 0.00 0.00 81.76 298.56 157.64 1263.24 0.00 293.52 1113.64 0.00 -0.00 0.00

Total Facility

30-SEP-15:02

0.00 -

28407.98

0.00

0.00

0.00

0.00

357.97

2033.94

1093.55

16656.36

0.00

0.00

9098.03

0.00

0.00

0.00

-8

Peak Heating Sensible Heat Gain Components

Time of Peak

{TIMESTAMP}

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[W]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[W]

HVAC

Terminal

Unit

Sensible

Air

Heating

[W]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[W]

HVAC

Input

Heated

Surface

Heating

[W]

HVAC

Input

Cooled

Surface

Cooling

[W]

People

Sensible

Heat

Addition

[W]

Lights

Sensible

Heat

Addition

[W]

Equipment

Sensible

Heat

Addition

[W]

Window

Heat

Addition

[W]

Interzone

Air

Transfer

Heat

Addition

[W]

Infiltration

Heat

Addition

[W]

Opaque

Surface

Conduction

and Other

Heat

Addition

[W]

Equipment

Sensible

Heat

Removal

[W]

Window

Heat

Removal

[W]

Interzone

Air

Transfer

Heat

Removal

[W]

Infiltr

Rem

PLANTA0:PASILLO 08-JAN-08:00 403.52 0.00 0.00 0.00 0.00 0.00 7.26 23.55 16.58 0.00 0.00 0.00 0.00 0.00 -0.00 0.00 -

PLANTA0:SALON 08-JAN-07:38 2998.44 0.00 0.00 0.00 0.00 0.00 89.52 290.56 204.56 0.00 0.00 0.00 0.00 0.00 -745.02 0.00 -9

PLANTA0:ENTRADA 23-JAN-08:15 956.50 0.00 0.00 0.00 0.00 0.00 16.74 54.34 57.38 0.00 0.00 0.00 0.00 0.00 -89.35 0.00 -3

PLANTA0:COCINA 19-JAN-05:09 445.69 0.00 0.00 0.00 0.00 0.00 0.00 0.00 19.48 0.00 0.00 0.00 0.00 0.00 -138.42 0.00 -1

PLANTA0:ASEO 23-JAN-05:19 60.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.15 0.00 0.00 0.00 0.00 0.00 -30.38 0.00 -

PLANTA1:HABITACION1 23-JAN-08:15 1645.79 0.00 0.00 0.00 0.00 0.00 28.66 93.02 98.23 0.00 0.00 0.00 0.00 0.00 -337.72 0.00 -5

PLANTA1:PASILLO 19-DEC-07:40 1057.64 0.00 0.00 0.00 0.00 0.00 36.45 118.32 83.30 0.00 0.00 0.00 0.00 0.00 -76.82 0.00 -2

PLANTA1:BANO 20-DEC-07:40 526.96 0.00 0.00 0.00 0.00 0.00 13.95 45.28 31.88 0.00 0.00 0.00 0.00 0.00 -75.06 0.00 -1

PLANTA1:HABITACION2 20-DEC-07:40 658.53 0.00 0.00 0.00 0.00 0.00 19.41 63.00 44.35 0.00 0.00 0.00 0.00 0.00 -74.77 0.00 -1

PLANTA1:HABITACION3 20-DEC-07:40 1023.86 0.00 0.00 0.00 0.00 0.00 25.63 83.19 58.57 0.00 0.00 0.00 0.00 0.00 -174.09 0.00 -2

PLANTA2:ZONA3 08-JAN-07:38 376.09 0.00 0.00 0.00 0.00 0.00 9.96 32.34 22.77 0.00 0.00 0.00 0.00 0.00 -92.30 0.00 -

PLANTA2:ZONA5 11-JAN-07:08 733.03 0.00 0.00 0.00 0.00 0.00 30.79 83.95 59.10 0.00 0.00 0.00 0.00 0.00 -114.15 0.00 -1

PLANTA2:ZONA1 20-DEC-07:40 244.15 0.00 0.00 0.00 0.00 0.00 10.83 35.16 24.75 0.00 0.00 0.00 0.00 0.00 -0.00 0.00 -

PLANTA2:ZONA4 08-FEB-07:02 659.90 0.00 0.00 0.00 0.00 0.00 18.86 56.73 39.94 0.00 0.00 0.00 0.00 0.00 -150.60 0.00 -

PLANTA2:ZONA2 27-NOV-07:38 2141.64 0.00 0.00 0.00 0.00 0.00 76.53 248.41 174.88 0.00 0.00 0.00 0.00 0.00 -275.88 0.00 -5

PLANTA3:ZONA1 24-JAN-07:36 2481.68 0.00 0.00 0.00 0.00 0.00 68.99 223.92 157.64 0.00 0.00 0.00 0.00 0.00 -597.27 0.00 -5

Total Facility 08-JAN-07:38 15548.01 0.00 0.00 0.00 0.00 0.00 495.62 1683.08 1371.39 0.00 0.00 0.00 0.00 0.00 -2967.86 0.00 -43

HVAC

Zone Eq

& Other

Sensible

Air

Heating

[kWh]

HVAC

Zone Eq

& Other

Sensible

Air

Cooling

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Heating

[kWh]

HVAC

Terminal

Unit

Sensible

Air

Cooling

[kWh]

HVAC

Input

Heated

Surface

Heating

[kWh]

HVAC

Input

Cooled

Surface

Cooling

[kWh]

People

Sensible

Heat

Addition

[kWh]

Lights

Sensible

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Addition

[kWh]

Window

Heat

Addition

[kWh]

Interzone

Air

Transfer

Heat

Addition

[kWh]

Infiltration

Heat

Addition

[kWh]

Opaque

Surface

Conduction

and Other

Heat

Addition

[kWh]

Equipment

Sensible

Heat

Removal

[kWh]

Window

Heat

Removal

[kWh]

Interzone

Air

Transfer

Heat

Removal

[kWh]

Infiltration

Heat

Removal

[kWh]

Opa

Surf

Conduct

and Ot

H

Remo

[k

PLANTA0:PASILLO 204.895 -286.17 0.000 0.000 0.000 0.000 52.706 183.829 61.065 0.000 0.000 15.304 47.287 0.000 0.000 0.000 -278.92 -0

PLANTA0:SALON 748.079 -3228.76 0.000 0.000 0.000 0.000 604.207 2267.659 753.281 9806.647 0.000 170.312 0.148 0.000 -2802.17 0.000 -3838.74 -4480

PLANTA0:ENTRADA 590.756 -602.30 0.000 0.000 0.000 0.000 186.683 636.089 211.299 270.815 0.000 52.660 0.108 0.000 -235.93 0.000 -927.51 -182

PLANTA0:COCINA 37.770 -497.68 0.000 0.000 0.000 0.000 25.501 373.244 552.628 770.469 0.000 27.578 0.005 0.000 -421.92 0.000 -576.56 -291

PLANTA0:ASEO 6.388 -70.08 0.000 0.000 0.000 0.000 3.052 29.495 4.693 111.962 0.000 4.673 86.983 0.000 -85.97 0.000 -91.19 0.

PLANTA1:HABITACION1 1029.278 -1178.20 0.000 0.000 0.000 0.000 317.265 1088.925 361.724 1079.078 0.000 84.009 0.010 0.000 -913.47 0.000 -1554.81 -313

PLANTA1:PASILLO 315.573 -1347.53 0.000 0.000 0.000 0.000 250.866 923.424 306.747 1403.102 0.000 70.704 0.003 0.000 -363.79 0.000 -1476.85 -82

PLANTA1:BANO 210.922 -639.12 0.000 0.000 0.000 0.000 97.877 353.390 117.391 912.048 0.000 27.050 0.025 0.000 -323.99 0.000 -548.50 -207

PLANTA1:HABITACION2 189.661 -878.83 0.000 0.000 0.000 0.000 131.857 491.673 163.326 896.138 0.000 37.326 105.459 0.000 -338.02 0.000 -798.59 -0

PLANTA1:HABITACION3 248.250 -1216.50 0.000 0.000 0.000 0.000 169.819 649.272 215.678 2817.942 0.000 48.105 0.154 0.000 -790.30 0.000 -1093.67 -1048

PLANTA2:ZONA3 136.217 -514.87 0.000 0.000 0.000 0.000 68.278 252.422 83.851 888.228 0.000 14.434 0.007 0.000 -330.99 0.000 -310.08 -287

PLANTA2:ZONA5 194.263 -951.09 0.000 0.000 0.000 0.000 175.176 655.159 217.634 1758.127 0.000 37.495 0.093 0.000 -475.36 0.000 -820.76 -790

PLANTA2:ZONA1 82.769 -325.68 0.000 0.000 0.000 0.000 75.286 274.371 91.142 0.000 0.000 16.607 116.206 0.000 0.000 0.000 -330.70 -0

PLANTA2:ZONA4 167.181 -782.89 0.000 0.000 0.000 0.000 116.339 442.726 147.066 1906.749 0.000 24.974 0.020 0.000 -529.95 0.000 -566.47 -925

PLANTA2:ZONA2 1166.010 -1976.55 0.000 0.000 0.000 0.000 557.190 1938.686 644.001 1806.289 0.000 110.878 0.013 0.000 -1028.80 0.000 -2163.18 -1054

PLANTA3:ZONA1 1527.586 -1950.59 0.000 0.000 0.000 0.000 507.242 1747.548 580.508 2733.193 0.000 98.145 0.140 0.000 -1816.26 0.000 -1916.74 -1510

Total Facility

6855.597 -

16446.84

0.000

0.000

0.000

0.000

3339.345

12307.912

4512.032

27160.788

0.000

840.253

356.660

0.000 -

10456.92

0.000

-17293.29

-11174

Page 228: “MAISON GUIETTE” DE LE CORBUSIER: ANÁLISIS ...oa.upm.es/54083/1/TFM_Javier_Gonzalez_Fernandez.pdf · Accepting this undeniable situation, construction sector is one of the main

Report: Component Sizing Summary

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

ZoneHVAC:IdealLoadsAirSystem

User-Specified values were used. Design Size values were used if no User-Specified values were provided.

Report: Adaptive Comfort Summary

For: Entire Facility

Timestamp: 2018-12-15 19:50:39

Time Not Meeting the Adaptive Comfort Models during Occupied Hours

Table of Contents

Table of Contents

ASHRAE55 90% Acceptability Limits

[Hours]

ASHRAE55 80% Acceptability Limits

[Hours]

CEN15251 Category I Acceptability Limits

[Hours]

CEN15251 Category II Acceptability Limits

[Hours]

CEN15251 Category III Acceptability Limits

[Hours]

Design Size Maximum Heating Air Flow Rate

[m3/s]

Design Size Maximum Sensible Heating

Capacity [W]

Design Size Maximum Cooling Air Flow Rate

[m3/s]

Design Size Maximum Total Cooling

Capacity [W]

PLANTA0:PASILLO IDEAL LOADS AIR 0.025841 428.40 0.046173 658.54

PLANTA0:SALON IDEAL LOADS AIR 0.196264 3435.10 0.421882 6400.42

PLANTA0:ENTRADA IDEAL LOADS AIR 0.059970 1037.67 0.080564 1268.55

PLANTA0:COCINA IDEAL LOADS AIR 0.020634 478.59 0.057628 907.10

PLANTA0:ASEO IDEAL LOADS AIR 0.002655 61.30 0.014593 223.03

PLANTA1:HABITACION1 IDEAL LOADS

AIR

0.104326

1801.63

0.144679

2268.69

PLANTA1:PASILLO IDEAL LOADS AIR 0.065480 1180.21 0.196923 2823.08

PLANTA1:BANO IDEAL LOADS AIR 0.033371 577.26 0.091741 1306.87

PLANTA1:HABITACION2 IDEAL LOADS

AIR

0.041700

731.70

0.123028

1756.67

PLANTA1:HABITACION3 IDEAL LOADS

AIR

0.066199

1134.50

0.202686

2860.99

PLANTA2:ZONA3 IDEAL LOADS AIR 0.025019 430.14 0.072259 1024.91

PLANTA2:ZONA5 IDEAL LOADS AIR 0.047511 853.22 0.133522 1911.31

PLANTA2:ZONA1 IDEAL LOADS AIR 0.014711 278.92 0.039369 575.83

PLANTA2:ZONA4 IDEAL LOADS AIR 0.044750 767.62 0.116389 1648.56

PLANTA2:ZONA2 IDEAL LOADS AIR 0.136769 2467.45 0.220784 3512.34

PLANTA3:ZONA1 IDEAL LOADS AIR 0.163121 2826.26 0.220475 3468.49