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1、Integrating BIM in Decision Making for Start Campus Net Zero MissionA Holistic Approach to Carbon Modelling of Emission Scopes 1,2,3 and 4India Oliveira,Sustainability Manager,Start CampusA Holistic Approach to Carbon Modelling of Emission Scopes 1,2,3 and 4 Integrating BIM in Decision Making for St
2、art Campus Net Zero MissionDC SUSTAINABILITYSUSTAINABILITYProblem to solve:While carbon reporting dashboards are readily available on the market and incredibly successful as a management tool,the problem is with how they too easily limit the ambition of sustainability goals to a narrow set of KPIs,a
3、llowing for a monopolization of targets.Fostering sustainability through digitally informed decision makingDriving Sustainability InnovationMitigation&Adaptation StrategiesParis Agreement&SBTi Net Zero Targets ComplianceESG BondsUNs SDGsSocial and Economic PressureTech&AI GrowthCollaborationStakehol
4、der EngagementCircular EconomyTransparent ReportingSupply Chain AccountabilityCounting Carbon DesignProcurementConstructionOperationsCarbon SinksPlanning&AvoidanceEmitting&Monitoring SequestrationScope 1:Direct emissions via a collaboration of all activities directly related to the design,constructi
5、on and operations phases.Scope 2:Indirect emissions via power,heat and cooling.Scope 3:Other indirect emissions,such as equipment manufacturing,raw material sourcing,transport,and end-of-life.Scope 4:Avoided emissions through design changes-Building Information Modeling(BIM).Scope 4Scopes 1,2 and 3R
6、aw material extractionRaw material extractionTransport to factoryTransport to factoryManufacturing Manufacturing ConstructionConstructionUseUseMaintenance&RepairMaintenance&RepairReplacementReplacementRefurbishment of the buildingRefurbishment of the buildingTransport to siteTransport to siteOperati
7、onal energy use efficiencyOperational energy use efficiencyOperational water use efficiency Operational water use efficiency Deconstruction Deconstruction Transport from siteTransport from siteWaste process&disposalWaste process&disposalReuse,Recovery&RecyclingReuse,Recovery&RecyclingProductProductI
8、n UseIn UseConstructionConstructionOperationsOperationsEnd of LifeEnd of LifeBeyond the life Beyond the life cyclecycle1.1.DesignDesign2.2.ProcurementProcurement3.3.ConstructionConstruction4.4.OperationsOperationsPlanning&AvoidanceEmitting&Monitoring In HouseOCPFull design control facilitating resul
9、ts and decision-makingSingle source of truthEnsuring the in-house information management process allows the company to monitor other targetsAutomation of scenarios Why Digital Construction?IncreasedcollaborationCost&time management efficiencyTransparencythroughthe supplychainFacility management,qual
10、ity&safetyMonitoring and reportingcomplianceCompanyEmployee satisfactionInternal ProcessesCompany ActionsIndustryCircular economyR&DCertifications&StandardsPlanetCarbon StrategyBiodiversitySupply ChainProject EIA CommunityStakeholder EngagementEducationLocal Community|ProjectNet Zero by 2030i)Embodi
11、ed carbon throughout the supply chainii)Opportunities for circular economy and UNs SGDs gap identificationiii)Adaptation&mitigation strategy improvementiv)Compliance reportingHolistic Carbon Model2024 2028PlanningDesign Phasei,ii,iiiPre-construction PhaseiiConstruction Phaseii,iiiOperationivEnd-of-L
12、ifei,ii,iv2024Digital Construction&Circular Economy Model1Identify carbon requirements2Identify points of automation opportunity via digital model3Plan of possible automation goals and objectives4Processes,Technology,People,Policy5SimulationDigital construction allows for a holistic gap analysis for
13、 each project.We aim to inspire corporations by re-purposing,re-routing,re-using and upcycling.RegionalOCPSustainability Strategy&Digital ConstructionAlign sustainability strategy in design structureUNs SDGsEIA&EU ComplianceBoQLink carbon data information with the modelData BaseManufatureData Base S
14、upplierData base ProductLink to platform dashboardSimulationsCost/BenefitAnalysisReportingAutomatation1ST 2ND 3RD RepresentativeResults of Scenario Analysis for Net-Zero Targets-25000-20000-15000-10000-50000500010000150002000025000tCO2e,cumulativetCO2e,cumulativeJune 2022 December 2023June 2022 Dece
15、mber 2023Predicted Roadmap to Net Zero TargetPredicted Roadmap to Net Zero TargetScope 3Sequestered Carbon,tCO2eScope 2Net Carbon,tCO2eScope 1Emissions Scope 2,3 and 4Estimations made in July 2022Current Q4-2024Actual Reduction Tons of CO2eTons of CO2eThrough re-planning and procurement strategy15 M
16、W Data Center Building 9,7728,18916%Includes:Earth+Foundations;Concrete and Steel building structures;Roads,Pavements and LandscapeFirst Building CO2 FootprintFirst Building CO2 FootprintThe perfect location for a global data centre hubSustainable Data Center Services|Start CampusStart CampusFortale
17、za 57msSo Paulo 100msBarcelona16msMarselha 23msLondon31msDublin 26msParis 24msAmsterdam29msFrankfurt 33msBilbao11msVirginia Beach60msMadrid 7msCarrier neutral facilityTwo Meet-Me independent rooms4 fiber points of entry to the campusPlanned Internet Exchange PointMilan29msLow latencies from Portugal
18、 to Europe,Latin America and AfricaDark fiber available from multiple providersOpen access to fiber and conduitCall to ActionProblem to Solve How carbon reporting dashboards can avoid monopolization of targets to achieve wider sustainability goals Get involved by contributing to the open-source raw material data base and local enterprises circular economy solutionsTimeline for Contribution:May September 2024Timeline for Product/Facility Availability:December 2024For more information and data contribution,please contact:ibostartcampus.ptIn HouseOCPThank you!