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ANSYSWorkbench9.0
Electromagnetics
PaulLethbridgeANSYSWorkbench9.0
ElectromaContentsWorkbenchElectromagneticsWorkbenchEmagRoadmapDesignModelerEnclosureSymmetryWindingBodiesWindingToolSimulationContentsWorkbenchElectromagneWorkbenchEmagRoadmapLFEmagcapabilitywillbeexposedoverseveralreleasecycles:3DMagnetostatics(9.0)3DCurrentconduction(10.0)3DElectrostaticsCircuitelementsTimetransient&2DWorkbenchv9.0isthefirstreleasewithelectromagneticanalysiscapability.Supportsolidandstranded(wound)conductorsAutomatedcomputationsofforce,torque,inductance,andcoilfluxlinkage.Easilysetupsimulationstocomputeresultsasafunctionofcurrent,stroke,orrotorangle.WorkbenchEmagcapabilityismappedto&accessedvia:ANSYSEmag(standaloneorenabledtask)ANSYSMultiphysicslicensekeys.WorkbenchEmagRoadmapLFEmagWorkbenchEmagMarketsTargetmarkets:
SolenoidactuatorsPermanentmagnetdevicesSensorsRotatingElectricmachinesSynchronousmachinesDCmachinesPermanentmagnetmachinesWorkbenchEmagMarketsTargetContentsWorkbenchElectromagneticsWorkbenchEmagRoadmapDesignModelerEnclosureSymmetryWindingbodiesWindingToolSimulationContentsWorkbenchElectromagneEnclosure&FillToolsDesignModeler(DM)includestwofeaturestoallowausertocreateavolumetric“field”bodyassociatedwithasolidmodel.Enclosuretool:Releasedat8.0.ThistoolisusedtocompletelyenclosethebodiesofamodelinamaterialtypicallyrequiredforanEmaganalysis.FillTool:Releasedat9.0(Betaat8.1).Similarfunctiontoenclosure,butonlyfillsinteriorcavities.ExampleofahemisphericalenclosurearoundanelectromagnetEnclosure&FillToolsDesignMTheFillfeaturecreateanewfrozenbodytofillthespaceoccupiedbyaholeorcavity.Usefulforinteriorcavityelectromagneticapplications.FillFeatureTheFillfeaturecreateanewEnclosureSymmetryFeature:TheEnclosurefeaturenowsupportssymmetrymodelswhentheenclosureshapeisaboxoracylinder:
Upto3threesymmetryplanescanbespecified.FullorpartialmodelscanbeincludedintheEnclosure.DuringthemodeltransferfromDesignModelertoSimulation,theenclosurefeaturewithsymmetryplanesformstwokindsofnamedselections:
OpenDomainSymmetryPlaneEnclosureSymmetryFeature:ThContentsWorkbenchElectromagneticsWorkbenchEmagRoadmapDesignModelerEnclosureSymmetryWindingbodiesWindingToolSimulationContentsWorkbenchElectromagneWindingBodies&ToolFeature:DesignModeler(DM)includestwonewtoolstoallowausertoeasilycreatecurrentcarryingcoils:WindingBodies:Usedtorepresentwoundcoilsforsourceexcitation.Theadvantageofthesebodiesisthattheyarenot3DCADobjects,andhencesimplifymodeling/meshingofwindingstructures.Upon“attachtoSimulation”,WindingBodiesareassignedasConductorbodies.WindingTool:Usedtocreatemorecomplexcoilsformotorwindings.TheWindingToolusesaWorksheettableformattodrivethecreationofmultiplyconnectedWindingBodies.OrausercanreadinatextfilecreatedbyMSExcel.Benefits:Veryeasytouse,rapidcreationofcoilwindings.WindingBodies&ToolFeature:WindingBodiesAlinebodycanbepromotedtoawindingbody.Turnsandcross-section(CS)dimensionsareenteredWindingcross-sectiondisplayedTangentorientationvector(bluearrow)definesdirectionofcurrent.WindingBodiesAlinebodycanWindingToolComplexcoilwindingsmaybecreatedusingtheWindingTool:TheWindingToolinsertsa“Winding#”intothemodeltree.A“Details”viewisusedforgeometricplacement.WindingToolComplexcoilwindiWindingToolEachWindingconsistsanumberofrelatedWindingBodies.TherelatedWindingBodiesareshownintheParts/Bodiesbranch:WindingBodiesWindingToolEachWindingconsiWindingTableFileEachWindinghasaWindingTableFileassociatedwithit.TheWindingTableFilecanbecreateddirectlyinDMTheWindingTableFilecanbeexportedtoorimportedfromatextfile.EachrowcorrespondstoacreatedWindingBody
WindingTableFileEachWindiWindingTableFileTheWindingTableFilecanbeexportedtoorimportedfromatextfile.WindingTableFileTheWindiWindingToolExampleWinding1highlightedwithrotorCompleteDCMotormodelWindingToolExampleWindingWindingOptionsCoilsmayhavedifferentradiibetweenIN&OUTslotsMultiplecoilsmaybestackedinthesameslotWindingOptionsCoilsmayhaveWindingOptions-SkewAskewanglemaybeidentifiedforthecoilwindingslotsManymotordesignsemployaskewedcoilform.WindingOptions-SkewAskewWindingSlotClashDetectionWindingToolautomaticallydetectsifthecoilclashedwithanotherpartandwarnstheuserWindingSlotClashDetectionWiContentsWorkbenchElectromagneticsWorkbenchEmagRoadmapDesignModelerEnclosureSymmetryWindingbodiesWindingToolSimulationToolsLayoutWindingbodiesMaterialPropertiesAirGapMeshSizingConductorsSolutionContentsWorkbenchElectromagneSimulationToolsLayoutElectromagneticToolbarSimulationEnvironment:EmagboundaryconditionsConductorsourceexcitationSolutionResultsVoltageCurrentDensityFieldForceTorqueInductanceFluxlinkageSimulationToolsLayoutElectroEmagSimulationWizardInteractivelywalksauserthroughrequiredanalysissteps.EmagSimulationWizardInteracWindingBodyTransferinSimulationWindingbodiesareautomaticallyassignedtoconductorbodies.FromtheWindingTool,eachPhaseWindingisassignedasauniqueconductor.Inthisexample,ConductorAconsistsof2windingbodies.WindingBodyTransferinSimulMaterialPropertySupportBothlinear&nonlinearEmagmaterialsaresupportedbyEngineeringData:
Softmaterials(Steel,iron,etc.)Constant(isotropic)Laminated(orthotropic)Linear/nonlinear(singleB-Hcurve)
Hardmaterials(NdFeB,SmCo,Alnico)LinearNonlinear
Libraryof35BHcurvesprovided35commonmaterialsMaterialPropertySupportBothMaterials–BHCurveLibraryMaterials–BHCurveLibraryMaterials–UserBHCurvesBHcurveswithupto500datapointsaresupportedMaterials–UserBHCurvesBHMaterials-PermanentMagnetsCoordinatesystemsareusedtoalignthepolarizationaxisofamagnet.CartesianandRadialMagnetizationaresupported.Materials-PermanentMagnetsCAirGapMeshSizingRequirement:.Inanelectromagneticsanalysismodelstypicallyincludenarrowgapsbetweenpartssuchasrotorsandstators.Itisimportanttohavearefinedmeshinthesegaps.Feature:AirGapMeshsizing.Asforothermeshcontrols,airgapsareassignedunderAdvancedControlsintheMeshDetail.Benefits:Easytousemeshrefinement,resultinginmoreaccurateanalysisresults.AirGapMeshSizingRequirementAirGapMeshSizingAirGapMeshSizingConductorObjectsidentifyconductorsforexcitation,inductance,andPostprocessing.Canbescopedtosolidbodies(solidconductors),orWindingBodies(woundcoils)Excitation:Supportsvoltageandcurrentloadingforsolidconductors.CurrentandphaseanglearesupportedforWindingBodies.ConductorObjectsConductorObjectsidentifyconSolutionResultsSolutionResultsVector&ContourPlotsVector/ContourisselectedintheSolutionobjects“Definition”orResultstoolbarVector&ContourPlotsVector/VectorPlotsVectorplotarrowscale,2D/3DarrowsandarrowdensitycanbedefinedallowingexcellentvisualizationoftheelectromagneticfieldVectorPlotsVectorplotarrowInductance&FluxLinkageSolutionbranchcaninsertInductance&Fluxlinkagepostprocessingcalculations.Selfandmutualinductanceiscomputed.Inductance&FluxLinkageSolutParameterSweepsTheEmaganalysiscanbefullyparameterizedsothatausercaneasilyextractforceortorqueversusrotorpositionetc.ParameterSweepsTheEmaganalyParameterSweepsGraphofresultsautomaticallycreated.ParameterSweepsGraphofresulENDEND感謝感ANSYSWorkbench9.0
Electromagnetics
PaulLethbridgeANSYSWorkbench9.0
ElectromaContentsWorkbenchElectromagneticsWorkbenchEmagRoadmapDesignModelerEnclosureSymmetryWindingBodiesWindingToolSimulationContentsWorkbenchElectromagneWorkbenchEmagRoadmapLFEmagcapabilitywillbeexposedoverseveralreleasecycles:3DMagnetostatics(9.0)3DCurrentconduction(10.0)3DElectrostaticsCircuitelementsTimetransient&2DWorkbenchv9.0isthefirstreleasewithelectromagneticanalysiscapability.Supportsolidandstranded(wound)conductorsAutomatedcomputationsofforce,torque,inductance,andcoilfluxlinkage.Easilysetupsimulationstocomputeresultsasafunctionofcurrent,stroke,orrotorangle.WorkbenchEmagcapabilityismappedto&accessedvia:ANSYSEmag(standaloneorenabledtask)ANSYSMultiphysicslicensekeys.WorkbenchEmagRoadmapLFEmagWorkbenchEmagMarketsTargetmarkets:
SolenoidactuatorsPermanentmagnetdevicesSensorsRotatingElectricmachinesSynchronousmachinesDCmachinesPermanentmagnetmachinesWorkbenchEmagMarketsTargetContentsWorkbenchElectromagneticsWorkbenchEmagRoadmapDesignModelerEnclosureSymmetryWindingbodiesWindingToolSimulationContentsWorkbenchElectromagneEnclosure&FillToolsDesignModeler(DM)includestwofeaturestoallowausertocreateavolumetric“field”bodyassociatedwithasolidmodel.Enclosuretool:Releasedat8.0.ThistoolisusedtocompletelyenclosethebodiesofamodelinamaterialtypicallyrequiredforanEmaganalysis.FillTool:Releasedat9.0(Betaat8.1).Similarfunctiontoenclosure,butonlyfillsinteriorcavities.ExampleofahemisphericalenclosurearoundanelectromagnetEnclosure&FillToolsDesignMTheFillfeaturecreateanewfrozenbodytofillthespaceoccupiedbyaholeorcavity.Usefulforinteriorcavityelectromagneticapplications.FillFeatureTheFillfeaturecreateanewEnclosureSymmetryFeature:TheEnclosurefeaturenowsupportssymmetrymodelswhentheenclosureshapeisaboxoracylinder:
Upto3threesymmetryplanescanbespecified.FullorpartialmodelscanbeincludedintheEnclosure.DuringthemodeltransferfromDesignModelertoSimulation,theenclosurefeaturewithsymmetryplanesformstwokindsofnamedselections:
OpenDomainSymmetryPlaneEnclosureSymmetryFeature:ThContentsWorkbenchElectromagneticsWorkbenchEmagRoadmapDesignModelerEnclosureSymmetryWindingbodiesWindingToolSimulationContentsWorkbenchElectromagneWindingBodies&ToolFeature:DesignModeler(DM)includestwonewtoolstoallowausertoeasilycreatecurrentcarryingcoils:WindingBodies:Usedtorepresentwoundcoilsforsourceexcitation.Theadvantageofthesebodiesisthattheyarenot3DCADobjects,andhencesimplifymodeling/meshingofwindingstructures.Upon“attachtoSimulation”,WindingBodiesareassignedasConductorbodies.WindingTool:Usedtocreatemorecomplexcoilsformotorwindings.TheWindingToolusesaWorksheettableformattodrivethecreationofmultiplyconnectedWindingBodies.OrausercanreadinatextfilecreatedbyMSExcel.Benefits:Veryeasytouse,rapidcreationofcoilwindings.WindingBodies&ToolFeature:WindingBodiesAlinebodycanbepromotedtoawindingbody.Turnsandcross-section(CS)dimensionsareenteredWindingcross-sectiondisplayedTangentorientationvector(bluearrow)definesdirectionofcurrent.WindingBodiesAlinebodycanWindingToolComplexcoilwindingsmaybecreatedusingtheWindingTool:TheWindingToolinsertsa“Winding#”intothemodeltree.A“Details”viewisusedforgeometricplacement.WindingToolComplexcoilwindiWindingToolEachWindingconsistsanumberofrelatedWindingBodies.TherelatedWindingBodiesareshownintheParts/Bodiesbranch:WindingBodiesWindingToolEachWindingconsiWindingTableFileEachWindinghasaWindingTableFileassociatedwithit.TheWindingTableFilecanbecreateddirectlyinDMTheWindingTableFilecanbeexportedtoorimportedfromatextfile.EachrowcorrespondstoacreatedWindingBody
WindingTableFileEachWindiWindingTableFileTheWindingTableFilecanbeexportedtoorimportedfromatextfile.WindingTableFileTheWindiWindingToolExampleWinding1highlightedwithrotorCompleteDCMotormodelWindingToolExampleWindingWindingOptionsCoilsmayhavedifferentradiibetweenIN&OUTslotsMultiplecoilsmaybestackedinthesameslotWindingOptionsCoilsmayhaveWindingOptions-SkewAskewanglemaybeidentifiedforthecoilwindingslotsManymotordesignsemployaskewedcoilform.WindingOptions-SkewAskewWindingSlotClashDetectionWindingToolautomaticallydetectsifthecoilclashedwithanotherpartandwarnstheuserWindingSlotClashDetectionWiContentsWorkbenchElectromagneticsWorkbenchEmagRoadmapDesignModelerEnclosureSymmetryWindingbodiesWindingToolSimulationToolsLayoutWindingbodiesMaterialPropertiesAirGapMeshSizingConductorsSolutionContentsWorkbenchElectromagneSimulationToolsLayoutElectromagneticToolbarSimulationEnvironment:EmagboundaryconditionsConductorsourceexcitationSolutionResultsVoltageCurrentDensityFieldForceTorqueInductanceFluxlinkageSimulationToolsLayoutElectroEmagSimulationWizardInteractivelywalksauserthroughrequiredanalysissteps.EmagSimulationWizardInteracWindingBodyTransferinSimulationWindingbodiesareautomaticallyassignedtoconductorbodies.FromtheWindingTool,eachPhaseWindingisassignedasauniqueconductor.Inthisexample,ConductorAconsistsof2windingbodies.WindingBodyTransferinSimulMaterialPropertySupportBothlinear&nonlinearEmagmaterialsaresupportedbyEngineeringData:
Softmaterials(Steel,iron,etc.)Constant(isotropic)Laminated(orthotropic)Linear/nonlinear(singleB-Hcurve)
Hardmaterials(NdFeB,SmCo,Alnico)LinearNonlinear
Libraryof35BHcurvesprovided35commonmaterialsMaterialPropertySupportBothMaterials–BHCurveLibraryMaterials–BHCurveLibraryMaterials–UserBHCurvesBHcurveswithupto500datapointsaresupportedMaterials–UserBHCurvesBHMaterials-PermanentMagnetsCoordinatesystemsareusedtoalignthepolarizationaxisofamagnet.CartesianandRadialMagnetizationaresupported.Materials-PermanentMagnetsCAi
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