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    2011 by Envidatec 2

    Trainings Agenda, !"oc#s in 2 days

    Day 1

    1! Introduction to energy management in general

    short break

    1! Introduction to I"# $%%%1 & DI' E' 1(%%1

    lunch break

    1! Di))erences & Integration I"# 1*%%% vs. I"# $%%%1short break

    1! +resentation o) the individual topics o) I"# $%%%1

    Day ,

    1! Details measuring techniue

    short break

    1! Details energy controlling

    lunch break

    1! +ractical eamples o) energy e))iciency measures

    short break

    1! Further topics & concluding discussion

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    Cor%orate &eve"o%ment

    2001 'oundation o( t)e centra" o((ice in *amburg

    (or e+%ertise on t)e e((icient use o( energy

    200 Starting a branc) o((ice in -ienna

    as a scienti(ic centre (or researc) and deve"o%ment

    200. 'oundation o( t)e omtec Energiemanagement /mb*, -ienna

    200 Estab"is)ment o( Energye((icient into t)e 'uture3 4

    &I E 16001

    2010 Starting branc) o((ice EnvidatecOst in 7e#aterinburg, 8ussia

    Com%any Envidatec (ounded out o( E9O as an inde%endent business

    to be a centre o( e+%ertise on energy management systems9

    Centra" area o( e+%ertise is energy e((iciency ana"ysis, individua"

    tai"oring o( so"utions to reduce costs, and t)e im%"ementation o( said

    so"utions9

    Service %rovision, )ard:are and so(t:are (or e((icient energy use9

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    Com%any Structure

    *ead;uartersHamburg

    E+ecutive Management

    Sa"es and Mar#eting

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    Energy Management System

    Envidatec /mb*

    Ana"ysis >

    Conce%tua"isation

    Energy E((iciency Ana"ysis,

    Im%"ementation Conce%ts,

    Energy Management

    Systems

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    Energy Management System

    ?ega" 'rame:or# Se"ectionB

    Energieeins%arungsgeset EnE/0 Energy "avings 3a4

    Energieeins%arverordnung EnE-0 Energy "avings #rdinance

    ErneuerbareEnergien/eset EE/0 ene4able Energy 3a4

    ErneuerbareEnergienDrmegeset EEDrme/0 3a4 on

    ene4able Energy in Heating !undesImmissionssc)utgeset !imSc)/0 Federal Emissions

    5ontrol 3a4

    Energiee((iiengeset EnE(/ Ent:ur(B0 Energy E))iciency 3a4

    6Dra)t!

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    Energy Management System

    Introduction o( 8egu"atory System in /ermany

    Stage

    begins 201$B

    F%dates to Energy Management SystemsMandatory (or Com%aniesG

    :i"" be a condition (or Energy Ta+ 8ebatesB

    Stage $

    begins 2012B

    Introduction o( Management

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    Energy E))iciency

    7nalysis

    #ptimisation

    ISO 50001

    8onitor and

    8easure

    EnMS according to

    5ontinuous 5ontrol

    o) Improvement

    Energy Management System ISO 50001

    A

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    Energy Management System ISO 50001

    Centra" Ideas

    /oa"s

    To o((er su%%ort in t)e deve"o%ment o( systems and %rocesses :)ic)im%rove energy e((iciency

    Systematic energy management "eads to 8eduction o( costs

    8eduction o( green)ouse gas emissions

    &eve"o% a cor%orate energy %o"icy

    &e(ine aims and %rocesses

    Ta#e into account necessary measures to im%rove out%ut

    Success is on"y attainab"e :it) t)e su%%ort o( a""

    de%artments, at a"" "eve"s, inc"uding to%"eve" management

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    Me)r Energiee((iien

    (Hr More

    Energy E((iciency

    (or

    Industry

    and

    Manu(acturing

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    C"ient

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    Monitor andMeasure

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    Co((ee !rea#

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    Introduction toISO 50001 &I E 16001

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    Energy Management System

    T)e origin o( ISO 50001 &I E 16001

    DI' E' 1(%%1 adopted in 9uly,%%: in Europe

    ;ased on +D57-cycle

    'early identical to I"# $%%%1

    "ame "tructure as I"# 1*%%1

    elated to 2DI *(%, 6Germanengineering norm aboutenergy management!

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    &e(inition o( Energy Management System

    'rom -&I 602

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    Monitor andMeasure

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    ISO 50001 4 Terms and &e(initions

    Action

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    ISO 50001 4 Terms and &e(initions

    Energy Management System EnMS or EMSB $9$B

    "et o) interrelated or interacting elements o) an organi@ation toestablish energy policy and ob=ectives and to achieve those

    ob=ectives.

    Energy

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    ISO 50001 4 Terms and &e(initions

    Energy use $96B

    8anner or kind o) application o) energy.

    '#TE 1 Eamples are ventilation0 heating0 processes0 production

    lines.

    '#TE , The uantity o) the energy applied is epressed as energy

    consumption.

    Energy base"ine $9.B

    Auantitative re)erence providing a basis )or comparison o) energy

    per)ormance

    Energy e((iciency $9B

    Engineering accepted use o) the term by the organisation.

    '#TE Eamples are conversion e))iciency0 energy reuired&energy

    used0 output&input0 theoretical energy used to operate&energy

    used to operate.

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    ISO 50001 4 Terms and &e(initions

    Energy %ro(i"e $910B

    "tatus o) the organisation?s energy per)ormance.

    Energy %er(ormance $9B

    8easurable results related to energy.

    Eamples energy e))iciency0 energy intensity 6the inverse o) energy

    e))iciency!0 speci)ic energy use0 energy consumption 6energy usedivided by product or other appropriate variable etc.!.

    Energy %er(ormance indicator En

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    ISO 50001 4 Terms and &e(initions

    Energy Efficiency

    Energy Consumption

    Energy Intensity

    Energy Performance

    Specific Energy Use

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    ISO 50001 4 Terms and &e(initions

    oncon(ormity $91$B

    'on-)ul)illment o) a reuirement.

    Ob=ective $91B

    Desired outcome or achievement set to meet the organisation?s policyrelated to energy.

    Organisation $915B

    5ompany0 corporation0 )irm0 enterprise0 authority or institution0 or part

    or combination thereo)0 4hether incorporated or not0 public or private0

    that has its o4n )unctions and administration and that has theauthority to control its energy use and consumption.

    Team $92B

    person or person6s! responsible )or e))ective implementation o) the

    energy management system activities and delivering energy

    per)ormance improvements

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    ISO 50001 4 Terms and &e(initions

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    ISO 50001 4 Terms and &e(initions

    8ecord $920B

    Document stating results achieved or providing evidence o) activitiesper)ormed.

    '#TE ecords can be used0 )or eample0 to document traceability

    and to provide evidence o) veri)ication0 preventive action and

    corrective action.

    To% management $921B

    +erson or group o) people 4ho directs or controls an organisation atthe highest level.

    '#TE Top management controls the organi@ation de)ined 4ithin the

    scope o) the management system )or energy.

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    S%ecia" 8e;uirements o( ISO 50001

    Im%ortant conditions in t)e organisation (or t)e(unctioning o( an energy management system

    Energy Team

    authorised by the top management

    acting as

    &ocumentation

    collection o) documents concerning energy use0

    processes0 installations and 4ork )lo4s as 4ell asreports and revie4s

    has to be maintained 6! and be accessible tothe personnel

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    S%ecia" 8e;uirements o( ISO 50001

    &ocumentation re;uirementsT)e "eve" o( detai" :it)in t)e system documentation s)ou"d be su((icient

    to describe t)e energy management system and t)e interaction bet:een

    its %rocesses, systems and activities9

    T)is documentation s)ou"d be better to integrate :it) e+isting

    management systems im%"emented by t)e organisation9

    T)e e+tent o( energy management system documentation may di((er

    (rom one organisation and anot)er,

    de%ending on

    t)e sie and ty%e o( organisation and its energy usesG t)e com%"e+ity o( %rocess and t)eir interactionsG

    t)e com%etence o( %ersonne"G and

    t)e maturity o( organisationKs management system9

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    Energy Management System ISO 50001

    Energy

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    Energy Management System ISO 50001

    Energy

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    ?unc) !rea#

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    Integration o( ISO 50001 in ot)er Standards

    EMAS III ISO 1001

    &I E 16001

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    Simi"arities ISO 1001 ISO 50001

    Same structure out"ine

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    &i((erences ISO 1001 ISO 50001 1B

    7dditional energy speci)ic terms and de)initions +rovide resources )or obtaining in)ormation and )or

    achievement o) ob=ectives

    Itemisation o) possibilities )or energy savings0energy per)ormance indicators

    'omination o) an energy manager reporting to thetop-management

    euirements in the operational controls 6energeticconsiderations )or the purchasing department0

    criteria )or the operation and maintenance!

    &i(( ISO 1001 ISO 50001 2B

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    &i((erences ISO 1001 ISO 50001 2B

    Estimation o) the potentials )or more e))icient energy

    8anagement evie4 decisions and actions to improvethe energy per)ormance

    egular0 detailed energy revie4s 6not only once0 as in

    the environmental assessment! 5heck-list

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    Integration o( ISO 50001 into ISO 1001 $B

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    Integration o( ISO 50001 into ISO 1001 $B

    Im%"ementation and O%eration

    To add to I"# 1*%%1

    Auali)ication and competence o) managementrepresentative concerning energy e))iciency

    7dditional topic )or training energy

    Energetic consideration in procurement0 energye))iciency as a criterion

    ate the energy consumption in the interpretation0

    modi)ication or repair o) any assets0 including buildings04ith substantial impact on energy consumption

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    Co((ee !rea#

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    Energy Management System ISO 50001 To%ics

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    Monitor andMeasure

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    Energy

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    Energy

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    Im%"ementationand O%eration

    Top 8anagement must make the necessary resources

    available 6personnel0 technical and )inancial capital0 kno4-ho4!

    +ersonnel must be provided 4ith adeuate kno4ledge 6energypolicies0 reuirements o) the En8"0 in)luence o) their 4ork on

    total energy usage0 etc.! +rovision o) Training

    Internal and eternal communication

    Documentation describing the organisation?s En8"

    5ommunicate 4ork )lo4s and plans o) action that guarantee

    compliance 4ith the )irm?s energy policy

    gy g y %

    Energy Management System ISO 50001 To%ics

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    C)ec#ing andCorrective Action

    gy g y %

    The organisation shall ensure that

    the key characteristics o) its operations that determine energy

    per)ormance are monitored0 measured and analysed the euipment used in monitoring and measuring o) key

    characteristics provides data 4hich is accurate and repeatable

    ey characteristics shall include at a minimum the energy pro)ile0

    signi)icant energy uses and

    e))ectiveness o) the action plans in achieving ob=ectives and

    targets.

    Energy Management System ISO 50001 To%ics

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    ?oca" System

    So"utions

    3imit 2alue 8onitoring eporting

    Internet

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    Monitor andMeasure

    Evaluation and description o) the reuirements o) the

    organisation?s energy program

    +eriodic measurement0 oversight and recording o) centralenergy uses0 as 4ell as the )actors a))ecting them

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    Energy Management System ISO 50001 To%ics

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    Interna" Audit

    Eamples o) sub=ects )or consideration by internal auditing include

    proper implementation o) energy management programmes0

    processes and systems opportunities )or continual improvement

    capability o) processes and systems

    use o) in)ormation technology.

    Internal audits may be per)ormed by employees o) the organisation

    and&or by eternal parties appointed by the organisation. In both

    cases the person or persons per)orming the audits are uali)ied0

    eperienced0 ob=ective0 impartial and independent o) the area o)

    the organisation to be audited.

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    Energy Management System ISO 50001

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    Monitor and

    Measure

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    Monitor and

    Measure

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    Organisation euirements )or measurements and monitoring o) your En8"

    egularly measuring0 updating and storing the important energyconsumptions

    7ccuracy and reproducibility o) the measurement setup

    Measurements :i"" be used (or t)e

    &e(inition o( /oa"s o( Energy 8eduction

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    Energy Management System ISO 50001

    Monitor and Measure

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    Energy-revie4 has to contain

    Historical and actual energy consumption on the basis o)measurements and other data

    Goals o) energy reduction J relative measurement o) energy use

    Energy use per piece0 per kg0 per sm or sth. comparable

    Goal o) energy independent o) change in production

    Energy Management System ISO 50001

    Monitor and Measure

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    &e(ine o%erative goa"s Ana"ysis o( energy consum%tions e9 g9 o( %rocesses,

    com%ressedair, )eating, i""umination,999B is (aci"itated

    Intermittent estimation and va"idation o( energy consum%tions

    Introduction o( %er(ormance indicators (or energetic %o:er

    e. g. kBh per production unit e. g. kBh per sm building area

    Lse key values )or ongoing control0 to assure intervention in thecase o) deviations

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    Energy Management System ISO 50001

    System Setu% distributed So"utionB

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    @E-is Service Center

    @E-is et:or#

    &ata "ogger -I&A$50

    &!

    So(t:are

    Energy Management System ISO 50001

    System Setu% interna" So"utionB

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    ?O

    !,%%

    !,%%

    E-F

    "ynchr.

    00 0 001

    Fser

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    5onverter measurements Direct measurements "4itching operations

    ;ello4-0 rotary piston-0 turbine gas meter

    Electric Meter

    2orte-0 ultrasonic )lo4 meter

    Energy Management System ISO 50001

    Measuring Tec)ni;ue

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    Fan-0 volume meter & Boltmann meter

    Lltrasonic )lo4 meter

    Flo4 meter

    Thermometer

    +ressure-0 partial pressure transmitter

    Services o( t)e Envidatec /mb*

    Measuring Tec)ni;ue

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    Conce%tua" design o( measuring %oints

    Determination o) important consumers

    Determination o) suited measuring techniue

    5reation o) a system solutions

    Monitoring t)e insta""ation Commissioning

    O%eration o( t)e monitoring net:or#

    Tem%orary measurements

    Turn#ey insta""ation

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    Co((ee !rea#

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    &etai"s Energy Contro""ing

    Energy Management System ISO 50001

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    Monitor and

    Measure

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    8egister

    O%timise

    Energy report

    ;enchmarking

    8easuring and recording o)

    relevant operational data

    eduction o) costs

    Implement 8easures

    6organisational and

    investment!

    5ontrol o) success

    Ana"yse

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    Energy andO%erating &ata

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    Fsers%eci(ic access %rivi"ege Access :it) standardbro:ser

    Fsers%eci(ic system design

    Automatic data ac;uisition

    Cyc"ic data de"ivery

    &ata e+%orts CS-, MSCOSB

    Dindo:scom%"iant inter(ace

    8e%resentation in tree structures

    *ig) data security

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    !enc)mar#ingToo" @E!enc)

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    Com%arison o( consum%tion andcosts based on de(inedindicators

    Creating ran#ings (or rea" estate,o((ices or (aci"ities

    8e%resentation o( t)e %ercentageerrors

    Convenient gra%)ica" %rocessing

    A"armToo" @EA"arm

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    Automatic monitoring o( energyand o%erating data

    8e%orting and a"erting ont)res)o"d vio"ation

    A"arming via SMS, emai" or (a+

    Storage o( a"" re"evant records int)e database

    Com%re)ensive a"armmanagement :it) (eedbac#

    Energy 8e%orting

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    Customers%eci(ic

    Automatic generation o( conciseenergy re%orts

    Accounting o( mont)"y or :ee#"y

    %eriods

    8e%resentation o( consumer

    ratings :it) s%eci(ic #ey (igures

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    Dater "ea#age

    O%timisation E+am%"e 1

    &etecting Dater ?ea#age

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    "tandard 4eek 8on. - "un.

    Savings 10,500 m$ year, or a%%ro+imate"y $$,000 Q year

    g

    Dater use a(ter o%timisation

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    Savings 1$,000 #D) year, or a%%ro+imate"y 22,000 Q year

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    Savings 2.2,000 #D) year, or a%%ro+imate"y $1,000 Q year

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    ?unc) !rea#

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    Case Studies

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    E+am%"e ?S/ S#y C)e(s

    8ene:a" o( t)e

    Coo"ing Insta""ation

    !rie( Introduction ?S/ S#y C)e(s &eutsc)"and /mb*

    ?S/ S#y C)e(s is t)e :or"dJs "argest %rovider o( integrated in("ig)t

    so"utions, inc"uding catering, %rocurement, e;ui%ment, aircra(t sa"es

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    so"utions, inc"uding catering, %rocurement, e;ui%ment, aircra(t sa"es

    to in("ig)t management9

    ?S/ S#y C)e(s serves

    more t)an

    $00 air"ines in some200 estab"is)ments

    in countries and

    %roduces 1 mi""ion

    air"ine mea"s

    %er year9

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    19 Ste%

    Identi(ication o( %otentia" savings

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    8esu"ts o( t)e data monitoring energy e((iciency ana"ysis

    -enti"ation

    Freuency regulation o) ventilation *% M reduction

    untime optimisation o) ventilation 1$ M reduction

    Energy data monitoring

    Transparency o) energy consumptions $-1$ M reduction

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    t)e o"d insta""ation

    19 Ste%

    Identi(ication o( %otentia" savings

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    Coo"ing insta""ation

    5ooling through a )reuency-integrated )acility

    5ooling adapted to be epected load spectrum & ,%-,$M

    Heat adsorption and de)rosting o) re)rigerator in the cooling rooms

    Intelligent control 4ith de)rosting on demand & O-1,M

    ene4al o) heat recovery

    Lse heat )or hot 4ater generation and ventilation & at least ,%M

    Heat incursion into the cooling )acilitiesBarm air curtain & ,-$M

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    S i )i d

    8esu"ts

    Tota" 8eduction o( Consum%tions

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    Savings ac)ieved

    Saving e"ectric %o:er N 2$ MD) year

    $6 R 8eduction o( e"ectric %o:er consum%tion

    Saving )eat N 1,. MD) year

    65 R 8eduction o( )eat usage

    8eduction CO2Emission N a%%ro+9 500 t year

    56 R 8eduction CO2Emission

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    Investment N 259000 Euro

    'unding N .09000 Euro

    8esu"ts

    Cost e((ectiveness o( t)e insta""ation

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    Saving N 1529000 Euro year

    Tec)nica" amortisation %eriod N 2 years, mont)s

    inc"uding (undingB

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    !rie( Introduction !ode C)emie

    !ode C)emie is one o( t)e "eading %roducers (or disin(ection and

    antise%sis %roducts in Euro%e9 !rands "i#e Steri""ium or Cutase%t

    are used everyday in over 0 countries :or"d:ide

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    are used everyday in over 0 countries :or"d:ide9

    Starting Situation Energy Costs and Consum%tions

    Com%"ete energy consum%tion in 200

    Electric po4er , *N: *O% kBh

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    Electric po4er ,0*N:0*O% kBh Gas *0$%%0%%% kBh

    Bater ,N0*1* m

    3oad peak in ,%%: 4as $%N.O kB

    Energy Costs in 200

    Electric po4er ,*(0,N P

    Gas 1O,0*: P

    Bater 110*:* P

    CO2Emission in 200

    ,0(,,0,N kg

    Starting Situation Com%ressed Air insta""ation

    Com%ressor Mode" Motor

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    %o:er inc"9(an

    tion in id"etime

    5ompressor 17E"E

    ;" (1 N kB 1% bar $. m&min *1.N kB :.* bar :.N bar ,$.% kB

    5ompressor ,7E"E

    ;" (1 N kB 1% bar $. m&min *1.N kB :.( bar 1%.% bar ,*.* kB

    5ompressor 7E"E

    7"D 1 1O.$ kB 1% bar ,.N m&min 1O.: kB O.N bar :.( bar O. kB

    5ompressor 7E"E

    7"D N ,,.% kB 1% bar .1 m&min ,O.N kB O.N bar :.( bar N.* kB

    5ompressor 7"D 1 4as echanged 4ith a ne4 7E"E 7"D N

    Additiona" Com%onents

    Adsor%tion de)umidi(ier &E?TEC*, Mode" UD 50, year o(

    manu(acture 1

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    *o"ding tan# 29000 ", year o( manu(acture 1

    Adsor%tion de)umidi(ier &E?TEC*, Mode" Eurodry 205

    *o"ding tan# .50 ", year o( manu(acture 12

    8e;uirements (or t)e setu%

    &emand (or "arger com%ressed air ca%acity

    Increase o( energy e((iciency

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    Increase o( energy e((iciency E+c)ange o( o"d com%onents as :e"" as ac;uisition o( ne: ones

    5onceptualisation o) a system combining old and ne4

    components and satis)ying ne4 capacity demand

    Ac;uired &ata

    The installation 4as monitored over a period o) one 4eek. From

    1O.11.,%%: to ,$.11.,%1% the pro)iles o) the compressors 4ere taken.

    D i th 1(O h ) th d i d th h

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    2011 by Envidatec 12$

    During the 1(O hours o) the measured period the compressors have

    consumed 90 #D) o) electric po4er. From this 59$5 #D) 4ere used

    during load operation and $96 #D) in idle time. There)ore0 $. Ro) theelectric po4er 4ere consumed in the idle time.

    During the measured period0 the compressors have done $19$1alternations o) load. Taking the mean value per compressor results in one

    alternation o) load every 5$ s.

    Electric po4er consumption total 1 4eek 90 #D) $ Q

    Electric po4er consumption total 1 year 900 #D) 52912 Q

    Electric po4er consumption idle time 1 4eek$96 #D) $ Q

    Electric po4er consumption idle time 1 year 109$ #D) 1.91 Q

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    &imensioning o( t)e ne: Com%ressed Air Insta""ation

    'or increase o( energy e((iciency rene:a" o( some %arts o( t)e

    com%ressed air insta""ation

    S i " ( " ti d t "

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    S%ecia" (ocus on regu"ation and contro"

    e: (re;uency contro""ed com%ressors

    Higher reliability and durability

    Lse $ M less energy compared to ones in use

    "4itch o)) 4hen no demand )or compressed air

    So(t start (unction to avoid )ig) s:ic)ton currents

    e: contro" )as to be com%atib"e :it) id"eruntime com%ressors

    to im%"ement o"d com%ressors in t)e ne: setu%

    connection to :aste )eat recovery

    Adsor%tion &e)umidi(ier

    E+%ected %otentia" energy saving :)en e+c)anging o"d co"d

    regenerated adsor%tion de)umidi(ier against :arm regenerated

    one 10 4 12 R

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    one 10 12 R

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    Daste *eat

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    g % g g

    :ater9

    electric po4er consumption per year $$,.20 #D)

    Baste heat potential .5 RE))iciency heat echanger .2 R

    +otential saving per year 2$2,000 #D)

    5#,-reduction per year 55 ta

    Investment costs 2,000 Q

    Tec)nica" amortisation %eriod 95 years

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    Additiona" Measures

    8e%airing o( t)e "ea#s

    T)ere is no com%ressed air net or# it)o t "ea#s E en (or ne

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    2011 by Envidatec 1$1

    T)ere is no com%ressed air net:or# :it)out "ea#s9 Even (or ne:

    net:or#s t)e "ea#age rate is a%%ro+9 10 R9 It is estimated t)at on"y

    0R o( t)e "ea#s are %ossib"e to (i+9

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    2011 by Envidatec 1$2

    y p g

    The eisting cold regenerated adsorption dehumidi)ier is used asredundancy. 7 ne4 4arm regenerated one 4ill be integrated.

    7dditional components are a ne4 a)ter cooler0 super)ine )ilter and a

    activated carbon )ilter.

    Summary o( 8ea"isation Conce%t and Saving

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    2011 by Envidatec 1$$

    Investment costs )or compressor 21,610 Q

    Investment costs adsorption dehumidi)ier $.,605 Q

    Investment costs a)ter cooler 05,20 Q

    Investment costs )ilter 01,$0 QInvestment costs storage 0$,560 Q

    7dditional costs 12,500 Q

    Investment costs total 2,$5 Q

    Tec)nica" amortisation %eriod $91 years

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    Energy E((iciency et:or# *amburg and M-

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    2011 by Envidatec 1$5

    #n "eptember ,,th0 ,%1% the )irst energy e))iciency net4ork Hamburg und8ecklenburg-2orpommern 4as )ounded in the castle o) "ch4erin.

    1% energy intensive companies )rom Hamburg and 8ecklenburg-2orpommern

    have )ormed a cross-industry net4ork

    7t the moment 11 companies participating

    1& o) the costs 4ill be )unded by the ;8L

    Includes moderated energy e))iciency tables0 initial consultings0 Q

    7ccompanied the implementation o) an energy management system to DI'

    E' 1(%%1

    unning time 6)unding time! years

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    D)at does a net:or# c)angeW

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    8esu"ts o( t)e o"dest net:or# Mode" *o)en"o)e

    ;ased on : enterprises

    7)ter * year0 at 1% enterprises

    R 1%%0%%% P& a Eenergy cost reduction

    R 1%0%%% t 5#,& a 8igitation 1*% P gross revenue& t 5#,

    R 7)ter deduction o) all costs 1% to ,% P& t 5#,renevue

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    2011 by Envidatec 11

    Energy cost reductionfrom 2007: ca. 120.000 / a

    CO2 migitationfrom 2007: ca. 17.000 t/ a

    Revenue of each reduced tonne CO2: 10 20

    E ((i i t i t t) ' t 3

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    2011 by Envidatec 12

    ContactEnvidatec /mb*

    -eritas#ai 2

    210. *amburg

    Te"9 X 0B 0 $00 5. 4 0

    'a+ X 0B 0 $00 5. 4 .0

    Emai" in(oYenvidatec9com

    Internet :::9envidatec9com

    Internet :::9iso500019ru

    Energye((icient into t)e 'uture3Energy Management System ISO 50001

    mailto:[email protected]://www.envidatec.com/http://www.envidatec.com/mailto:[email protected]