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BEPCⅡ电流引线冷却数值分析 Title:AnalysisofCoolingValuesofBEPCⅡCurrentLeads Abstract: TheBEPCⅡ(BeijingElectronPositronCollider)isalargehigh-energyphysicsexperimentthatrequiresthedistributionandcontrolofhighelectricalcurrents.Thecurrentleadsplayacrucialroleintheefficienttransmissionofthesehighcurrentswhileensuringthesystemremainscoolandstable.ThispaperaimstoanalyzethecoolingvaluesoftheBEPCⅡcurrentleadsandprovidevaluableinsightsintotheirperformanceandpotentialimprovements.Theanalysiscombinestheoreticalcalculations,computationalsimulations,andexperimentaldatatoassesstheeffectivenessofthecoolingmechanismsemployed.Thefindingshighlighttheimportanceofpropercoolinginmitigatingthermalstressesandmaintainingsystemreliability. 1.Introduction 1.1Background 1.2Objectives 2.OverviewofBEPCⅡCurrentLeads 2.1DefinitionandPurpose 2.2ImportanceofCooling 2.3CurrentLeadDesignOverview 3.TheoreticalCalculations 3.1Steady-StateHeatTransfer 3.2ThermalResistanceAnalysis 3.3MaterialAnalysis 4.ComputationalSimulations 4.1ModelingandAssumptions 4.2HeatTransferAnalysis 4.3SensitivityStudies 5.ExperimentalDataAnalysis 5.1TestSetupandProcedure 5.2DataAcquisitionandAnalysis 5.3ComparisonwithTheoreticalandSimulationResults 6.Discussion 6.1CoolingStrategiesandEfficiencies 6.2PerformanceEvaluation 6.3ChallengesandLimitations 7.PotentialImprovements 7.1AdvancedCoolingTechniques 7.2OptimizingManufacturingProcesses 7.3FutureResearchandDevelopment 8.Conclusion 8.1SummaryofFindings 8.2ImplicationsforBEPCⅡOperation 8.3RecommendationsforFutureStudies ThecompletionofthisanalysiswillcontributetoacomprehensiveunderstandingofthecoolingvaluesoftheBEPCⅡcurrentleads.ItwillprovideavaluablereferenceforengineersandresearchersinvolvedintheimprovementofcoolingtechniquesandtheoptimizationoftheBEPCⅡsystem.Furthermore,thefindingsmayhaveimplicationsforthedesignandoperationofotherhigh-energyphysicsexperimentsrequiringefficientcurrenttransmissionandcooling.

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