the expo 2015 pavilion: breathe austria outdoor … · 9/29/2015  · transsolar. the fans for the...

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38 32 26 9 46 extreme heat stress very strong heat stress strong heat stress moderate heat stress no thermal stress Air temperature Humidity Air velocity Mean radiant temperature (MRT) Clothing factor Metabolic rate UTCI °C Ambient Temperature Temperature Humidity Sky Temperature Diffuse Radiaon Beam Radiaon Ambient Humidity Windspeed MRT clothing acvity airspeed CLIMATE ENVIRONMENTAL MODEL PHYSIOLOGICAL MODEL 27 fans wooden shell 130 fog nozzles 12 fog steles PV modules 41 kWp 42.300 m² leaf surface 12.600 plants 560 m² planted area reduced MRT elevated air speed reduced air temperature increased humidity DESIGN SAFE, COMFORTABLE AND HEALTHY ENVIRONMENT NEW TECHNIQUES AND HIGH PERFORMANCE PRODUCTS TOOLS DEVELOPMENT BUILDING CHANGES IN LIFESTYLES AND PEOPLE NEEDS ENERGY AND WATER EXPENDITURES URBAN HEAT ISLANDS PREDICTING HUMAN PHYSIOLOGICAL RESPONSE The Universal Thermal Climate Index (UTCI) is used to characterize thermal outdoor condions for human comfort. The index includes the combined effects of solar and heat radiaon, air temperature and humid- ity, air speed, acvity and clothing of the person. An UTCI in the range of 26 to 32 °C is rated as excellent in hot and humid climates. MODELING ENVIRONMENTAL PARAMETERS An dynamical simulaon model was developed to pre- dict all relevant environmental parameters and result- ing human outdoor comfort. Effects of evapo-transpi- raon can be modelled with esmaon of the Mean Radiant Temperature (MRT) of the vegetaon and the impact of adiabac cooling. The model was verified against detailed modeling with TRNSYS and compared to measurements. DRY MIST TECHNOLOGY The Dry Mist Technology fans have been developed by Transsolar. The fans for the EXPO are opmized for the Mediterranean climate to create an adiabac cooling effect of 4 to 6 °C with a noisel evel < 30 dBA at a typi- cal distance of 3 m. Each fan has an adiabac cooling capacity of about 3.5 kW. The combinaon of elevated air speed and adiabac cooling is energy efficient; the coefficient of performance of 20 is high compared to 4 of convenonal air cooling technologies. OUTDOOR COMFORT IN THE CITY Evapotranspiraon is one of the (probably underesmated) elements to migate urban heat island effect. Well watered green areas can reduce ambient air and radiant temperatures. For outdoor condions, elevated air speeds can be combined with Dry Mist Technology to create human comfort. This is showcased at the Austrian Pavilion at the EXPO 2015 in Milan, Italy from May to October 2015. The pavilion by Team.Breathe.Austria is designed as simple wooden frame built on a slender concrete plinth creang an open enclosure for a miniature forest of 560 m². All electrical energy required for the operaon of the pavilion is provided by a PV system on the roof. There are no mechanical cooling systems installed. IDEA The general idea for this pavilion was to create the cool and comfortable sensaon of a rich Austrian forest within the hot and humid summer condions in Milan. Large and dense trees provide excellent shade. The rich and well-watered vegetaon keeps the Mean Radiant Tem- peratures significantly lower compared to hard surfaces exposed to solar gains. This comforta- ble radiant environment is combined with fans with Dry Mist Technology, a high pressure mist - ing system that provides effecve adiabac cooling without spraying water droplets at people. The combined effect creates excellent outdoor comfort even in hot and humid environments. In 2014 the systems have also been successfully tested in the hot and humid condions of Sin- gapore. MEASURED PERFORMANCE AT A HOT DAY The improvement of outdoor comfort is highlighted with an example measured at a hot but parally cloudy day in July 2015, Milan. Ambient air temperatures are about 34 to 35 °C. Being under the membrane roof in the street feels like 36 °C UTCI. Upon entering the pavilion - through a path in the forest - visitors perceive a reducon of about 3 °C UTCI because of good shade and dense vegetaon. Walking through the pavilion visitors pass by a total of 27 Dry Mist Fans. Exposure to these fans means that temperatures drop to about 27.8 °C UTCI. In outdoor environments this change is perceived as a substanal comfort improvement. Comfort at the VIP area on the second floor is enhanced with the same concept. The North facing glass façade can be fully opened to the canopy level of the vegetaon. Dedicated Dry Mist Fans are in place to improve comfort to about 31.4 °C UTCI. Further to the Dry Mist Fans 9 fogging loops with a total of 130 nozzles are installed. All systems are controlled automa- cally to create different visitor experiences. With higher ambient temperatures the building control is intensifying the system operaon to improve outdoor comfort for visitors. References 1. Blazejczyk, K., Jendritzky, G. Bröde, P., Fiala, D. Havenith, G., Epstein, Y. Psikute, A. and Kampmann, B. 2013. An Intro- ducon to the Universal Thermal Climate Index (UTCI). Geographia Polonica. Vol 86. Issue pp 5-10. 2. Campbell, G.S., Norman, J.M. 1998. An Introducon to Environmental Biophysics. Springer. ISBN 978-0-387-94937-6. 3. Gill, S.E. Handley J.F., Ennos, A.R. and Pauleit,S. 2007. Adapng Cies for Climate Change: The Role of the Green Infra- structure BUILT ENVIRONMENT Vol 33. WOLFGANG KESSLING, Transsolar, Munich, Germany MARTIN ENGELHARDT, Transsolar, Germany ALEXANDER GREISING, Transsolar, Germany THE EXPO 2015 PAVILION: BREATHE AUSTRIA OUTDOOR COMFORT IN THE CITY IDEA MEASURED PERFORMANCE AT A HOT DAY Shade, EXPO Pathway Shade, Vegetaon Shade, Dry Mist Fans VIP-Lounge HUMAN RESPONSE TO IMPROVED OUTDOOR COMFORT VEGETATION Large and dense trees can provide excellent shade. If well irrigated, leave surface tem- peratures will remain close to ambient air temperatures even when exposed to intense solar radiaon. Rich vegetaon will keep the Mean Radiant Temperature (MRT) signifi- cantly lower as typical building materials. Also air temperature will be lower. TECHNOLOGY Fans in combinaon with a high pressure misng system can provide efficient adiaba- c cooling effects perceived at the posion of human beings. OUTDOOR COMFORT The combined effects can provide excellent outdoor comfort even in hot and humid environments. Air temperature: 34.5 °C Relave humidity: 44.0% Mean Radiant Temperature: 38.4 °C Air velocity: 0.3 m/s 36.2 °C UTCI UTCI UTCI UTCI 33.4 °C 27.8 °C 31.4 °C 32.5 °C 50.0% 32.5 °C 0.3 m/s 27.0 °C 74.0% 34.3 °C 2.6 m/s 31.0 °C 61.0% 31.0 °C 1.8 m/s

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Page 1: THE EXPO 2015 PAVILION: BREATHE AUSTRIA OUTDOOR … · 9/29/2015  · Transsolar. The fans for the EXPO are optimized for the Mediterranean climate to create an adiabatic cooling

38

32

26

9

46 extreme heat stress

very strong heat stress

strong heat stress

moderate heat stress

no thermal stress

Air temperature

Humidity

Air velocity

Mean radiant temperature(MRT)

Clothing factor

Metabolic rate

UTCI

°C

AmbientTemperature

Temperature

Humidity

SkyTemperature

DiffuseRadiaon

BeamRadiaon

AmbientHumidity

Windspeed

MRT

clothingacvity

airspeedCLIMATE ENVIRONMENTAL

MODELPHYSIOLOGICAL MODEL

27 fans

wooden shell130 fog nozzles

12 fog steles

PV modules 41 kWp

42.300 m² leaf surface

12.600 plants560 m² planted area

reduced MRT

elevated air speed

reduced air temperature

increased humidity

DESIGN SAFE, COMFORTABLE AND HEALTHY ENVIRONMENTNEW TECHNIQUES AND HIGH PERFORMANCE PRODUCTS

TOOLS DEVELOPMENT

BUILDING

CHANGES IN LIFESTYLES AND PEOPLE NEEDSENERGY AND WATER EXPENDITURES

URBAN HEAT ISLANDS

PREDICTING HUMAN PHYSIOLOGICAL RESPONSEThe Universal Thermal Climate Index (UTCI) is used to characterize thermal outdoor conditions for human comfort. The index includes the combined effects of solar and heat radiation, air temperature and humid-ity, air speed, activity and clothing of the person. An UTCI in the range of 26 to 32 °C is rated as excellent in hot and humid climates.

MODELING ENVIRONMENTAL PARAMETERSAn dynamical simulation model was developed to pre-dict all relevant environmental parameters and result-ing human outdoor comfort. Effects of evapo-transpi-ration can be modelled with estimation of the Mean Radiant Temperature (MRT) of the vegetation and the impact of adiabatic cooling. The model was verified against detailed modeling with TRNSYS and compared to measurements.

DRY MIST TECHNOLOGYThe Dry Mist Technology fans have been developed by Transsolar. The fans for the EXPO are optimized for the Mediterranean climate to create an adiabatic cooling effect of 4 to 6 °C with a noisel evel < 30 dBA at a typi-cal distance of 3 m. Each fan has an adiabatic cooling capacity of about 3.5 kW. The combination of elevated air speed and adiabatic cooling is energy efficient; the coefficient of performance of 20 is high compared to 4 of conventional air cooling technologies.

OUTDOOR COMFORT IN THE CITYEvapotranspiration is one of the (probably underestimated) elements to mitigate urban heat island effect. Well watered green areas can reduce ambient air and radiant temperatures. For outdoor conditions, elevated air speeds can be combined with Dry Mist Technology to create human comfort. This is showcased at the Austrian Pavilion at the EXPO 2015 in Milan, Italy from May to October 2015. The pavilion by Team.Breathe.Austria is designed as simple wooden frame built on a slender concrete plinth creating an open enclosure for a miniature forest of 560 m². All electrical energy required for the operation of the pavilion is provided by a PV system on the roof. There are no mechanical cooling systems installed.

IDEAThe general idea for this pavilion was to create the cool and comfortable sensation of a rich Austrian forest within the hot and humid summer conditions in Milan. Large and dense trees provide excellent shade. The rich and well-watered vegetation keeps the Mean Radiant Tem-peratures significantly lower compared to hard surfaces exposed to solar gains. This comforta-ble radiant environment is combined with fans with Dry Mist Technology, a high pressure mist-ing system that provides effective adiabatic cooling without spraying water droplets at people. The combined effect creates excellent outdoor comfort even in hot and humid environments. In 2014 the systems have also been successfully tested in the hot and humid conditions of Sin-gapore.

MEASURED PERFORMANCE AT A HOT DAY The improvement of outdoor comfort is highlighted with an example measured at a hot but partially cloudy day in July 2015, Milan. Ambient air temperatures are about 34 to 35 °C. Being under the membrane roof in the street feels like 36 °C UTCI. Upon entering the pavilion - through a path in the forest - visitors perceive a reduction of about 3 °C UTCI because of good shade and dense vegetation. Walking through the pavilion visitors pass by a total of 27 Dry Mist Fans. Exposure to these fans means that temperatures drop to about 27.8 °C UTCI. In outdoor environments this change is perceived as a substantial comfort improvement. Comfort at the VIP area on the second floor is enhanced with the same concept. The North facing glass façade can be fully opened to the canopy level of the vegetation. Dedicated Dry Mist Fans are in place to improve comfort to about 31.4 °C UTCI. Further to the Dry Mist Fans 9 fogging loops with a total of 130 nozzles are installed. All systems are controlled automati-cally to create different visitor experiences. With higher ambient temperatures the building control is intensifying the system operation to improve outdoor comfort for visitors.

References1. Blazejczyk, K., Jendritzky, G. Bröde, P., Fiala, D. Havenith, G., Epstein, Y. Psikute, A. and Kampmann, B. 2013. An Intro-

duction to the Universal Thermal Climate Index (UTCI). Geographia Polonica. Vol 86. Issue pp 5-10.2. Campbell, G.S., Norman, J.M. 1998. An Introduction to Environmental Biophysics. Springer. ISBN 978-0-387-94937-6.3. Gill, S.E. Handley J.F., Ennos, A.R. and Pauleit,S. 2007. Adapting Cities for Climate Change: The Role of the Green Infra-

structure BUILT ENVIRONMENT Vol 33.

WOLFGANG KESSLING, Transsolar, Munich, Germany

MARTIN ENGELHARDT, Transsolar, GermanyALEXANDER GREISING, Transsolar, Germany

THE EXPO 2015 PAVILION: BREATHE AUSTRIAOUTDOOR COMFORT IN THE CITY

IDEA MEASURED PERFORMANCE AT A HOT DAY

Shade, EXPO Pathway Shade, Vegetation Shade, Dry Mist Fans VIP-Lounge

HUMAN RESPONSE TO IMPROVED OUTDOOR COMFORT

VEGETATION

Large and dense trees can provide excellent

shade. If well irrigated, leave surface tem-

peratures will remain close to ambient air

temperatures even when exposed to intense

solar radiation. Rich vegetation will keep the

Mean Radiant Temperature (MRT) signifi-

cantly lower as typical building materials.

Also air temperature will be lower.

TECHNOLOGY

Fans in combination with a high pressure

misting system can provide efficient adiaba-

tic cooling effects perceived at the position

of human beings.

OUTDOOR COMFORT

The combined effects can provide excellent

outdoor comfort even in hot and humid

environments.

Air temperature: 34.5 °C

Relative humidity: 44.0%

Mean Radiant Temperature: 38.4 °C

Air velocity: 0.3 m/s

36.2 °C

UTCI UTCI UTCI UTCI

33.4 °C

27.8 °C31.4 °C

32.5 °C

50.0%

32.5 °C

0.3 m/s

27.0 °C

74.0%

34.3 °C

2.6 m/s

31.0 °C

61.0%

31.0 °C

1.8 m/s