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DigitalBIM-basedprocessforBIPVDigitalproductdatamodels2024PVPSReportIEA-PVPS

T15-20:2024Task15EnablingFrameworkfortheDevelopmentof

BIPVTask15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

modelsWhatisIEAPVPS

TCP? The

International

Energy

Agency

(IEA),

founded

in

1974,

is

an

autonomous

bodywithin

the

framework

of

the

OrganizationforEconomicCooperationandDevelopment(OECD).TheTechnologyCollaborationProgramme(TCP)wascreatedwithabeliefthatthefutureofenergysecurityandsustainabilitystartswithglobalcollaboration.Theprogrammeismadeupof6.000expertsacrossgovernment,academia,andindustrydedicatedtoadvancingcommonresearchandtheapplicationofspecificenergy

technologies.TheIEAPhotovoltaicPowerSystemsProgramme(IEAPVPS)isoneoftheTCP’swithintheIEAandwasestablishedin1993.Themissionoftheprogrammeisto“enhancetheinternationalcollaborativeeffortswhichfacilitatetheroleofphotovoltaicsolarenergyasacornerstoneinthetransitiontosustainableenergysystems.”Inordertoachievethis,theProgramme’sparticipantshaveundertakenavarietyofjointresearchprojectsinPVpowersystemsapplications.TheoverallprogrammeisheadedbyanExecutiveCommittee,comprisedofonedelegatefromeachcountryororganisationmember,whichdesignatesdistinct‘Tasks,’thatmayberesearchprojectsoractivity

areas.The25IEAPVPSparticipatingcountriesareAustralia,Austria,Belgium,Canada,China,Denmark,Finland,France,Germany,

Israel,

Italy,

Japan,

Korea,

Malaysia,

Morocco,

the

Netherlands,

Norway,

Portugal,

South

Africa,

Spain,

Sweden,Switzerland,Thailand,Turkey,andtheUnitedStatesofAmerica.TheEuropeanCommission,SolarPowerEurope,theSmartElectricPowerAlliance,theSolarEnergyIndustriesAssociation,theSolarEnergyResearchInstituteofSingaporeandEnercitySAarealso

members.Visitusat:

WhatisIEAPVPSTask

15?TheobjectiveofTask15oftheIEAPhotovoltaicPowerSystemsProgrammeistocreateanenablingframeworktoacceleratethepenetrationofBIPVproductsintheglobalmarketofrenewables,resultinginanequalplayingfieldforBIPVproducts,BAPVproductsandregularbuildingenvelopecomponents,respectingmandatoryissues,aestheticissues,reliabilityandfinancial

issues.SubtaskAofTask15isfocusedontheanalysisoftheTechnologicalInnovationSystem(TIS)forBIPVonnationallevelsinordertoidentifysystemicproblemsandrecommendactionsforindustryand/orpolicymakersthatwanttosupportthedevelopmentoftheBIPVmarketandinnovationsystem.ThisdocumentisoneofthenationalTIS-analysisreports.AsynthesisofnationalTIS-analyseswillbemadebasedonthisandothernational

reports.AuthorsMainContent:ErikaSaretta,PierluigiBonomo(SUPSI,Switzerland);RebeccaYang,PabasaraWijeratne,TharushiSamarasinghe(RMIT,Australia);PhilippeALAMY(EnerBIM,France);DanielValenciaCaballero,AsierMediavilla(Tecnalia,Spain);RalphDankers(BIPV.world,TheNetherlands);AdamiJennifer,MattiaDallapiccola(EURAC,Italy);AstridSchneider(TU

Wien).Withalsotextcontributionof:ChristianSchranz,HaraldUrban(TU

Wien)Editor:ErikaSaretta,PierluigiBonomo(SUPSI,Switzerland);RebeccaYang(RMIT,

Australia)DISCLAIMERTheIEAPVPSTCPisorganisedundertheauspicesoftheInternationalEnergyAgency(IEA)butisfunctionallyandlegallyautonomous.Views,findingsandpublicationsoftheIEAPVPSTCPdonotnecessarilyrepresenttheviewsorpoliciesoftheIEASecretariatoritsindividualmember

countriesCOVERPICTUREUniversityofAppliedSciencesandArtsofSouthernSwitzerland

(SUPSI)ISBN978-3-907281-54-3:DigitalBIM-basedprocessforBIPVDigitalproductdata

modelsINTERNATIONALENERGYAGENCYPHOTOVOLTAICPOWERSYSTEMS

PROGRAMMEDigitalBIM-basedprocessforBIPVDigitalproductdata

modelsIEAPVPSTask

15EnablingFrameworkfortheDevelopmentof

BIPVReportIEA-PVPS

T15-0:2024May2024ISBN

978-3-907281-54-3Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

modelsTABLEOF

CONTENTSAcknowledgements

6List

of

abbreviations

7Executivesummary

84123Introduction

9BIPVprocess:anoverview

10BIMforBIPVprocessandproducts

173.1 BIM,openBIMandstandardsaboutBIM

173.2 PossibleBIMapproachesfortheBIPVprocess21

3.3 BIM

and

BIPV

objects

244StateofplayforBIM-BIPVobjects

26Nationalstrategies,standards,andlibrariesforBIMobjectsincluding

BIPV 26OverviewofBIMBIPVproductsinlibrariesandonlineportals

3956StateofplayofBIMtoolsandworkflowsforBIPVprocess

46ReviewofSpecificBIM-basedBIPVtoolsandworkflowsfordesignand

simulation

506.1 Revit

Insight

506.2 Grasshopper+Ladybug

536.3 BIMsolar

556.4 BIPV

Enabler

576.5 BIPV.world

597BIM-BIPVshowcasesandcasestudies.

627.1 FranklinCollege–-Switzerland

627.2 ShuifaSingyesR&DBuilding–China

667.3 RMITDesignHub–-Australia

698ResearchactivitiesonBIM

and

BIPV

748.1 ConstructPV748.2 BIPVBOOST

758.3 Vitality

District

778.4 INFINITE

788.5 BIPV

Enabler

78Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

models8.6 InputsforBIM-BIPVtoolsandinteroperability79

8.7 BIM4BIPV

809OutlooksforBIM-basedBIPVprocessandproducts

829.1 InputsforBIM-BIPVproductstandardization

829.2 InputsforLOINdefinitionstrategyofBIM-BIPVobjectsintheBIPV

process

stages

8310 Conclusions

85References

865Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

modelsACKNOWLEDGEMENTSThispaperreceivedvaluablecontributionsfromseveralIEA-PVPSTask15membersandotherinternationalexperts.ManythankstoUniversityofAppliedSciencesandArtsofSouthernSwitzerland,theAustralianPVInstituteandAustralianRenewableEnergyAgencyinsupportingthiswork.ThankstoPhilippeAlamyfromEnerBIMforprovidingdetailsonBIMsolartool.ThankstoallBIPV.worldteamforthecontributionandtheinsightsontheirplatform.AspecialthankstotheswissworkingteamofFranklinUniversityBuilding,includingPaolo

Corti

(SUPSI)

and

the

companies

AFRY,

Flaviano

Capriotti

Architetti,

Aziende

IndustralidiLugano(AIL),SunageandChinaShufaSingyesEnergyHoldingsLimited,mainpartnersoftheproject.6Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

modelsLISTOF

ABBREVIATIONSIEAInternationalEnergy

AgencyAECArchitecture,Engineeringand

ConstructionBIPVBuildingIntegrated

PhotovoltaicsBIMBuildingInformation

ModellingPVPSPowerSystems

ProgrammeESDEnvironmentallySustainableDesignISOInternationalOrganizationfor

StandardizationIFCIndustryFoundation

ClassesIDMInformationDelivery

ManualLOINLevelofInformationNeedCDECommonData

EnvironmentIFDInternationalFrameworkforDictionariesbSDDbuildingSMARTDataDictionaryCCIConstructionClassification

InternationalETIMEuropeanTechnicalInformation

ModelECSEngineeringConsulting

ServicesMEPMechanical,Electricaland

PlumbingLODLevelof

Detail/DefinitionLOGLevelof

GeometrySNVTheSwissStandardization

AssociationCENEuropeanStandardization

CommitteeSIASwissSocietyofEngineersand

ArchitectsNATSPECNationalBuildingSpecificationSEALSolarEnergyApplication

LabLCCLifeCycle

CostLCELifeCycle

AssessmentMVDModelView

Definitions7Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

modelsEXECUTIVE

SUMMARYTheaimsofthisreport

are:GiveanoverviewofpotentialitiesofBIM(BuildingInformationModelling)fortheBIPVprocessandproductsreferringtotheavailableinternationalstandardsand

approaches;DescribeinasystematicwayBIM-basedworkflowsandtoolsinrelationwiththemainBIPVprocess

stages;PresentanoverviewofavailableBIM-basedobjectsforBIPVproductstodescribethestateofplay,regulationsandstandards;

andReportcase-studiesofsomeBIPVprojectsdevelopedwithaBIMapproachand/ortoolstosharerealexperiencesonhowtoimplementBIPVprocessesin

BIM.TheoverallgoalistopreparewiththisanalysistheinternationalworktowardscoherentopenBIM-standards

for

BIPV,

which

will

be

as

well

supported

by

IEA

Task

15

working

groups

in

theperiod2024-2027.AnoverviewoftheBIPVprocesswasconductedrepresentingthemainprocessphases,themainactivities,andthemainoutputsproducedbytheinvolvedstakeholders.ThereportreviewstheconceptsofBIMandopenBIM®,thecurrentBIMstandardsscenario,thebenefitsofBIMforBIPV,andhowcanBIMpotentiallyaffectBIPVprocessstage.ThestudyalsoprovidedthenationalstateofplayaboutdigitalBIM-BIPVproductsinsixregions,andtheirdigitalstructure/schema/framework/standardfordescribingBIPVproductandcategorize

BIPV

data.

A

list

of

current

BIM-BIPV

product

database,

online

portals

and

librariesisincludedinthe

report.ThestudyreviewstheBIMtoolsforBIPVdesign,modelling,andsimulation,andhowdigitalobjectsarehandledinthesetools.Furthermore,thisreportreviewsfivespecificBIM-basedBIPVtoolsandworkflowsfordesignandsimulation,threeBIM-BIPVshowcasesandcasestudies,aswellassevenresearchactivitiesonBIMand

BIPV.Asaconclusion,thisreportsuggestspreliminaryinputsforBIPVproductdatamanagementinaBIM-basedapproach,furtherBIM/BIPVresearchregardingdigitalproductdatamodels,pre-normativerecommendationsandstandards,andgeometricalandinformativeparameterstosupportLOIN

definition.8Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

models1

INTRODUCTIONMainTargetedAudience:Architects,BuildingEngineers,BIPVdesignersandconsultants,researchersaswellasBIPV/PV-,constructionandsoftware

industryAims:GiveanoverviewofpotentialitiesofBIMfortheBIPVprocessand

productsreferringtotheavailableinternationalstandardsand

approaches;DescribeinasystematicwayBIM-basedworkflowsandtoolsinrelationwiththemainBIPVprocess

stages;PresentanoverviewofavailableBIM-basedobjectsforBIPVproductstodescribethestateofplay,regulationsand

standards;Report

case-studies

of

some

BIPV

projects

developed

with

a

BIM

approach

and/ortoolstosharerealexperiencesonhowtoimplementBIPVprocessesin

BIM.TheoverallgoalistopreparewiththisanalysistheinternationalworktowardscoherentopenBIM-standardsforBIPV,whichwillbeaswellsupportedbyIEATask15workinggroupsintheperiod

2024-20279Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

models2BIPVPROCESS:AN

OVERVIEWHighlight:overviewoftheBIPVprocessrepresentingthemainprocessphases,themainactivities,andthemainoutputsproducedbytheinvolved

stakeholders.Therelationshipamongtheclientteam,thedesignteam,industrystakeholders,andotherparticipantsintheconstructionprocesshasgrownincreasinglyintricateinrecentyears.Thiscomplexityhasarisenduetovariousstrategiesforenhancingprocurementmethods,theriseofspecializedexpertiseinbuildingdesign,andthecontinuedcomplicationofconstructionprocesses.Innumerouscountries,thereexistsaformalizedprocedurefordesigningstructures,

with

clear

guidelines

and

documentation.

In

contrast,

some

countries

follow

a

moreinformal

approach,

passing

down

knowledge

from

one

generation

of

professionals

to

the

next.Globally,thereareseveraldesignprocessframeworksandplansofactioninusetoguideclientsthroughthestagesofbriefing,design,construction,handover,andbeyond.Theseinternationalplansofworkexhibitnotabledistinctionsamong

them.ThefollowingoverviewoftheBIPVprocessattemptstoidentifyanddescribethekeyphases,activities,andoutputstoprovideareferenceframeworkfortheanalysisofBIM-baseddigitalprocesses,BIM-baseddigitaltools,andBIPVcasestudiesdevelopedwithaBIMapproach.However,consideringthateachbuildingandeachBIPVprojectisuniqueandthateachcountrycanhaveitsprocesspeculiarities,thisoverviewdoesn’tpretendtobeexhaustiveandtobeusedasareferencefordevelopingBIPV

buildings.TheproposedoverviewhasbeenobtainedthroughthedescriptionofBIPVprocessesandrelatedinputsprovidedbytheIEAPVPSTask15experts.Specifically,theresultingBIPVprocess

has

been

based

on

experiences

coming

from

Australia,

Italy,

Spain,

and

Switzerland.TheBIPVprocessphasesaredescribedinTable1.TheidealBIPVprocessstagestartswiththestrategicplanningofthebuilding,wheretheclientsetsbuildingobjectives,includingabudget,sustainabilitytargets,energyaccreditationsandincentives.Iterativeconceptualdesignfollows,andtheclient,architect,BIPV/ESDconsultantinvestigatethefeasibilityofdifferentBIPVsolutionsthroughconceptualdrawings,preliminarydata,andsimulations.ThisiterationcontinuesinthedevelopeddesignstagewheretheBIPV/ESDconsultant,architectandtheclientinvestigateBIPVdesignscenariosandBIPVproductsolutionsinmoredetailtoobtainapreliminary/schematicproject.OnceaBIPVsolutionhasbeenagreed,allinvolvedBIPVstakeholderspreparedetailedtechnicaldrawings,schedules,andspecificationstoenabletheconstructionoftheselectedBIPVdesign,accordingtothedifferenttenderingmodels:AU:thetenderingisaftertechnical

design,CH/IT:

the

tendering

is

before

the

technical

design

stage.

Thus,

the

BIPV

manufacturerprovidestechnical

details.DE:therearedifferentmodelsfortenderingdependingonproject

type:o Inmostlyverylargeprojectswitha“generalcontractor”thetenderingoftheoverallprojectisdoneaccordingtotheprojectdesignplanningand

client10本报告来源于三个皮匠报告站(),由用户Id:866864下载,文档Id:616505,下载日期:2025-03-08Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

modelsrequirementswhicharefixedinthe“projectbrief”.Thedrawingofdetailsandtenderingofsubcontractors/specializedcompaniesisdonebythe“generalcontractor”.Inpublicbuildings/largerbuildingswithpublicfundingtheremustbe

a“functionaltendering”whichisnotyetproductspecifictoallowtherequiredcompetitiononthemarkettofindthecheapest

offerInprojectswithoutsuchrequirementstherearealldifferentformsoftenderspossibleincludingproductspecifictenderswiththegoaltoidentifythebestpriceoffer/

installerAfterthemanufacturingstageiscompleted,basedonthetechnicaldrawingsthematerialsneeded

for

the

BIPV

realization

are

shipped

to

the

project

site.

The

BIPV

envelope

is

then

builtbasedonthetechnicaldrawings,specificationsandinstructionsforinstallation,whilethemonitoringandcontrollingoftheBIPVprojectinstallationprocessiscarriedoutduringtheconstructionphase.Hence,testingandcommissioningoftheBIPVsystemisdoneandthebuildingwithBIPVprojectinformationishandedoverthebuildingoperators.ThelatestphasebeforetheendoflifeisrepresentedbytheO&MwheremonitoringshouldbeconductedinordertomaintainhighBIPVenvelope

performances.Foreachofthesephases,mainactivitiesofkeyBIPVstakeholdersarereportedinTable2,whereasTable3describesthemainoutputsoftheBIPVprocess

phases.Table1.DescriptionofthemainBIPVprocess

phasesPHASEDESCRIPTION1.

STRATEGICPLANNINGThe

initial

stage

of

the

building

process

where

the

client

setsbuildingobjectives,includingabudget,BIPVandsustainabilitytargets,energyaccreditationsand

incentives2.

CONCEPTUALDESIGNIterativedesignstagewheretheclient,architect,BIPV/

ESDconsultantinvestigatethefeasibilityofdifferentBIPVsolutionsthroughconceptualdrawings,preliminarydata,and

simulations3.

DEVELOPEDDESIGNIterative

design

stage

where

the

BIPV

/

ESD

consultant,architectandtheclientinvestigateBIPVdesignscenariosandBIPVproductsolutionsinmoredetailtoobtainapreliminary/schematic

project4.

TECHNICALDESIGNAllinvolvedBIPVstakeholderspreparedetailed

technicaldrawings,schedules,andspecificationstoenabletheconstructionoftheselectedBIPVdesign.(AU:thetenderingisaftertechnicaldesign,CH/IT:thetenderingisbeforethetechnicaldesignstage.Thus,theBIPVmanufacturerprovidestechnical

details)11Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

models5.

BIPVMANUFACTURINGAt

this

stage,

materials

needed

for

BIPV

realization

areproducedandshippedtotheprojectsite6.INSTALLATIONRealizationofBIPVenvelopebasedonthetechnical

drawings,specifications,andinstructionsforinstallation.MonitoringandcontrollingtheBIPVprojectinstallationprocess.TestingandcommissioningtheBIPV

system7.HAND-OVERHandover

the

building

with

the

BIPV

project

information

to

thebuilding

operators8.

O&MOperation,monitoring,andmaintenanceoftheBIPV

envelope,andenergy

management9.DISMANTLINGDismantlingoftheBIPVinstallationorpartsofitdueto

ageing/changeofthe

project10.ENDOF

LIFEReuseofstillusablecomponents,recyclingof

valuablematerials,disposalofwastematerialTable2.DescriptionofthemainBIPVstakeholders’rolesand

activitiesPHASESTAKEHOLDERS’ACTIVITYDESCRIPTION1.

STRATEGICPLANNINGTheClientprovidesinputsaboutBIPV

energy/sustainabilitytargets,energyaccreditationsandgovernmentincentives.Moreover,theClientprovidesoverallbuildingideaandbudgetaryconstraints.BasedontheClientinputs,theArchitectprovidesinsight

onBIPVapplicationtypesandproducttypes,sustainableandenergy

targets.The

BIPV

/

ESD

consultant

can

help

the

Architect

to

exploreBIPVsolutionsinthemarketandtheir

values/advantages.12Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

models2.

CONCEPTUALDESIGNTheClientprovidesfeedbackabout

proposedconceptualBIPVsolutions,costs,andprofitability.TheArchitectdesignstheconceptofthebuildingenvelopeandidentifiesBIPVsolutions(BIPVsurfacesandtypeofinstallations).TheArchitectcanbesupportedbytheBIPV/ESDConsultantforsolaranalysisandidentificationofBIPVsolutions.TheBIPV/ESDConsultantcansupporttheArchitectbyperformingsolaranalysis,byidentifyingsuitableareasforBIPVandbycollectinginputsfromBIPVManufacturertodeveloptechno-economic

evaluations.TheBIPVModuleManufacturercanbeinvolvedforearlyconsultingonaveragecostsoraveragepowerofcustomBIPVsolutions(tosupportroughcostestimationandpreliminaryannualyield

estimation).3.

DEVELOPEDDESIGNTheClientprovidesfeedbackandapprovalforthe

proposedBIPVsolutions.TheArchitectdevelopsBIPVdesignscenarioswiththeselectedBIPV

solutions.TheBIPV/ESDConsultantcollectsinputsfromtheArchitect,andfromtheBIPVmoduleManufacturerandEnvelopeEngineer(ifinvolved)toprovideestimationsofBIPVproduction,costs/profitability,impactonbuildingperformances(thermal,

daylighting).TheBIPVModuleManufacturercanbeinvolvedforprovidingtechno-economicinputsonspecificBIPVproductsorforconsultingoncustomBIPV

modules.TheEnvelopeEngineercanbeinvolvedfor

earlyconsultingonmountingstructures(prefeasibilityandaveragecost).

TheEnvelopeEngineermayupdatetheBIPVdesigndrawingsfromthearchitect,basedonthethermalandventilationimpact,daylightingandglareresultsprovidedbytheESDconsultant.TheFireEngineercanbeinvolvedintheearlystagestoverifythefiresafetyrequirementsoftheproposedBIPVdesignscenarios(AU).BasedontheinputaboutBIPVdesigns,theBuildingContractordevelopsthepreliminaryestimationsandschedulesofthewholebuildingincluding

BIPV.4.

TECHNICALDESIGNTheClientapprovesaspecificBIPVdesign.The

Architect

updates

the

architectural

drawings

of

the

BIPVenvelopewithspecificationsoftheBIPV

modules.TheBIPV/EPDConsultantdeliversthefinalreportoftheBIPVproject,includingenergyproduction,cost/profitability,impactonbuilding

performances.13Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

modelsTheBIPVModuleManufacturer/Supplier

providestechnicaldetailsoftheselectedBIPV

modules.TheElectricalEngineerandinstallersdevelopthefinalBIPVsystem'selectricalsystemdesign(Wiringandcablingsystemdesign)drawings.Theycheckthesystemcompliancewithlocalbuildingcodesand

standards.•TheEnvelopeEngineerdevelopsthestructuralandmechanicaldrawingsoftheBIPVenvelopesystemconsideringinputsfromtheArchitect,BIPVModuleManufacturers/SuppliersandElectricalEngineerandinstallers.TheFireEngineerdevelopsthefireperformancedesignbasedontheinputsfromtheArchitect,BIPVmodulesuppliers/manufacturers,ElectricalEngineerandinstallersandtheEnvelopeEngineer

(AU).TheBuildingContractorappointselectricalinstallersandfacade/roofinstallers.TheBuildingContractordevelopstheprojectbudgetandprojectscheduleofthewholebuildingincluding

BIPV.5.

BIPVMANUFACTURINGTheBIPVmanufacturerproducestheBIPV

modules.TheElectricalEngineerorderselectricalequipmentandshipsthemtoproject

site.Facade/roofinstallerandtheEngineeringteamwiththeprojectprocurementteamtender/ordertheitemsrequired

forthebuilding

envelope.6.

INSTALLATIONElectrical

Installers

connect

BIPV

modules

and

electricalequipment.Facade/RoofInstallersinstallmountingstructuresandBIPV

modules.The

Building

Contractor

coordinates

the

electrical

installersandfacade/roofinstallerstocarryouttheBIPVinstallationwork.TheBuildingContractormonitorstheinstallationprogress.ElectricalEngineercreatesthephysicalinfrastructureandthedigitalplatformforBIPVsystemmonitoringand

O&M.7.

HAND-OVERTheBuildingContractorhandstheprojectand

documentsover

to

the

Client

or

Facilities

Management

team

on

behalf

oftheClient.8.

O&MThe

Facility

Manager

and

team

monitors

the

performanceoftheBIPVsystem,arrangescleaning,inspection,repair,andreplacement.Thebuilding/communityenergymanageroptimizestheuseofthesolarelectricityproducedwithinthebuilding/energycommunity/energymarket/distribution

network.14Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

models9.DISMANTLINGElectrical

Installers

disconnect

BIPV

modules

and

electricalequipment.Facade/RoofInstallersuninstallmountingstructuresandBIPV

modules.10.ENDOF

LIFEThe

PV

/

BIPV-trader

is

collecting

the

“second

hand”-modulesforanew

purpose.The

PV

/

BIPV-producer

is

taking

the

dis-functional

modulesbackforrepairorinternalrecycling.Theconstructioncompany/electricalinstallersaremovingthemodulesandcomponentstoaspecializedplacefordisposalofelectricwaste

material.Thespecializedrecyclingcompanyisde-constructingtheBIPV-elementsandisselectingmaterialforrecyclingorwaste

disposalTable3.DescriptionofthemainoutputsoftheBIPVprocess

phasesPHASEOUTPUTS1.

STRATEGICPLANNINGBudget,

BIPV

energy

and

sustainability

targets,

aestheticalappearance2.

CONCEPTUALDESIGNConceptual2D/3DmodelofBIPV

solutions,FeasibilityreportwithBIPVenergyoutput,roughcostestimationandprofitabilityoftheproposed

solutions,Planning

and

zoning

permit

(AU:

planning

permit

includingtheBIPV

solution)3.

DEVELOPEDDESIGN2Dschematicdesigndrawings/3DschematicmodelsofthechosenBIPV

designReportwithpreliminaryBIPVenergyproductionandcostestimationsforthechosenBIPV

designThermal&ventilationimpact,daylightingandglarecontrol,structuralimpact,andfiresafetyassessment(AUS)BuildingPermitApplication(CH)4.

TECHNICALDESIGNDetaileddrawingsand/or3DdetailedmodelsoftheBIPVenvelopeTechnicaldrawingswithspecificationsofBIPVmodulesmountingstructure,electrical

configurationDetailedinformationaboutBIPVenergyproductionandcostestimationforthewholeBIPV

envelope15Task15EnablingFrameworkfortheDevelopmentofBIPV–DigitalBIM-basedprocessforBIPVDigitalproductdata

models5.

BIPVMANUFACTURINGInstructionsforBIPVcomponentsinstallation,testing

andcommissioning6.

INSTALLATIONAs-built

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