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BIM技术在隧道工程中的应用研究 Title:ApplicationofBuildingInformationModeling(BIM)inTunnelEngineering:AResearchStudy Abstract: BuildingInformationModeling(BIM)technologyhasgainedsignificantattentionandrecognitionintheconstructionindustry.Itsapplicationintunnelengineeringhasbeenanemergingresearchtopicduetoitspotentialforenhancingprojectefficiency,reducingconstructioncosts,andimprovingoverallprojectsuccess.ThispaperpresentsacomprehensiveanalysisoftheapplicationofBIMintunnelengineering,includingitsadvantages,challenges,andfutureprospects.TheresearchfindingshighlightthepotentialbenefitsofusingBIMintunnelconstructionandsuggestareasforfurtherresearchanddevelopmentinthisfield. 1.Introduction: Tunnelsarecriticalinfrastructuresthatplayavitalroleintransportationsystems,waterdistribution,andotherundergroundnetworks.Efficienttunnelconstructionprojectsrequirepreciseplanning,accuratedesign,andeffectivecoordinationamongvariousstakeholders.Traditionalconstructionmethodsoftenfacechallengessuchasconstructionerrors,delays,andcostoverruns.BIMtechnologyoffersadigitalplatformtoovercomethesechallengesbyintegratingallrelevantinformationintoacentralizedmodel.ThispaperaimstoinvestigatetheapplicationofBIMintunnelengineeringanditspotentialbenefits. 2.OverviewofBuildingInformationModeling(BIM): BIMisacollaborativeprocessthatinvolvesthecreationandmanagementofdigitalrepresentationsofphysicalandfunctionalcharacteristicsofaproject.Itenablesvariousstakeholderstoaccessandshareprojectinformation,improvingcollaborationanddecision-makingthroughoutallprojectstages.BIMfacilitatesthecreationof3Dmodels,whichcanincorporateadditionalinformationsuchascost,scheduling,andmaintenancedata. 3.ApplicationofBIMinTunnelEngineering: 3.1.DesignandVisualization:BIMallowsdesignerstocreateaccurate3Dmodelsoftunnelsandrelatedstructures,enablingbettervisualizationofthefinalproduct.Ithelpsinidentifyingconflictsandresolvingdesignissuesbeforehand,reducingreworkduringconstruction. 3.2.ClashDetectionandCoordination:Byintegratingmodelsfromdiffer