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EAST适合高性能等离子体运行的偏滤器工程研究 Title:EAST:EngineeringResearchonHigh-PerformanceElectromagneticFilterforPlasmaOperations Abstract: TheExperimentalAdvancedSuperconductingTokamak(EAST)isanadvancedfusiondevicedesignedforexploringplasmaphysicsandfusionenergyresearch.Inordertoachieveefficientplasmaconfinementandavoiddisruptions,itiscrucialtoremoveimpuritiesandparticlesfromtheplasma.Thisresearchpaperfocusesontheengineeringresearchonhigh-performanceelectromagneticfilterssuitableforEASTanditsplasmaoperations.Thepaperdiscussestheimportanceofeffectivefiltrationsystems,describestheprinciplesofelectromagneticfiltration,exploresthechallenges,andpresentspotentialsolutionsforenhancingtheperformanceofthefilter.Theresearchaimstobroadenourunderstandingofplasmafiltrationandcontributetotheongoingeffortsinadvancingfusionenergyresearch. 1.Introduction: 1.1BackgroundoftheEASTproject 1.2Importanceofeffectiveplasmafiltration 1.3Objectiveoftheresearch 2.PrinciplesofElectromagneticFiltration: 2.1Overviewofelectromagneticfiltration 2.2Applicationsofelectromagneticfiltersinplasmaoperations 2.3Workingprinciplesanddesignconsiderations 3.ChallengesinHigh-PerformanceElectromagneticFiltration: 3.1Understandingimpuritiesandparticlesinplasma 3.2Energylossesandefficiencyconcerns 3.3Maintenanceandoperationalchallenges 4.PotentialSolutionsforEnhancingFilterPerformance: 4.1Advancedmaterialsforfilterconstruction 4.2Optimizationoffilterdesignandgeometry 4.3Integrationofintelligentcontrolsystems 4.4Enhancedmonitoringanddiagnostics 5.ResearchMethodology: 5.1Experimentalsetupanddatacollection 5.2Simulationstudiesandmodeling 5.3Dataanalysistechniques 6.ResultsandDiscussion: 6.1Evaluationoffiltrationperformanceindifferentoperatingconditions 6.2Analysisofimpurityremovalefficiency 6.3Energylossesandoptimizationstrategies 6.4Validityoftheoreticalmodelsandsimulationstudies 7.Conclusion: 7.1Summaryoftheresearchfindings 7.2PotentialforfutureimprovementsinelectromagneticfiltrationsystemsforEAST 7.3Implicationsforfusionenergyre