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ComputeLagrangianWPSStrain Class Reference

#include <ComputeLagrangianWPSStrain.h>

Inheritance diagram for ComputeLagrangianWPSStrain:
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Public Types

enum  KinematicApproximation { KinematicApproximation::Linear, KinematicApproximation::Quadratic, KinematicApproximation::RashidApproximate, KinematicApproximation::RashidEigen }
 Approximation used to convert the inverse incremental deformation gradient f^{-1} into the increment in the spatial velocity gradient (and its symmetric / skew parts). More...
 
enum  FBarMode { FBarMode::Total, FBarMode::Incremental }
 What F gets F-bar volumetric correction applied to. More...
 
enum  TEST_TYPE
 
typedef DataFileName DataFileParameterType
 

Public Member Functions

 ComputeLagrangianWPSStrain (const InputParameters &params)
 
virtual void initialSetup () override
 
template<>
void initialSetup ()
 
template<>
void initialSetup ()
 
template<>
void initialSetup ()
 
virtual const dof_id_typegetElementID (const std::string &id_parameter_name, unsigned int comp=0) const override
 
dof_id_type getElementID (const Elem *elem, unsigned int elem_id_index) const
 
virtual const dof_id_typegetElementIDNeighbor (const std::string &id_parameter_name, unsigned int comp=0) const override
 
virtual const dof_id_typegetElementIDByName (const std::string &id_parameter_name) const override
 
virtual const dof_id_typegetElementIDNeighborByName (const std::string &id_parameter_name) const override
 
MaterialBasegetMaterial (const std::string &name)
 
MaterialBasegetMaterialByName (const std::string &name, bool no_warn=false, bool no_dep=false)
 
MaterialBasegetMaterialByName (const std::string &name, bool no_warn=false)
 
MaterialBasegetMaterialByName (const std::string &name, bool no_warn=false)
 
virtual bool isBoundaryMaterial () const override
 
virtual const std::unordered_set< unsigned int > & getMatPropDependencies () const override
 
virtual void subdomainSetup () override
 
 CreateMooseEnumClass (ConstantTypeEnum, NONE, ELEMENT, SUBDOMAIN)
 
bool ghostable () const override final
 
virtual void resolveOptionalProperties () override
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty ()
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty ()
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty ()
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialPropertyByName (const std::string &prop_name)
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialPropertyByName (const std::string &prop_name)
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialPropertyByName (const std::string &prop_name)
 
const MaterialProperty< T > & getZeroMaterialProperty (Ts... args)
 
const MaterialProperty< T > & getZeroMaterialProperty (Ts... args)
 
const MaterialProperty< T > & getZeroMaterialProperty (Ts... args)
 
virtual void initStatefulProperties (const unsigned int n_points)
 
virtual bool isInterfaceMaterial ()
 
virtual void resetProperties ()
 
virtual void computePropertiesAtQp (unsigned int qp)
 
const MaterialProperty< T > & getZeroMaterialPropertyByName (Ts... args)
 
virtual const std::set< std::string > & getRequestedItems () override
 
virtual const std::set< std::string > & getSuppliedItems () override
 
const std::set< unsigned int > & getSuppliedPropIDs () const
 
void checkStatefulSanity () const
 
std::set< OutputName > getOutputs ()
 
bool hasStatefulProperties () const
 
bool hasRestoredProperties () const
 
void setFaceInfo (const FaceInfo &fi)
 
void setActiveProperties (const std::unordered_set< unsigned int > &needed_props)
 
bool hasActiveProperties ()
 
bool forceStatefulInit () const
 
virtual bool enabled () const
 
std::shared_ptr< MooseObjectgetSharedPtr ()
 
std::shared_ptr< const MooseObjectgetSharedPtr () const
 
bool isKokkosObject () const
 
MooseAppgetMooseApp () const
 
const std::string & type () const
 
const std::string & name () const
 
std::string typeAndName () const
 
MooseObjectParameterName uniqueParameterName (const std::string &parameter_name) const
 
MooseObjectName uniqueName () const
 
const InputParametersparameters () const
 
const hit::Node * getHitNode () const
 
bool hasBase () const
 
const std::string & getBase () const
 
const TgetParam (const std::string &name) const
 
std::vector< std::pair< T1, T2 > > getParam (const std::string &param1, const std::string &param2) const
 
const TqueryParam (const std::string &name) const
 
const TgetRenamedParam (const std::string &old_name, const std::string &new_name) const
 
T getCheckedPointerParam (const std::string &name, const std::string &error_string="") const
 
bool isParamValid (const std::string &name) const
 
bool isParamSetByUser (const std::string &name) const
 
void connectControllableParams (const std::string &parameter, const std::string &object_type, const std::string &object_name, const std::string &object_parameter) const
 
void paramError (const std::string &param, Args... args) const
 
void paramWarning (const std::string &param, Args... args) const
 
void paramWarning (const std::string &param, Args... args) const
 
void paramInfo (const std::string &param, Args... args) const
 
std::string messagePrefix (const bool hit_prefix=true) const
 
std::string errorPrefix (const std::string &) const
 
void mooseError (Args &&... args) const
 
void mooseDocumentedError (const std::string &repo_name, const unsigned int issue_num, Args &&... args) const
 
void mooseErrorNonPrefixed (Args &&... args) const
 
void mooseWarning (Args &&... args) const
 
void mooseWarning (Args &&... args) const
 
void mooseWarningNonPrefixed (Args &&... args) const
 
void mooseWarningNonPrefixed (Args &&... args) const
 
void mooseDeprecated (Args &&... args) const
 
void mooseDeprecated (Args &&... args) const
 
void mooseDeprecatedNoTrace (Args &&... args) const
 
void mooseInfo (Args &&... args) const
 
void callMooseError (std::string msg, const bool with_prefix, const hit::Node *node=nullptr, const bool show_trace=true) const
 
std::string getDataFileName (const std::string &param) const
 
std::string getDataFileNameByName (const std::string &relative_path) const
 
std::string getDataFilePath (const std::string &relative_path) const
 
const std::vector< SubdomainName > & blocks () const
 
unsigned int numBlocks () const
 
virtual const std::set< SubdomainID > & blockIDs () const
 
unsigned int blocksMaxDimension () const
 
bool hasBlocks (const SubdomainName &name) const
 
bool hasBlocks (const std::vector< SubdomainName > &names) const
 
bool hasBlocks (const std::set< SubdomainName > &names) const
 
bool hasBlocks (SubdomainID id) const
 
bool hasBlocks (const std::vector< SubdomainID > &ids) const
 
bool hasBlocks (const std::set< SubdomainID > &ids) const
 
bool isBlockSubset (const std::set< SubdomainID > &ids) const
 
bool isBlockSubset (const std::vector< SubdomainID > &ids) const
 
bool hasBlockMaterialProperty (const std::string &prop_name)
 
const std::set< SubdomainID > & meshBlockIDs () const
 
virtual bool blockRestricted () const
 
virtual void checkVariable (const MooseVariableFieldBase &variable) const
 
virtual const std::set< BoundaryID > & boundaryIDs () const
 
const std::vector< BoundaryName > & boundaryNames () const
 
unsigned int numBoundaryIDs () const
 
bool hasBoundary (const BoundaryName &name) const
 
bool hasBoundary (const std::vector< BoundaryName > &names) const
 
bool hasBoundary (const BoundaryID &id) const
 
bool hasBoundary (const std::vector< BoundaryID > &ids, TEST_TYPE type=ALL) const
 
bool hasBoundary (const std::set< BoundaryID > &ids, TEST_TYPE type=ALL) const
 
bool isBoundarySubset (const std::set< BoundaryID > &ids) const
 
bool isBoundarySubset (const std::vector< BoundaryID > &ids) const
 
bool hasBoundaryMaterialProperty (const std::string &prop_name) const
 
virtual bool boundaryRestricted () const
 
const std::set< BoundaryID > & meshBoundaryIDs () const
 
virtual bool checkVariableBoundaryIntegrity () const
 
virtual void timestepSetup ()
 
virtual void jacobianSetup ()
 
virtual void residualSetup ()
 
virtual void customSetup (const ExecFlagType &)
 
const ExecFlagEnumgetExecuteOnEnum () const
 
const std::set< MooseVariableFieldBase *> & getMooseVariableDependencies () const
 
std::set< MooseVariableFieldBase *> checkAllVariables (const DofObjectType &dof_object, const std::set< MooseVariableFieldBase * > &vars_to_omit={})
 
virtual std::set< MooseVariableFieldBase *> checkVariables (const libMesh::Node &node, const std::set< MooseVariableFieldBase * > &vars_to_check)
 
std::set< MooseVariableFieldBase *> checkVariables (const libMesh::Elem &element, const std::set< MooseVariableFieldBase * > &vars_to_check)
 
void addMooseVariableDependency (MooseVariableFieldBase *var)
 
void addMooseVariableDependency (const std::vector< MooseVariableFieldBase * > &vars)
 
const std::vector< MooseVariableScalar *> & getCoupledMooseScalarVars ()
 
const std::set< TagID > & getScalarVariableCoupleableVectorTags () const
 
const std::set< TagID > & getScalarVariableCoupleableMatrixTags () const
 
const FunctiongetFunction (const std::string &name) const
 
const FunctiongetFunctionByName (const FunctionName &name) const
 
bool hasFunction (const std::string &param_name) const
 
bool hasFunctionByName (const FunctionName &name) const
 
Moose::Kokkos::Function getKokkosFunction (const std::string &name) const
 
const TgetKokkosFunction (const std::string &name) const
 
Moose::Kokkos::Function getKokkosFunctionByName (const FunctionName &name) const
 
const TgetKokkosFunctionByName (const FunctionName &name) const
 
bool hasKokkosFunction (const std::string &param_name) const
 
bool hasKokkosFunctionByName (const FunctionName &name) const
 
UserObjectName getUserObjectName (const std::string &param_name) const
 
const TgetUserObject (const std::string &param_name, bool is_dependency=true) const
 
const TgetUserObjectByName (const UserObjectName &object_name, bool is_dependency=true) const
 
const UserObjectBasegetUserObjectBase (const std::string &param_name, bool is_dependency=true) const
 
const UserObjectBasegetUserObjectBaseByName (const UserObjectName &object_name, bool is_dependency=true) const
 
bool isImplicit ()
 
Moose::StateArg determineState () const
 
bool isDefaultPostprocessorValue (const std::string &param_name, const unsigned int index=0) const
 
bool hasPostprocessor (const std::string &param_name, const unsigned int index=0) const
 
bool hasPostprocessorByName (const PostprocessorName &name) const
 
std::size_t coupledPostprocessors (const std::string &param_name) const
 
const PostprocessorName & getPostprocessorName (const std::string &param_name, const unsigned int index=0) const
 
const VectorPostprocessorValuegetVectorPostprocessorValue (const std::string &param_name, const std::string &vector_name) const
 
const VectorPostprocessorValuegetVectorPostprocessorValue (const std::string &param_name, const std::string &vector_name, bool needs_broadcast) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueByName (const VectorPostprocessorName &name, const std::string &vector_name, bool needs_broadcast) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueOld (const std::string &param_name, const std::string &vector_name) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueOld (const std::string &param_name, const std::string &vector_name, bool needs_broadcast) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueOldByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueOldByName (const VectorPostprocessorName &name, const std::string &vector_name, bool needs_broadcast) const
 
const ScatterVectorPostprocessorValuegetScatterVectorPostprocessorValue (const std::string &param_name, const std::string &vector_name) const
 
const ScatterVectorPostprocessorValuegetScatterVectorPostprocessorValueByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
const ScatterVectorPostprocessorValuegetScatterVectorPostprocessorValueOld (const std::string &param_name, const std::string &vector_name) const
 
const ScatterVectorPostprocessorValuegetScatterVectorPostprocessorValueOldByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
bool hasVectorPostprocessor (const std::string &param_name, const std::string &vector_name) const
 
bool hasVectorPostprocessor (const std::string &param_name) const
 
bool hasVectorPostprocessorByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
bool hasVectorPostprocessorByName (const VectorPostprocessorName &name) const
 
const VectorPostprocessorName & getVectorPostprocessorName (const std::string &param_name) const
 
virtual void meshChanged ()
 
void buildOutputHideVariableList (std::set< std::string > variable_names)
 
void setRandomResetFrequency (ExecFlagType exec_flag)
 
unsigned long getRandomLong () const
 
Real getRandomReal () const
 
unsigned int getSeed (std::size_t id)
 
unsigned int getMasterSeed () const
 
bool isNodal () const
 
ExecFlagType getResetOnTime () const
 
void setRandomDataPointer (RandomData *random_data)
 
virtual unsigned int getElementIDIndex (const std::string &id_parameter_name, unsigned int comp=0) const
 
virtual unsigned int getElementIDIndexByName (const std::string &id_name) const
 
bool hasElementID (const std::string &id_name) const
 
dof_id_type maxElementID (unsigned int elem_id_index) const
 
dof_id_type minElementID (unsigned int elem_id_index) const
 
bool areElemIDsIdentical (const std::string &id_name1, const std::string &id_name2) const
 
std::unordered_map< dof_id_type, std::set< dof_id_type > > getElemIDMapping (const std::string &id_name1, const std::string &id_name2) const
 
std::set< dof_id_typegetAllElemIDs (unsigned int elem_id_index) const
 
std::set< dof_id_typegetElemIDsOnBlocks (unsigned int elem_id_index, const std::set< SubdomainID > &blks) const
 
const std::unordered_map< std::string, std::vector< MooseVariableFieldBase *> > & getCoupledVars () const
 
const std::vector< MooseVariableFieldBase *> & getCoupledMooseVars () const
 
const std::vector< MooseVariable *> & getCoupledStandardMooseVars () const
 
const std::vector< VectorMooseVariable *> & getCoupledVectorMooseVars () const
 
const std::vector< ArrayMooseVariable *> & getCoupledArrayMooseVars () const
 
void addFEVariableCoupleableVectorTag (TagID tag)
 
void addFEVariableCoupleableMatrixTag (TagID tag)
 
std::set< TagID > & getFEVariableCoupleableVectorTags ()
 
const std::set< TagID > & getFEVariableCoupleableVectorTags () const
 
std::set< TagID > & getFEVariableCoupleableMatrixTags ()
 
const std::set< TagID > & getFEVariableCoupleableMatrixTags () const
 
auto & getWritableCoupledVariables () const
 
bool hasWritableCoupledVariables () const
 
const ADVariableValuegetADDefaultValue (const std::string &var_name) const
 
const ADVectorVariableValuegetADDefaultVectorValue (const std::string &var_name) const
 
const ADVariableGradientgetADDefaultGradient () const
 
const ADVectorVariableGradientgetADDefaultVectorGradient () const
 
const ADVariableSecondgetADDefaultSecond () const
 
const ADVectorVariableCurlgetADDefaultCurl () const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagValuesByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::VariableGradient kokkosCoupledVectorTagGradientByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableGradient kokkosCoupledVectorTagGradientsByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagNodalValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagNodalValuesByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagDofValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagDofValuesByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagValues (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::VariableGradient kokkosCoupledVectorTagGradient (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableGradient kokkosCoupledVectorTagGradients (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagNodalValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagNodalValues (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagDofValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledVectorTagDofValues (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorValuesByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorTagVectorGradientByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorTagVectorGradientsByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorNodalValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorNodalValuesByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorDofValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorDofValuesByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorValues (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorTagVectorGradient (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorTagVectorGradients (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorNodalValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorNodalValues (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorDofValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorTagVectorDofValues (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledValues (const std::string &var_name) const
 
Moose::Kokkos::VariableGradient kokkosCoupledGradient (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableGradient kokkosCoupledGradients (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledNodalValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledNodalValues (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledDofValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledDofValues (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledValuesOld (const std::string &var_name) const
 
Moose::Kokkos::VariableGradient kokkosCoupledGradientOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableGradient kokkosCoupledGradientsOld (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledNodalValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledNodalValuesOld (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledDofValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledDofValuesOld (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledValuesOlder (const std::string &var_name) const
 
Moose::Kokkos::VariableGradient kokkosCoupledGradientOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableGradient kokkosCoupledGradientsOlder (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledNodalValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledNodalValuesOlder (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledDofValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledDofValuesOlder (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledDot (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledDots (const std::string &var_name) const
 
Moose::Kokkos::VariableValue kokkosCoupledNodalDot (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosCoupledNodalDots (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorGradient (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorNodalValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorDofValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorValues (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorGradients (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorNodalValues (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorDofValues (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorGradientOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorNodalValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorDofValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorValuesOld (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorGradientsOld (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorNodalValuesOld (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorDofValuesOld (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorGradientOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorNodalValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorDofValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorValuesOlder (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableGradient kokkosCoupledVectorGradientsOlder (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorNodalValuesOlder (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorDofValuesOlder (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorDot (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorNodalDot (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorDots (const std::string &var_name) const
 
Moose::Kokkos::VectorVariableValue kokkosCoupledVectorNodalDots (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagValuesByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledVectorTagGradientByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledVectorTagGradientsByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagNodalValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagNodalValuesByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagDofValueByName (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagDofValuesByName (const std::string &var_name, const std::string &tag_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagValues (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledVectorTagGradient (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledVectorTagGradients (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagNodalValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagNodalValues (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagDofValue (const std::string &var_name, const std::string &tag_param_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledVectorTagDofValues (const std::string &var_name, const std::string &tag_param_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledValues (const std::string &var_name) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledGradient (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledGradients (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledNodalValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledNodalValues (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledDofValue (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledDofValues (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledValuesOld (const std::string &var_name) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledGradientOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledGradientsOld (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledNodalValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledNodalValuesOld (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledDofValueOld (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledDofValuesOld (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledValuesOlder (const std::string &var_name) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledGradientOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableGradient kokkosADCoupledGradientsOlder (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledNodalValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledNodalValuesOlder (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledDofValueOlder (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledDofValuesOlder (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledDot (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledDots (const std::string &var_name) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledNodalDot (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::ADVariableValue kokkosADCoupledNodalDots (const std::string &var_name) const
 
Moose::Kokkos::Scalar< const RealkokkosCoupledDotDu (const std::string &var_name, unsigned int comp=0) const
 
Moose::Kokkos::VariableValue kokkosZeroValue () const
 
Moose::Kokkos::VariableGradient kokkosZeroGradient () const
 
Moose::Kokkos::VariableValue kokkosZeroNodalValue () const
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialProperty (const std::string &name, MaterialData &material_data, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialProperty (const std::string &name, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialProperty (const std::string &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialProperty (const std::string &name, MaterialData &material_data, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialProperty (const std::string &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialProperty (const std::string &name, const unsigned int state=0)
 
const ADMaterialProperty< T > & getADMaterialProperty (const std::string &name, MaterialData &material_data)
 
const ADMaterialProperty< T > & getADMaterialProperty (const std::string &name)
 
const ADMaterialProperty< T > & getADMaterialProperty (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOld (const std::string &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOld (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOld (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOlder (const std::string &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOlder (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOlder (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const MaterialPropertyName &name, MaterialData &material_data, const unsigned int state)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const std::string &name, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const std::string &name, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const MaterialPropertyName &name, MaterialData &material_data, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const std::string &prop_name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const std::string &prop_name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const MaterialPropertyName &name, MaterialData &material_data)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const std::string &prop_name)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const MaterialPropertyName &name)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const std::string &prop_name)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const MaterialPropertyName &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const std::string &prop_name)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const std::string &prop_name)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const MaterialPropertyName &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const std::string &prop_name)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const std::string &prop_name)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const MaterialPropertyName &name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyByName (const std::string &prop_name_in)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyOldByName (const std::string &prop_name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyOlderByName (const std::string &prop_name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialProperty (const std::string &name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyOld (const std::string &name)
 
Moose::Kokkos::MaterialProperty< T, dimension > getKokkosMaterialPropertyOlder (const std::string &name)
 
std::pair< const MaterialProperty< T > *, std::set< SubdomainID > > getBlockMaterialProperty (const MaterialPropertyName &name)
 
std::pair< Moose::Kokkos::MaterialProperty< T, dimension >, std::set< SubdomainID > > getKokkosBlockMaterialProperty (const MaterialPropertyName &name)
 
std::set< SubdomainIDgetMaterialPropertyBlocks (const std::string &name)
 
std::vector< SubdomainName > getMaterialPropertyBlockNames (const std::string &name)
 
std::set< BoundaryIDgetMaterialPropertyBoundaryIDs (const std::string &name)
 
std::vector< BoundaryName > getMaterialPropertyBoundaryNames (const std::string &name)
 
void checkBlockAndBoundaryCompatibility (std::shared_ptr< MaterialBase > discrete)
 
std::unordered_map< SubdomainID, std::vector< MaterialBase *> > buildRequiredMaterials (bool allow_stateful=true)
 
void statefulPropertiesAllowed (bool)
 
virtual bool getMaterialPropertyCalled () const
 
const GenericMaterialProperty< T, is_ad > & getPossiblyConstantGenericMaterialPropertyByName (const MaterialPropertyName &prop_name, MaterialData &material_data, const unsigned int state)
 
const GenericOptionalMaterialProperty< T, is_ad > & getGenericOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const GenericOptionalMaterialProperty< T, is_ad > & getGenericOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const OptionalMaterialProperty< T > & getOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const OptionalMaterialProperty< T > & getOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const OptionalADMaterialProperty< T > & getOptionalADMaterialProperty (const std::string &name)
 
const OptionalADMaterialProperty< T > & getOptionalADMaterialProperty (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOld (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOld (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOlder (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOlder (const std::string &name)
 
MaterialProperty< T > & declarePropertyByName (const std::string &prop_name)
 
MaterialProperty< T > & declarePropertyByName (const std::string &prop_name)
 
MaterialProperty< T > & declareProperty (const std::string &name)
 
MaterialProperty< T > & declareProperty (const std::string &name)
 
ADMaterialProperty< T > & declareADPropertyByName (const std::string &prop_name)
 
ADMaterialProperty< T > & declareADPropertyByName (const std::string &prop_name)
 
ADMaterialProperty< T > & declareADProperty (const std::string &name)
 
ADMaterialProperty< T > & declareADProperty (const std::string &name)
 
auto & declareGenericProperty (const std::string &prop_name)
 
auto & declareGenericProperty (const std::string &prop_name)
 
GenericMaterialProperty< T, is_ad > & declareGenericPropertyByName (const std::string &prop_name)
 
GenericMaterialProperty< T, is_ad > & declareGenericPropertyByName (const std::string &prop_name)
 
const DistributiongetDistribution (const std::string &name) const
 
const TgetDistribution (const std::string &name) const
 
const DistributiongetDistribution (const std::string &name) const
 
const TgetDistribution (const std::string &name) const
 
const DistributiongetDistributionByName (const DistributionName &name) const
 
const TgetDistributionByName (const std::string &name) const
 
const DistributiongetDistributionByName (const DistributionName &name) const
 
const TgetDistributionByName (const std::string &name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
const PostprocessorValuegetPostprocessorValue (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValue (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValueOld (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValueOld (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValueOlder (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValueOlder (const std::string &param_name, const unsigned int index=0) const
 
virtual const PostprocessorValuegetPostprocessorValueByName (const PostprocessorName &name) const
 
virtual const PostprocessorValuegetPostprocessorValueByName (const PostprocessorName &name) const
 
const PostprocessorValuegetPostprocessorValueOldByName (const PostprocessorName &name) const
 
const PostprocessorValuegetPostprocessorValueOldByName (const PostprocessorName &name) const
 
const PostprocessorValuegetPostprocessorValueOlderByName (const PostprocessorName &name) const
 
const PostprocessorValuegetPostprocessorValueOlderByName (const PostprocessorName &name) const
 
bool isVectorPostprocessorDistributed (const std::string &param_name) const
 
bool isVectorPostprocessorDistributed (const std::string &param_name) const
 
bool isVectorPostprocessorDistributedByName (const VectorPostprocessorName &name) const
 
bool isVectorPostprocessorDistributedByName (const VectorPostprocessorName &name) const
 
bool hasMaterialProperty (const std::string &name)
 
bool hasMaterialProperty (const std::string &name)
 
bool hasMaterialPropertyByName (const std::string &name)
 
bool hasMaterialPropertyByName (const std::string &name)
 
bool hasADMaterialProperty (const std::string &name)
 
bool hasADMaterialProperty (const std::string &name)
 
bool hasADMaterialPropertyByName (const std::string &name)
 
bool hasADMaterialPropertyByName (const std::string &name)
 
bool hasKokkosMaterialProperty (const std::string &name)
 
bool hasKokkosMaterialProperty (const std::string &name)
 
bool hasKokkosMaterialPropertyByName (const std::string &name)
 
bool hasKokkosMaterialPropertyByName (const std::string &name)
 
bool hasGenericMaterialProperty (const std::string &name)
 
bool hasGenericMaterialProperty (const std::string &name)
 
bool hasGenericMaterialPropertyByName (const std::string &name)
 
bool hasGenericMaterialPropertyByName (const std::string &name)
 
PenetrationLocatorgetPenetrationLocator (const BoundaryName &primary, const BoundaryName &secondary, Order order)
 
PenetrationLocatorgetQuadraturePenetrationLocator (const BoundaryName &primary, const BoundaryName &secondary, Order order)
 
NearestNodeLocatorgetNearestNodeLocator (const BoundaryName &primary, const BoundaryName &secondary)
 
NearestNodeLocatorgetQuadratureNearestNodeLocator (const BoundaryName &primary, const BoundaryName &secondary)
 
bool requiresGeometricSearch () const
 
const Parallel::Communicator & comm () const
 
processor_id_type n_processors () const
 
processor_id_type processor_id () const
 
bool hasGuarantee (const MaterialPropertyName &prop_name, Guarantee guarantee)
 

Static Public Member Functions

static InputParameters validParams ()
 
static InputParameters baseParams ()
 
static void callMooseError (MooseApp *const app, const InputParameters &params, std::string msg, const bool with_prefix, const hit::Node *node, const bool show_trace=true)
 
static std::deque< MaterialBase *> buildRequiredMaterials (const Consumers &mat_consumers, const std::vector< std::shared_ptr< MaterialBase >> &mats, const bool allow_stateful)
 
static bool restricted (const std::set< BoundaryID > &ids)
 
static void sort (typename std::vector< T > &vector)
 
static void sortDFS (typename std::vector< T > &vector)
 
static void cyclicDependencyError (CyclicDependencyException< T2 > &e, const std::string &header, NameFunc &&name_func)
 
static void cyclicDependencyError (CyclicDependencyException< T2 > &e, const std::string &header)
 
static std::string deduceFunctorName (const std::string &name, const InputParameters &params)
 

Public Attributes

 ALL
 
 ANY
 
 usingCombinedWarningSolutionWarnings
 
const ConsoleStream _console
 

Static Public Attributes

static const std::string type_param
 
static const std::string name_param
 
static const std::string unique_name_param
 
static const std::string app_param
 
static const std::string moose_base_param
 
static const std::string kokkos_object_param
 
static constexpr PropertyValue::id_type default_property_id
 
static constexpr PropertyValue::id_type zero_property_id
 

Protected Types

enum  QP_Data_Type
 

Protected Member Functions

virtual void computeDeformationGradient () override
 Calculate the unstabilized and optionally the stabilized deformation gradients. More...
 
virtual void initQpStatefulProperties () override
 
virtual void computeProperties () override
 
virtual void computeQpProperties () override
 
virtual void computeQpIncrementalStrains (const RankTwoTensor &dL)
 Calculate the strains based on the spatial velocity gradient. More...
 
void setQpIncrementalStrains (const RankTwoTensor &dd, const RankTwoTensor &dw)
 Update strain / vorticity / mechanical-strain bookkeeping from already-split (dd, dw) tensors. More...
 
void computeQpLargeKinematicIncrement (const RankTwoTensor &f_inv, RankTwoTensor &dd, RankTwoTensor &dw, RankFourTensor &d_dL_d_f_inv, RankFourTensor &d_dw_d_f_inv, bool need_jacobian)
 Dispatcher: compute (Deltad, Deltaw, d(Deltal)/d(f^{-1}), d(Deltaw)/d(f^{-1})) for the active kinematic approximation. More...
 
void computeQpPolarDecomposition (bool need_jacobian)
 Compute and publish the polar decomposition of _F_actual at the current qp. More...
 
virtual void subtractQpEigenstrainIncrement (RankTwoTensor &strain)
 Subtract the eigenstrain increment to subtract from the total strain. More...
 
virtual void computeQpUnstabilizedDeformationGradient ()
 Calculate the unstabilized (alpha-weighted) deformation gradient at the quadrature point. More...
 
virtual void computeQpActualDeformationGradient ()
 Calculate the actual deformation gradient at n+1 (no alpha weighting, no F-bar) More...
 
virtual void checkMaterialProperty (const std::string &name, const unsigned int state) override
 
virtual const MaterialDatamaterialData () const override
 
virtual MaterialDatamaterialData () override
 
virtual Moose::MaterialDataType materialDataType () override
 
virtual const QBase & qRule () const override
 
virtual void resetQpProperties ()
 
virtual const FEProblemBasemiProblem () const
 
virtual FEProblemBasemiProblem ()
 
bool isPropertyActive (const unsigned int prop_id) const
 
void registerPropName (const std::string &prop_name, bool is_get, const unsigned int state)
 
void checkExecutionStage ()
 
void checkExecutionStage ()
 
void flagInvalidSolutionInternal (const InvalidSolutionID invalid_solution_id) const
 
InvalidSolutionID registerInvalidSolutionInternal (const std::string &message, const bool warning) const
 
virtual bool hasBlockMaterialPropertyHelper (const std::string &prop_name)
 
void initializeBlockRestrictable (const MooseObject *moose_object)
 
void initializeKokkosBlockRestrictable ()
 
Moose::CoordinateSystemType getBlockCoordSystem ()
 
KOKKOS_FUNCTION dof_id_type numKokkosBlockElements () const
 
KOKKOS_FUNCTION dof_id_type numKokkosBlockNodes () const
 
KOKKOS_FUNCTION dof_id_type numKokkosBlockSides () const
 
KOKKOS_FUNCTION ContiguousElementID kokkosBlockElementID (Moose::Kokkos::ThreadID tid) const
 
KOKKOS_FUNCTION ContiguousElementID kokkosBlockNodeID (Moose::Kokkos::ThreadID tid) const
 
KOKKOS_FUNCTION auto kokkosBlockElementSideID (Moose::Kokkos::ThreadID tid) const
 
bool hasBoundaryMaterialPropertyHelper (const std::string &prop_name) const
 
KOKKOS_FUNCTION dof_id_type numKokkosBoundaryNodes () const
 
KOKKOS_FUNCTION dof_id_type numKokkosBoundarySides () const
 
KOKKOS_FUNCTION ContiguousNodeID kokkosBoundaryNodeID (Moose::Kokkos::ThreadID tid) const
 
KOKKOS_FUNCTION auto kokkosBoundaryElementSideID (Moose::Kokkos::ThreadID tid) const
 
bool isCoupledScalar (const std::string &var_name, unsigned int i=0) const
 
unsigned int coupledScalarComponents (const std::string &var_name) const
 
unsigned int coupledScalar (const std::string &var_name, unsigned int comp=0) const
 
libMesh::Order coupledScalarOrder (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarValue (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableValueadCoupledScalarValue (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< is_ad > & coupledGenericScalarValue (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< false > & coupledGenericScalarValue (const std::string &var_name, const unsigned int comp) const
 
const GenericVariableValue< true > & coupledGenericScalarValue (const std::string &var_name, const unsigned int comp) const
 
const VariableValuecoupledVectorTagScalarValue (const std::string &var_name, TagID tag, unsigned int comp=0) const
 
const VariableValuecoupledMatrixTagScalarValue (const std::string &var_name, TagID tag, unsigned int comp=0) const
 
const VariableValuecoupledScalarValueOld (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarValueOlder (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDot (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableValueadCoupledScalarDot (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotDot (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotOld (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotDotOld (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotDu (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotDotDu (const std::string &var_name, unsigned int comp=0) const
 
const MooseVariableScalargetScalarVar (const std::string &var_name, unsigned int comp) const
 
virtual void addUserObjectDependencyHelper (const UserObjectBase &) const
 
virtual void addPostprocessorDependencyHelper (const PostprocessorName &) const
 
virtual void addVectorPostprocessorDependencyHelper (const VectorPostprocessorName &) const
 
TdeclareRestartableData (const std::string &data_name, Args &&... args)
 
ManagedValue< TdeclareManagedRestartableDataWithContext (const std::string &data_name, void *context, Args &&... args)
 
const TgetRestartableData (const std::string &data_name) const
 
TdeclareRestartableDataWithContext (const std::string &data_name, void *context, Args &&... args)
 
TdeclareRecoverableData (const std::string &data_name, Args &&... args)
 
TdeclareRestartableDataWithObjectName (const std::string &data_name, const std::string &object_name, Args &&... args)
 
TdeclareRestartableDataWithObjectNameWithContext (const std::string &data_name, const std::string &object_name, void *context, Args &&... args)
 
std::string restartableName (const std::string &data_name) const
 
std::string deduceFunctorName (const std::string &name) const
 
const Moose::Functor< T > & getFunctor (const std::string &name)
 
const Moose::Functor< T > & getFunctor (const std::string &name, THREAD_ID tid)
 
const Moose::Functor< T > & getFunctor (const std::string &name, SubProblem &subproblem)
 
const Moose::Functor< T > & getFunctor (const std::string &name, SubProblem &subproblem, THREAD_ID tid)
 
bool isFunctor (const std::string &name) const
 
bool isFunctor (const std::string &name, const SubProblem &subproblem) const
 
Moose::ElemArg makeElemArg (const Elem *elem, bool correct_skewnewss=false) const
 
void checkFunctorSupportsSideIntegration (const std::string &name, bool qp_integration)
 
const Moose::Functor< T > & getFunctorByName (const std::string &name)
 
virtual void coupledCallback (const std::string &, bool) const
 
virtual bool isCoupled (const std::string &var_name, unsigned int i=0) const
 
virtual bool isCoupledConstant (const std::string &var_name) const
 
unsigned int coupledComponents (const std::string &var_name) const
 
VariableName coupledName (const std::string &var_name, unsigned int comp=0) const
 
std::vector< VariableName > coupledNames (const std::string &var_name) const
 
virtual unsigned int coupled (const std::string &var_name, unsigned int comp=0) const
 
std::vector< unsigned intcoupledIndices (const std::string &var_name) const
 
virtual const VariableValuecoupledValue (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const VariableValue *> coupledValues (const std::string &var_name) const
 
std::vector< const VectorVariableValue *> coupledVectorValues (const std::string &var_name) const
 
const GenericVariableValue< is_ad > & coupledGenericValue (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< false > & coupledGenericValue (const std::string &var_name, unsigned int comp) const
 
const GenericVariableValue< true > & coupledGenericValue (const std::string &var_name, unsigned int comp) const
 
const GenericVectorVariableValue< is_ad > & coupledGenericVectorValue (const std::string &var_name, unsigned int comp=0) const
 
const GenericVectorVariableValue< false > & coupledGenericVectorValue (const std::string &var_name, unsigned int comp) const
 
const GenericVectorVariableValue< true > & coupledGenericVectorValue (const std::string &var_name, unsigned int comp) const
 
std::vector< const GenericVariableValue< is_ad > *> coupledGenericValues (const std::string &var_name) const
 
std::vector< const GenericVariableValue< false > *> coupledGenericValues (const std::string &var_name) const
 
std::vector< const GenericVariableValue< true > *> coupledGenericValues (const std::string &var_name) const
 
const GenericVariableValue< is_ad > & coupledGenericDofValue (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< false > & coupledGenericDofValue (const std::string &var_name, unsigned int comp) const
 
const GenericVariableValue< true > & coupledGenericDofValue (const std::string &var_name, unsigned int comp) const
 
const GenericVariableValue< is_ad > & coupledGenericDot (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< false > & coupledGenericDot (const std::string &var_name, unsigned int comp) const
 
const GenericVariableValue< true > & coupledGenericDot (const std::string &var_name, unsigned int comp) const
 
const GenericVariableValue< is_ad > & coupledGenericDotDot (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< false > & coupledGenericDotDot (const std::string &var_name, unsigned int comp) const
 
const GenericVariableValue< true > & coupledGenericDotDot (const std::string &var_name, unsigned int comp) const
 
virtual const VariableValuecoupledValueLower (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableValueadCoupledValue (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const ADVariableValue *> adCoupledValues (const std::string &var_name) const
 
const ADVariableValueadCoupledLowerValue (const std::string &var_name, unsigned int comp=0) const
 
const ADVectorVariableValueadCoupledVectorValue (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const ADVectorVariableValue *> adCoupledVectorValues (const std::string &var_name) const
 
virtual const VariableValuecoupledVectorTagValue (const std::string &var_names, TagID tag, unsigned int index=0) const
 
virtual const VariableValuecoupledVectorTagValue (const std::string &var_names, const std::string &tag_name, unsigned int index=0) const
 
std::vector< const VariableValue *> coupledVectorTagValues (const std::string &var_names, TagID tag) const
 
std::vector< const VariableValue *> coupledVectorTagValues (const std::string &var_names, const std::string &tag_name) const
 
virtual const ArrayVariableValuecoupledVectorTagArrayValue (const std::string &var_names, TagID tag, unsigned int index=0) const
 
virtual const ArrayVariableValuecoupledVectorTagArrayValue (const std::string &var_names, const std::string &tag_name, unsigned int index=0) const
 
std::vector< const ArrayVariableValue *> coupledVectorTagArrayValues (const std::string &var_names, TagID tag) const
 
std::vector< const ArrayVariableValue *> coupledVectorTagArrayValues (const std::string &var_names, const std::string &tag_name) const
 
virtual const VariableGradientcoupledVectorTagGradient (const std::string &var_names, TagID tag, unsigned int index=0) const
 
virtual const VariableGradientcoupledVectorTagGradient (const std::string &var_names, const std::string &tag_name, unsigned int index=0) const
 
std::vector< const VariableGradient *> coupledVectorTagGradients (const std::string &var_names, TagID tag) const
 
std::vector< const VariableGradient *> coupledVectorTagGradients (const std::string &var_names, const std::string &tag_name) const
 
virtual const ArrayVariableGradientcoupledVectorTagArrayGradient (const std::string &var_names, TagID tag, unsigned int index=0) const
 
virtual const ArrayVariableGradientcoupledVectorTagArrayGradient (const std::string &var_names, const std::string &tag_name, unsigned int index=0) const
 
std::vector< const ArrayVariableGradient *> coupledVectorTagArrayGradients (const std::string &var_names, TagID tag) const
 
std::vector< const ArrayVariableGradient *> coupledVectorTagArrayGradients (const std::string &var_names, const std::string &tag_name) const
 
virtual const VariableValuecoupledVectorTagDofValue (const std::string &var_name, TagID tag, unsigned int index=0) const
 
virtual const VariableValuecoupledVectorTagDofValue (const std::string &var_names, const std::string &tag_name, unsigned int index=0) const
 
const ArrayVariableValuecoupledVectorTagArrayDofValue (const std::string &var_name, const std::string &tag_name, unsigned int comp=0) const
 
std::vector< const VariableValue *> coupledVectorTagDofValues (const std::string &var_names, TagID tag) const
 
std::vector< const VariableValue *> coupledVectorTagDofValues (const std::string &var_names, const std::string &tag_name) const
 
virtual const VariableValuecoupledMatrixTagValue (const std::string &var_names, TagID tag, unsigned int index=0) const
 
virtual const VariableValuecoupledMatrixTagValue (const std::string &var_names, const std::string &tag_name, unsigned int index=0) const
 
std::vector< const VariableValue *> coupledMatrixTagValues (const std::string &var_names, TagID tag) const
 
std::vector< const VariableValue *> coupledMatrixTagValues (const std::string &var_names, const std::string &tag_name) const
 
virtual const VectorVariableValuecoupledVectorValue (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableValuecoupledArrayValue (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const ArrayVariableValue *> coupledArrayValues (const std::string &var_name) const
 
MooseWritableVariablewritableVariable (const std::string &var_name, unsigned int comp=0)
 
virtual VariableValuewritableCoupledValue (const std::string &var_name, unsigned int comp=0)
 
void checkWritableVar (MooseWritableVariable *var)
 
virtual const VariableValuecoupledValueOld (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const VariableValue *> coupledValuesOld (const std::string &var_name) const
 
std::vector< const VectorVariableValue *> coupledVectorValuesOld (const std::string &var_name) const
 
virtual const VariableValuecoupledValueOlder (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const VariableValue *> coupledValuesOlder (const std::string &var_name) const
 
virtual const VariableValuecoupledValuePreviousNL (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableValuecoupledVectorValueOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableValuecoupledVectorValueOlder (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableValuecoupledArrayValueOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableValuecoupledArrayValueOlder (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableGradientcoupledGradient (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const VariableGradient *> coupledGradients (const std::string &var_name) const
 
const ADVariableGradientadCoupledGradient (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableGradientadCoupledGradientDot (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const ADVariableGradient *> adCoupledGradients (const std::string &var_name) const
 
const GenericVariableGradient< is_ad > & coupledGenericGradient (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableGradient< false > & coupledGenericGradient (const std::string &var_name, unsigned int comp) const
 
const GenericVariableGradient< true > & coupledGenericGradient (const std::string &var_name, unsigned int comp) const
 
std::vector< const GenericVariableGradient< is_ad > *> coupledGenericGradients (const std::string &var_name) const
 
std::vector< const GenericVariableGradient< false > *> coupledGenericGradients (const std::string &var_name) const
 
std::vector< const GenericVariableGradient< true > *> coupledGenericGradients (const std::string &var_name) const
 
const ADVectorVariableGradientadCoupledVectorGradient (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableSecondadCoupledSecond (const std::string &var_name, unsigned int comp=0) const
 
const ADVectorVariableSecondadCoupledVectorSecond (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableGradientcoupledGradientOld (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const VariableGradient *> coupledGradientsOld (const std::string &var_name) const
 
virtual const VariableGradientcoupledGradientOlder (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableGradientcoupledGradientPreviousNL (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableGradientcoupledGradientDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableGradientcoupledGradientDotDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableGradientcoupledVectorGradient (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableGradientcoupledVectorGradientOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableGradientcoupledVectorGradientOlder (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableGradientcoupledArrayGradient (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableGradientcoupledArrayGradientOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableGradientcoupledArrayGradientOlder (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableGradientcoupledArrayGradientDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableCurlcoupledCurl (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableCurlcoupledCurlOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableCurlcoupledCurlOlder (const std::string &var_name, unsigned int comp=0) const
 
const ADVectorVariableCurladCoupledCurl (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableDivergencecoupledDiv (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableDivergencecoupledDivOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableDivergencecoupledDivOlder (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableSecondcoupledSecond (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableSecondcoupledSecondOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableSecondcoupledSecondOlder (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableSecondcoupledSecondPreviousNL (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledDot (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const VariableValue *> coupledDots (const std::string &var_name) const
 
virtual const VariableValuecoupledDotDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledDotOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledDotDotOld (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableValueadCoupledDot (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const ADVariableValue *> adCoupledDots (const std::string &var_name) const
 
const ADVariableValueadCoupledDotDot (const std::string &var_name, unsigned int comp=0) const
 
const ADVectorVariableValueadCoupledVectorDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableValuecoupledVectorDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableValuecoupledVectorDotDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableValuecoupledVectorDotOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VectorVariableValuecoupledVectorDotDotOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledVectorDotDu (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledVectorDotDotDu (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableValuecoupledArrayDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableValuecoupledArrayDotDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableValuecoupledArrayDotOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const ArrayVariableValuecoupledArrayDotDotOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledDotDu (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledDotDotDu (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledArrayDotDu (const std::string &var_name, unsigned int comp=0) const
 
const TcoupledNodalValue (const std::string &var_name, unsigned int comp=0) const
 
const Moose::ADType< T >::typeadCoupledNodalValue (const std::string &var_name, unsigned int comp=0) const
 
const TcoupledNodalValueOld (const std::string &var_name, unsigned int comp=0) const
 
const TcoupledNodalValueOlder (const std::string &var_name, unsigned int comp=0) const
 
const TcoupledNodalValuePreviousNL (const std::string &var_name, unsigned int comp=0) const
 
const TcoupledNodalDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledNodalDotDot (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledNodalDotOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledNodalDotDotOld (const std::string &var_name, unsigned int comp=0) const
 
virtual const VariableValuecoupledDofValues (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const VariableValue *> coupledAllDofValues (const std::string &var_name) const
 
virtual const VariableValuecoupledDofValuesOld (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const VariableValue *> coupledAllDofValuesOld (const std::string &var_name) const
 
virtual const VariableValuecoupledDofValuesOlder (const std::string &var_name, unsigned int comp=0) const
 
std::vector< const VariableValue *> coupledAllDofValuesOlder (const std::string &var_name) const
 
virtual const ArrayVariableValuecoupledArrayDofValues (const std::string &var_name, unsigned int comp=0) const
 
virtual const ADVariableValueadCoupledDofValues (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableValueadZeroValue () const
 
const ADVariableGradientadZeroGradient () const
 
const ADVariableSecondadZeroSecond () const
 
const GenericVariableValue< is_ad > & genericZeroValue ()
 
const GenericVariableValue< false > & genericZeroValue ()
 
const GenericVariableValue< true > & genericZeroValue ()
 
const GenericVariableGradient< is_ad > & genericZeroGradient ()
 
const GenericVariableGradient< false > & genericZeroGradient ()
 
const GenericVariableGradient< true > & genericZeroGradient ()
 
const GenericVariableSecond< is_ad > & genericZeroSecond ()
 
const GenericVariableSecond< false > & genericZeroSecond ()
 
const GenericVariableSecond< true > & genericZeroSecond ()
 
bool checkVar (const std::string &var_name, unsigned int comp=0, unsigned int comp_bound=0) const
 
const MooseVariableFieldBasegetFEVar (const std::string &var_name, unsigned int comp) const
 
const MooseVariableFieldBasegetFieldVar (const std::string &var_name, unsigned int comp) const
 
MooseVariableFieldBasegetFieldVar (const std::string &var_name, unsigned int comp)
 
std::vector< const MooseVariableFieldBase *> getFieldVars (const std::string &var_name) const
 
const TgetVarHelper (const std::string &var_name, unsigned int comp) const
 
TgetVarHelper (const std::string &var_name, unsigned int comp)
 
std::vector< const T *> getVarsHelper (const std::string &var_name) const
 
MooseVariablegetVar (const std::string &var_name, unsigned int comp)
 
const MooseVariablegetVar (const std::string &var_name, unsigned int comp) const
 
VectorMooseVariablegetVectorVar (const std::string &var_name, unsigned int comp)
 
const VectorMooseVariablegetVectorVar (const std::string &var_name, unsigned int comp) const
 
ArrayMooseVariablegetArrayVar (const std::string &var_name, unsigned int comp)
 
const ArrayMooseVariablegetArrayVar (const std::string &var_name, unsigned int comp) const
 
void validateExecutionerType (const std::string &name, const std::string &fn_name) const
 
std::vector< TcoupledVectorHelper (const std::string &var_name, const Func &func) const
 
virtual void getKokkosMaterialPropertyHook (const std::string &, const unsigned int)
 
void markMatPropRequested (const std::string &)
 
MaterialPropertyName getMaterialPropertyName (const std::string &name) const
 
const GenericMaterialProperty< T, is_ad > * defaultGenericMaterialProperty (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > * defaultGenericMaterialProperty (const std::string &name)
 
const MaterialProperty< T > * defaultMaterialProperty (const std::string &name)
 
const MaterialProperty< T > * defaultMaterialProperty (const std::string &name)
 
const ADMaterialProperty< T > * defaultADMaterialProperty (const std::string &name)
 
const ADMaterialProperty< T > * defaultADMaterialProperty (const std::string &name)
 
void issueGuarantee (const MaterialPropertyName &prop_name, Guarantee guarantee)
 
void revokeGuarantee (const MaterialPropertyName &prop_name, Guarantee guarantee)
 

Protected Attributes

const VariableValue_out_of_plane_strain
 
const unsigned int _ndisp
 
std::vector< const VariableValue * > _disp
 
std::vector< const VariableGradient * > _grad_disp
 
std::vector< const VariableValue * > _disp_old
 Old displacement values for the generalized midpoint rule. More...
 
std::vector< const VariableGradient * > _grad_disp_old
 Old displacement gradients for the generalized midpoint rule. More...
 
const std::string _base_name
 Material system base name. More...
 
const bool _large_kinematics
 If true the equilibrium conditions is calculated with large deformations. More...
 
const bool _stabilize_strain
 If true stabilize the strains with F_bar. More...
 
const FBarMode _F_bar_mode
 Selected F-bar averaging mode (Total vs. Incremental). See FBarMode. More...
 
const bool _publish_rotation_increment
 If true, publish _rotation_increment = exp(_vorticity_increment) (Rodrigues) instead of the default identity. More...
 
const Real _alpha
 Generalized-midpoint weight for the deformation gradient (1.0 = backward Euler, 0.5 = midpoint) More...
 
const KinematicApproximation _kinematic_approximation
 Selected approximation for the spatial velocity gradient increment. More...
 
std::vector< MaterialPropertyName > _eigenstrain_names
 
std::vector< const MaterialProperty< RankTwoTensor > * > _eigenstrains
 
std::vector< const MaterialProperty< RankTwoTensor > * > _eigenstrains_old
 
MaterialProperty< RankTwoTensor > & _total_strain
 
const MaterialProperty< RankTwoTensor > & _total_strain_old
 
MaterialProperty< RankTwoTensor > & _mechanical_strain
 
const MaterialProperty< RankTwoTensor > & _mechanical_strain_old
 
MaterialProperty< RankTwoTensor > & _rotated_mechanical_strain
 Mechanical strain accumulated with the incremental rotation r_hat = exp(Deltaw), matching the convention ComputeFiniteStrain uses for its mechanical_strain output (eps_n+1 = r_hat * (eps_n + Deltad) * r_hat^T). More...
 
const MaterialProperty< RankTwoTensor > & _rotated_mechanical_strain_old
 
MaterialProperty< RankTwoTensor > & _strain_increment
 Strain increment. More...
 
MaterialProperty< RankTwoTensor > & _deformation_gradient_increment
 Deformation gradient increment. More...
 
MaterialProperty< RankTwoTensor > & _vorticity_increment
 Vorticity increment. More...
 
MaterialProperty< RankTwoTensor > & _F_ust
 The unstabilized (alpha-weighted) deformation gradient. More...
 
const MaterialProperty< RankTwoTensor > & _F_ust_old
 Old unstabilized deformation gradient. More...
 
MaterialProperty< RankTwoTensor > & _F_actual
 The literal deformation gradient at n+1 (I + grad u_{n+1}). More...
 
MaterialProperty< RankTwoTensor > & _F_avg
 
MaterialProperty< RankTwoTensor > & _F
 
const MaterialProperty< RankTwoTensor > & _F_old
 Old deformation gradient. More...
 
MaterialProperty< RankTwoTensor > & _F_inv
 Inverse deformation gradient. More...
 
MaterialProperty< RankTwoTensor > & _f_inv
 Inverse incremental deformation gradient. More...
 
MaterialProperty< RankTwoTensor > & _F_ust_inv
 Inverse and determinant of the unstabilized deformation gradient F_ust. More...
 
MaterialProperty< Real > & _F_ust_det
 
MaterialProperty< RankFourTensor > & _d_deformation_gradient_increment_d_F
 Derivative of the spatial velocity gradient increment with respect to F_{n+1}. More...
 
MaterialProperty< RankFourTensor > & _d_vorticity_increment_d_F
 Derivative of the vorticity increment Deltaw with respect to F_{n+1}. More...
 
MaterialProperty< RankFourTensor > & _d_F_d_grad_u
 Derivative of F_{n+1} with respect to the displacement gradient. More...
 
MaterialProperty< RankTwoTensor > & _rotation
 Polar decomposition R of the (alpha-weighted, F-bar-stabilized) deformation gradient F at this qp. More...
 
MaterialProperty< RankTwoTensor > & _stretch
 Stretch U from the same polar decomposition. More...
 
MaterialProperty< RankFourTensor > & _d_rotation_d_F
 Derivative of R with respect to F. More...
 
MaterialProperty< RankFourTensor > & _d_F_stab_d_F_ust
 Partial derivative of the F-bar-stabilized deformation gradient with respect to the unstabilized (per-qp local) deformation gradient. More...
 
MaterialProperty< RankFourTensor > & _d_F_stab_d_F_avg
 Partial derivative of the F-bar-stabilized deformation gradient with respect to the element-averaged deformation gradient F_avg (the non-local coupling). More...
 
std::vector< MaterialPropertyName > _homogenization_gradient_names
 Names of any extra homogenization gradients. More...
 
std::vector< const MaterialProperty< RankTwoTensor > * > _homogenization_contributions
 Actual homogenization contributions. More...
 
MaterialProperty< RankTwoTensor > & _rotation_increment
 Rotation increment for "old" materials inheriting from ComputeStressBase. More...
 
 CURR
 
 PREV
 
bool _bnd
 
bool _neighbor
 
const MooseArray< Point > & _q_point
 
const QBase *const & _qrule
 
const MooseArray< Real > & _JxW
 
const Elem *const & _current_elem
 
const SubdomainID_current_subdomain_id
 
const unsigned int_current_side
 
const ConstantTypeEnum _constant_option
 
SubProblem_subproblem
 
FEProblemBase_fe_problem
 
THREAD_ID _tid
 
Assembly_assembly
 
unsigned int _qp
 
const MooseArray< Real > & _coord
 
const MooseArray< Point > & _normals
 
MooseMesh_mesh
 
const Moose::CoordinateSystemType_coord_sys
 
std::set< std::string > _requested_props
 
std::set< std::string > _supplied_props
 
std::set< unsigned int_supplied_prop_ids
 
std::unordered_set< unsigned int_active_prop_ids
 
const bool _compute
 
std::unordered_map< unsigned int, unsigned int_props_to_min_states
 
std::vector< unsigned int_displacements
 
bool _has_stateful_property
 
bool _overrides_init_stateful_props
 
const FaceInfo_face_info
 
const MaterialPropertyName _declare_suffix
 
const bool & _enabled
 
MooseApp_app
 
Factory_factory
 
ActionFactory_action_factory
 
const std::string & _type
 
const std::string & _name
 
const InputParameters_pars
 
const MaterialData_blk_material_data
 
const ExecFlagEnum_execute_enum
 
const ExecFlagType_current_execute_flag
 
FEProblemBase_sc_fe_problem
 
const THREAD_ID _sc_tid
 
const Real_real_zero
 
const VariableValue_scalar_zero
 
const Point & _point_zero
 
const InputParameters_ti_params
 
FEProblemBase_ti_feproblem
 
bool _is_implicit
 
Real_t
 
const Real_t_old
 
int_t_step
 
Real_dt
 
Real_dt_old
 
bool _is_transient
 
MooseApp_restartable_app
 
const std::string _restartable_system_name
 
const THREAD_ID _restartable_tid
 
const bool _restartable_read_only
 
FEProblemBase_mci_feproblem
 
GeometricSearchData_geometric_search_data
 
bool _requires_geometric_search
 
const InputParameters_c_parameters
 
const std::string & _c_name
 
const std::string & _c_type
 
FEProblemBase_c_fe_problem
 
const SystemBase *const _c_sys
 
std::unordered_map< std::string, std::vector< MooseVariableFieldBase *> > _coupled_vars
 
std::vector< MooseVariableFieldBase *> _coupled_moose_vars
 
std::vector< MooseVariable *> _coupled_standard_moose_vars
 
std::vector< VectorMooseVariable *> _coupled_vector_moose_vars
 
std::vector< ArrayMooseVariable *> _coupled_array_moose_vars
 
std::vector< MooseVariableField< Real > *> _coupled_fv_moose_vars
 
const std::unordered_map< std::string, std::string > & _new_to_deprecated_coupled_vars
 
bool _c_nodal
 
bool _c_is_implicit
 
const bool _c_allow_element_to_nodal_coupling
 
THREAD_ID _c_tid
 
std::unordered_map< std::string, std::vector< std::unique_ptr< VariableValue > > > _default_value
 
std::unordered_map< std::string, std::unique_ptr< MooseArray< ADReal > > > _ad_default_value
 
std::unordered_map< std::string, std::unique_ptr< VectorVariableValue > > _default_vector_value
 
std::unordered_map< std::string, std::unique_ptr< ArrayVariableValue > > _default_array_value
 
std::unordered_map< std::string, std::unique_ptr< MooseArray< ADRealVectorValue > > > _ad_default_vector_value
 
VariableValue _default_value_zero
 
VariableGradient _default_gradient
 
MooseArray< ADRealVectorValue_ad_default_gradient
 
MooseArray< ADRealTensorValue_ad_default_vector_gradient
 
VariableSecond _default_second
 
MooseArray< ADRealTensorValue_ad_default_second
 
MooseArray< ADRealVectorValue_ad_default_curl
 
const VariableValue_zero
 
const VariablePhiValue_phi_zero
 
const MooseArray< ADReal > & _ad_zero
 
const VariableGradient_grad_zero
 
const MooseArray< ADRealVectorValue > & _ad_grad_zero
 
const VariablePhiGradient_grad_phi_zero
 
const VariableSecond_second_zero
 
const MooseArray< ADRealTensorValue > & _ad_second_zero
 
const VariablePhiSecond_second_phi_zero
 
const VectorVariableValue_vector_zero
 
const VectorVariableCurl_vector_curl_zero
 
VectorVariableValue _default_vector_value_zero
 
VectorVariableGradient _default_vector_gradient
 
VectorVariableCurl _default_vector_curl
 
VectorVariableDivergence _default_div
 
ArrayVariableValue _default_array_value_zero
 
ArrayVariableGradient _default_array_gradient
 
bool _coupleable_neighbor
 
const InputParameters_mi_params
 
const std::string _mi_name
 
const MooseObjectName _mi_moose_object_name
 
FEProblemBase_mi_feproblem
 
SubProblem_mi_subproblem
 
const THREAD_ID _mi_tid
 
const bool _is_kokkos_object
 
const Moose::MaterialDataType _material_data_type
 
MaterialData_material_data
 
bool _stateful_allowed
 
bool _get_material_property_called
 
std::vector< std::unique_ptr< PropertyValue > > _default_properties
 
std::unordered_set< unsigned int_material_property_dependencies
 
const MaterialPropertyName _get_suffix
 
const bool _use_interpolated_state
 
const Parallel::Communicator & _communicator
 

Static Protected Attributes

static const std::string _interpolated_old
 
static const std::string _interpolated_older
 

Detailed Description

Definition at line 15 of file ComputeLagrangianWPSStrain.h.

Member Enumeration Documentation

◆ FBarMode

template<class G >
enum ComputeLagrangianStrainBase::FBarMode
stronginherited

What F gets F-bar volumetric correction applied to.

Affects only stabilize_strain = true. Total -> average the full deformation gradient F_ust at each qp, then rescale by gamma = cbrt(det(F_avg) / det(F_ust[qp])). This is the existing behavior. Incremental -> average the incremental F (f_ust = F_ust * F_ust_old^{-1}) at each qp, then rescale by gamma = cbrt(det(f_avg) / det(f_ust[qp])). Matches the OLD ComputeFiniteStrain F-bar (averaged Fhat) so cumulative strain is bit-for-bit compatible with volumetric_locking_correction = true.

Enumerator
Total 
Incremental 

Definition at line 69 of file ComputeLagrangianStrainBase.h.

70  {
71  Total,
72  Incremental
73  };

◆ KinematicApproximation

template<class G >
enum ComputeLagrangianStrainBase::KinematicApproximation
stronginherited

Approximation used to convert the inverse incremental deformation gradient f^{-1} into the increment in the spatial velocity gradient (and its symmetric / skew parts).

See rashid_project/plan_outline.pdf section 2.

Enumerator
Linear 

dL = I - f^{-1}

Quadratic 

dL = (I - f^{-1}) + 0.5 (I - f^{-1})^2

RashidApproximate 

Rashid's symmetric+skew formulas.

RashidEigen 

"Exact": polar decomposition + matrix logs

Definition at line 54 of file ComputeLagrangianStrainBase.h.

55  {
56  Linear,
57  Quadratic,
58  RashidApproximate,
59  RashidEigen
60  };

Constructor & Destructor Documentation

◆ ComputeLagrangianWPSStrain()

ComputeLagrangianWPSStrain::ComputeLagrangianWPSStrain ( const InputParameters params)

Definition at line 22 of file ComputeLagrangianWPSStrain.C.

23  : ComputeLagrangianStrain(params), _out_of_plane_strain(coupledValue("out_of_plane_strain"))
24 {
25 }
const VariableValue & _out_of_plane_strain
virtual const VariableValue & coupledValue(const std::string &var_name, unsigned int comp=0) const
ComputeLagrangianStrainBase< GradientOperatorCartesian > ComputeLagrangianStrain

Member Function Documentation

◆ baseParams()

template<class G >
InputParameters ComputeLagrangianStrainBase< G >::baseParams ( )
staticinherited

Definition at line 17 of file ComputeLagrangianStrainBase.C.

Referenced by ComputeLagrangianStrainBase< G >::validParams().

18 {
20 
21  params.addRequiredCoupledVar("displacements", "Displacement variables");
22  params.addParam<bool>(
23  "large_kinematics", false, "Use large displacement kinematics in the kernel.");
24  params.addParam<bool>("stabilize_strain", false, "Average the volumetric strains");
25  MooseEnum F_bar_mode("total incremental", "total");
26  params.addParam<MooseEnum>(
27  "F_bar_mode",
28  F_bar_mode,
29  "What deformation gradient F-bar averages over (only used when `stabilize_strain = true`). "
30  "'total' (default) averages the full F at each qp and rescales each qp's F by "
31  "cbrt(det(F_avg)/det(F_ust)). 'incremental' averages the incremental F "
32  "(F_ust * F_ust_old^{-1}) at each qp and rescales by cbrt(det(f_avg)/det(f_ust)); this is "
33  "bit-for-bit compatible with the OLD `ComputeFiniteStrain` + `volumetric_locking_correction "
34  "= "
35  "true` formulation. Set to 'incremental' when cross-checking against the old kernel system.");
36  params.addParam<bool>(
37  "publish_rotation_increment",
38  false,
39  "If true, publish `rotation_increment = exp(vorticity_increment)` (Rodrigues) for "
40  "downstream consumers that rotate by it (e.g. `ComputeMultiPlasticityStress` with "
41  "`perform_finite_strain_rotations = true`). Default false keeps `rotation_increment = I` "
42  "(the historical behavior -- the Lagrangian objective-rate machinery applies rotation "
43  "externally). Enable when wrapping plasticity that needs its internal stress state to "
44  "track the rotated Cauchy stress between steps, in tandem with `rotate_old_stress = true` "
45  "on the objective rate.");
46  params.addRangeCheckedParam<Real>(
47  "alpha",
48  1.0,
49  "alpha >= 0.5 & alpha <= 1.0",
50  "Generalized midpoint weight for the deformation gradient. 1.0 = backward Euler (default), "
51  "0.5 = midpoint rule (matches Abaqus/Implicit).");
52  MooseEnum kinematic_approximation("linear quadratic rashid_approximate rashid_eigen", "linear");
53  params.addParam<MooseEnum>(
54  "kinematic_approximation",
55  kinematic_approximation,
56  "Approximation to the increment in the spatial velocity gradient: 'linear' (default; "
57  "dL = I - f^{-1}), 'quadratic' (one more Taylor term), 'rashid_approximate' (Rashid's "
58  "symmetric+skew formulas), or 'rashid_eigen' (exact log f via polar decomposition + "
59  "matrix logs). Only affects large_kinematics; small kinematics is always linear.");
60  params.addParam<std::vector<MaterialPropertyName>>(
61  "eigenstrain_names", {}, "List of eigenstrains to account for");
62  params.addParam<std::vector<MaterialPropertyName>>(
63  "homogenization_gradient_names",
64  {},
65  "List of homogenization gradients to add to the displacement gradient");
66 
67  params.addParam<std::string>("base_name", "Material property base name");
68 
69  // We rely on this *not* having use_displaced mesh on
70  params.suppressParameter<bool>("use_displaced_mesh");
71 
72  return params;
73 }
void addParam(const std::string &name, const std::initializer_list< typename T::value_type > &value, const std::string &doc_string)
void suppressParameter(const std::string &name)
static InputParameters validParams()
void addRequiredCoupledVar(const std::string &name, const std::string &doc_string)
DIE A HORRIBLE DEATH HERE typedef LIBMESH_DEFAULT_SCALAR_TYPE Real
void addRangeCheckedParam(const std::string &name, const T &value, const std::string &parsed_function, const std::string &doc_string)

◆ computeDeformationGradient()

void ComputeLagrangianWPSStrain::computeDeformationGradient ( )
overrideprotectedvirtual

Calculate the unstabilized and optionally the stabilized deformation gradients.

Reimplemented from ComputeLagrangianStrainBase< G >.

Definition at line 28 of file ComputeLagrangianWPSStrain.C.

29 {
31 
32  // Add the out-of-plane strain to BOTH the stabilized `_F` and the unstabilized
33  // `_F_ust` AFTER F-bar has run. F-bar's partials (`_d_F_stab_d_F_*`) therefore do
34  // NOT see this contribution -- strain_zz bypasses F-bar's non-local chain. The WPS
35  // kernel and the TL kernel's `computeQpJacobianOutOfPlaneStrain` use the
36  // "no-F-bar" pk1_jacobian variant to handle strain_zz perturbations correctly.
37  for (_qp = 0; _qp < _qrule->n_points(); ++_qp)
38  {
39  _F[_qp](2, 2) += _out_of_plane_strain[_qp];
41  }
42 }
MaterialProperty< RankTwoTensor > & _F
const QBase *const & _qrule
const VariableValue & _out_of_plane_strain
virtual void computeDeformationGradient()
Calculate the unstabilized and optionally the stabilized deformation gradients.
unsigned int _qp
MaterialProperty< RankTwoTensor > & _F_ust
The unstabilized (alpha-weighted) deformation gradient.

◆ computeProperties()

template<class G >
void ComputeLagrangianStrainBase< G >::computeProperties ( )
overrideprotectedvirtualinherited

Reimplemented from Material.

Definition at line 184 of file ComputeLagrangianStrainBase.C.

185 {
186  // Average the volumetric terms, if required
188 
189  for (_qp = 0; _qp < _qrule->n_points(); ++_qp)
191 }
const QBase *const & _qrule
virtual void computeDeformationGradient()
Calculate the unstabilized and optionally the stabilized deformation gradients.
unsigned int _qp
virtual void computeQpProperties() override

◆ computeQpActualDeformationGradient()

template<class G >
void ComputeLagrangianStrainBase< G >::computeQpActualDeformationGradient ( )
protectedvirtualinherited

Calculate the actual deformation gradient at n+1 (no alpha weighting, no F-bar)

Definition at line 794 of file ComputeLagrangianStrainBase.C.

795 {
796  // The literal deformation gradient at n+1 (no alpha weighting, no F-bar). For alpha = 1
797  // this is identical to _F_ust.
798  _F_actual[_qp].setToIdentity();
799  for (auto component : make_range(_ndisp))
800  G::addGradOp(_F_actual[_qp],
801  component,
802  (*_grad_disp[component])[_qp],
803  (*_disp[component])[_qp],
804  _q_point[_qp]);
805 }
const MooseArray< Point > & _q_point
static const std::string component
Definition: NS.h:157
std::vector< const VariableGradient * > _grad_disp
MaterialProperty< RankTwoTensor > & _F_actual
The literal deformation gradient at n+1 (I + grad u_{n+1}).
std::vector< const VariableValue * > _disp
unsigned int _qp
IntRange< T > make_range(T beg, T end)

◆ computeQpIncrementalStrains()

template<class G >
void ComputeLagrangianStrainBase< G >::computeQpIncrementalStrains ( const RankTwoTensor dL)
protectedvirtualinherited

Calculate the strains based on the spatial velocity gradient.

The sym/skew split is trivial; kept as a public helper for backward compatibility with the linear-only path.

Definition at line 363 of file ComputeLagrangianStrainBase.C.

364 {
365  // Backward-compatible entry point: split into sym/skew and delegate.
366  setQpIncrementalStrains(0.5 * (dL + dL.transpose()), 0.5 * (dL - dL.transpose()));
367 }
void setQpIncrementalStrains(const RankTwoTensor &dd, const RankTwoTensor &dw)
Update strain / vorticity / mechanical-strain bookkeeping from already-split (dd, dw) tensors...
RankTwoTensorTempl< Real > transpose() const

◆ computeQpLargeKinematicIncrement()

template<class G >
void ComputeLagrangianStrainBase< G >::computeQpLargeKinematicIncrement ( const RankTwoTensor f_inv,
RankTwoTensor dd,
RankTwoTensor dw,
RankFourTensor d_dL_d_f_inv,
RankFourTensor d_dw_d_f_inv,
bool  need_jacobian 
)
protectedinherited

Dispatcher: compute (Deltad, Deltaw, d(Deltal)/d(f^{-1}), d(Deltaw)/d(f^{-1})) for the active kinematic approximation.

The vorticity derivative is returned separately so the Jaumann objective rate can chain its own Jacobian without re-projecting from dL. The two RankFour derivative out-parameters are filled only when need_jacobian is true; on residual-only sweeps their computation (RankFour builds, matrix-log derivatives, and the polar-decomposition chain) is skipped and the out-parameters are left untouched.

Definition at line 337 of file ComputeLagrangianStrainBase.C.

343 {
344  switch (_kinematic_approximation)
345  {
347  computeLinearIncrement(f_inv, dd, dw, d_dL_d_f_inv, d_dw_d_f_inv, need_jacobian);
348  break;
350  computeQuadraticIncrement(f_inv, dd, dw, d_dL_d_f_inv, d_dw_d_f_inv, need_jacobian);
351  break;
353  computeRashidApproximateIncrement(f_inv, dd, dw, d_dL_d_f_inv, d_dw_d_f_inv, need_jacobian);
354  break;
356  computeRashidEigenIncrement(f_inv, dd, dw, d_dL_d_f_inv, d_dw_d_f_inv, need_jacobian);
357  break;
358  }
359 }
void computeRashidEigenIncrement(const RankTwoTensor &f_inv, RankTwoTensor &dd, RankTwoTensor &dw, RankFourTensor &d_dL_d_f_inv, RankFourTensor &d_dw_d_f_inv, bool need_jacobian) const
"Exact" via polar decomposition of f^{-1} + matrix logs.
void computeLinearIncrement(const RankTwoTensor &f_inv, RankTwoTensor &dd, RankTwoTensor &dw, RankFourTensor &d_dL_d_f_inv, RankFourTensor &d_dw_d_f_inv, bool need_jacobian) const
Linear approximation: dL = I - f^{-1}.
void computeQuadraticIncrement(const RankTwoTensor &f_inv, RankTwoTensor &dd, RankTwoTensor &dw, RankFourTensor &d_dL_d_f_inv, RankFourTensor &d_dw_d_f_inv, bool need_jacobian) const
Quadratic approximation: dL = (I - f^{-1}) + 0.5 (I - f^{-1})^2.
const KinematicApproximation _kinematic_approximation
Selected approximation for the spatial velocity gradient increment.
void computeRashidApproximateIncrement(const RankTwoTensor &f_inv, RankTwoTensor &dd, RankTwoTensor &dw, RankFourTensor &d_dL_d_f_inv, RankFourTensor &d_dw_d_f_inv, bool need_jacobian) const
Rashid&#39;s approximate symmetric+skew formulas.
"Exact": polar decomposition + matrix logs

◆ computeQpPolarDecomposition()

template<class G >
void ComputeLagrangianStrainBase< G >::computeQpPolarDecomposition ( bool  need_jacobian)
protectedinherited

Compute and publish the polar decomposition of _F_actual at the current qp.

Always populates _rotation and _stretch (R and U). When need_jacobian is true, additionally populates _d_rotation_d_F. Consumed by the Green-Naghdi objective rate.

Definition at line 308 of file ComputeLagrangianStrainBase.C.

309 {
310  // Polar decomposition F = R * U of the alpha-weighted, F-bar-stabilized deformation
311  // gradient at this qp. We decompose _F rather than _F_actual because the rest of the
312  // kernel/rate chain treats _F as the spatial frame; using _F here matches the pre-3.1
313  // GN rate exactly (it read _def_grad, which is _F via ComputeLagrangianStressCauchy).
314  const RankTwoTensor & F = _F[_qp];
315  FactorizedRankTwoTensor C(F.transpose() * F);
316  // Reuse the sqrt factorization (a tensor eigensolve) for both U and U^{-1}.
317  const auto sqrt_C = MathUtils::sqrt(C);
318  _stretch[_qp] = sqrt_C.get();
319  const RankTwoTensor U_inv = sqrt_C.inverse().get();
320  _rotation[_qp] = F * U_inv;
321 
322  if (!need_jacobian)
323  return;
324 
325  // dR/dF closed form. See ComputeLagrangianObjectiveStress.C:221-227.
326  const auto I = RankTwoTensor::Identity();
327  const RankTwoTensor Y = _stretch[_qp].trace() * I - _stretch[_qp];
328  const RankTwoTensor Z = _rotation[_qp] * Y;
329  const RankTwoTensor O = Z * _rotation[_qp].transpose();
330  usingTensorIndices(i_, j_, k_, l_);
332  (O.template times<i_, k_, l_, j_>(Y) - Z.template times<i_, l_, k_, j_>(Z)) / Y.det();
333 }
MaterialProperty< RankTwoTensor > & _F
RankTwoTensorTempl< Real > inverse() const
MaterialProperty< RankFourTensor > & _d_rotation_d_F
Derivative of R with respect to F.
static RankTwoTensorTempl Identity()
static const std::string F
Definition: NS.h:169
unsigned int _qp
MaterialProperty< RankTwoTensor > & _rotation
Polar decomposition R of the (alpha-weighted, F-bar-stabilized) deformation gradient F at this qp...
const MooseArray< Moose::GenericType< T, is_ad > > & get() const
MaterialProperty< RankTwoTensor > & _stretch
Stretch U from the same polar decomposition.
static const std::string C
Definition: NS.h:172

◆ computeQpProperties()

template<class G >
void ComputeLagrangianStrainBase< G >::computeQpProperties ( )
overrideprotectedvirtualinherited

Reimplemented from Material.

Definition at line 195 of file ComputeLagrangianStrainBase.C.

196 {
197  // Add in the macroscale gradient contribution to both the stabilized `_F` (used by the
198  // strain chain via `_f_inv`) AND the unstabilized `_F_ust` (used by the new F_ust-wrap
199  // architecture in the stress materials). The homogenization gradient is a real
200  // deformation imposed via the scalar constraint, not a stabilization -- it must appear
201  // in F_ust too or PK1 = det(F_ust) sigma F_ust^{-T} will be missing its contribution.
202  for (auto contribution : _homogenization_contributions)
203  {
204  _F[_qp] += (*contribution)[_qp];
205  _F_ust[_qp] += (*contribution)[_qp];
206  }
207 
208  // Publish F_ust^{-1} and det(F_ust) for the large-kinematics consumers' spatial push-forward
209  // (grad_x = F_ust^{-T} grad_X, J_ust = det F_ust) and the Cauchy -> PK1 wrap. Computed once per
210  // qp here -- shared by all displacement kernels and the stress calculator via the material
211  // system -- instead of recomputed per test/trial/qp downstream. Gated on `_large_kinematics`
212  // (every consumer reads these only on the large-kinematics path) and on `isPropertyActive` (so
213  // consumers that never request them pay nothing).
215  {
216  _F_ust_inv[_qp] = _F_ust[_qp].inverse();
217  _F_ust_det[_qp] = _F_ust[_qp].det();
218  }
219 
220  // Skip the Jacobian-only RankFourTensor derivative chain when no downstream consumer
221  // will read it (i.e. we're in a residual-only sweep). All of `_d_F_d_grad_u`,
222  // `_d_deformation_gradient_increment_d_F`, `_d_vorticity_increment_d_F`, and the
223  // `_d_rotation_d_F` slot of the polar decomposition feed only `*_jacobian` material
224  // properties, which the kernel consumes only during Jacobian or
225  // residual-and-Jacobian-together assembly.
226  const bool need_jacobian = _fe_problem.currentlyComputingJacobian() ||
228 
229  // dF/d(grad u_{n+1}) = alpha * I^{(4)} for the generalized midpoint rule
230  // (alpha = 1.0 reduces to backward Euler).
231  if (need_jacobian)
233 
234  if (_large_kinematics)
235  {
236  _F_inv[_qp] = _F[_qp].inverse();
237  // For `F_bar_mode = incremental`: `_f_inv` must invert the *incremental* F that was
238  // F-bar'd (= `gamma_inc * F_ust * F_ust_old^{-1}`, matching OLD `ComputeFiniteStrain`'s
239  // `_Fhat` after its volumetric-locking correction). Since `_F = gamma_inc * F_ust`,
240  // `(gamma_inc * F_ust * F_ust_old^{-1})^{-1} = F_ust_old * _F^{-1}` -- i.e., pair the
241  // unstabilized old F with the (cumulative) stabilized current `_F^{-1}`. Using
242  // `_F_old` (the *cumulative* F-bar'd previous-step `_F`) here would compound F-bar
243  // across steps and break OLD-compat. `total` mode keeps the existing form (where `_F`
244  // and `_F_old` are the cumulative full-F F-bar'd values and the ratio gives the
245  // F-bar'd incremental F directly).
248  else
249  _f_inv[_qp] = _F_old[_qp] * _F_inv[_qp];
250 
251  // Dispatch to the active kinematic-approximation helper. Each helper returns
252  // dd (= Deltad), dw (= Deltaw), and -- only when `need_jacobian` -- the
253  // f^{-1}-derivatives of dL = dd + dw and of dw alone. The (dd, dw) outputs are needed
254  // every iteration; the RankFour derivatives feed only the Jacobian chain below, so on
255  // residual-only sweeps the helper skips them entirely.
256  RankTwoTensor dd, dw;
257  RankFourTensor d_dL_d_f_inv, d_dw_d_f_inv;
259  _f_inv[_qp], dd, dw, d_dL_d_f_inv, d_dw_d_f_inv, need_jacobian);
260 
261  if (need_jacobian)
262  {
263  // Common chain rule: d(f^{-1})_{pq}/dF_{mn} = -f^{-1}_{pm} * F^{-1}_{nq}.
264  usingTensorIndices(p_, q_, m_, n_);
265  const RankFourTensor d_f_inv_d_F = -_f_inv[_qp].template times<p_, m_, n_, q_>(_F_inv[_qp]);
266  _d_deformation_gradient_increment_d_F[_qp] = d_dL_d_f_inv * d_f_inv_d_F;
267  _d_vorticity_increment_d_F[_qp] = d_dw_d_f_inv * d_f_inv_d_F;
268  }
269 
270  setQpIncrementalStrains(dd, dw);
271  // The polar decomposition (a tensor eigensolve + sqrt per qp, on every residual and Jacobian
272  // eval) feeds only the Green-Naghdi objective rate's `_rotation` / `_d_rotation_d_F` (and its
273  // internal `_stretch`). Skip it entirely when no active consumer needs it -- Truesdell uses
274  // the deformation-gradient increment, Jaumann the vorticity increment, Rashid the Rodrigues
275  // `_rotation_increment`. The active-property set self-corrects for future consumers with no
276  // coupling flag.
278  computeQpPolarDecomposition(need_jacobian);
279  }
280  // For small deformations we just provide the identity (and always linear)
281  else
282  {
285  const RankTwoTensor dL = _F[_qp] - _F_old[_qp];
286 
287  if (need_jacobian)
288  {
289  // d(dL)/dF = I^{(4)} when dL = F - F_old. d(dW)/dF = the skew projector.
291  usingTensorIndices(i_, j_, k_, l_);
292  const auto I2 = RankTwoTensor::Identity();
294  0.5 * (RankFourTensor::IdentityFour() - I2.template times<j_, k_, i_, l_>(I2));
295 
296  // Small kinematics: R = I, U = I, dR/dF = 0. Defensive defaults; GN is not used here.
297  _d_rotation_d_F[_qp].zero();
298  }
299  _rotation[_qp].setToIdentity();
300  _stretch[_qp].setToIdentity();
301 
302  setQpIncrementalStrains(0.5 * (dL + dL.transpose()), 0.5 * (dL - dL.transpose()));
303  }
304 }
MaterialProperty< RankTwoTensor > & _F
const MaterialProperty< RankTwoTensor > & _F_ust_old
Old unstabilized deformation gradient.
FEProblemBase & _fe_problem
static RankFourTensorTempl< Real > IdentityFour()
MaterialProperty< RankTwoTensor > & _F_ust_inv
Inverse and determinant of the unstabilized deformation gradient F_ust.
MaterialProperty< Real > & _F_ust_det
const bool & currentlyComputingResidualAndJacobian() const
MaterialProperty< RankFourTensor > & _d_rotation_d_F
Derivative of R with respect to F.
static RankTwoTensorTempl Identity()
std::vector< const MaterialProperty< RankTwoTensor > * > _homogenization_contributions
Actual homogenization contributions.
unsigned int _qp
MaterialProperty< RankTwoTensor > & _F_ust
The unstabilized (alpha-weighted) deformation gradient.
void setQpIncrementalStrains(const RankTwoTensor &dd, const RankTwoTensor &dw)
Update strain / vorticity / mechanical-strain bookkeeping from already-split (dd, dw) tensors...
const MaterialProperty< RankTwoTensor > & _F_old
Old deformation gradient.
MaterialProperty< RankTwoTensor > & _rotation
Polar decomposition R of the (alpha-weighted, F-bar-stabilized) deformation gradient F at this qp...
const bool _large_kinematics
If true the equilibrium conditions is calculated with large deformations.
void computeQpPolarDecomposition(bool need_jacobian)
Compute and publish the polar decomposition of _F_actual at the current qp.
MaterialProperty< RankFourTensor > & _d_vorticity_increment_d_F
Derivative of the vorticity increment Deltaw with respect to F_{n+1}.
MaterialProperty< RankTwoTensor > & _stretch
Stretch U from the same polar decomposition.
MaterialProperty< RankTwoTensor > & _F_inv
Inverse deformation gradient.
const bool _stabilize_strain
If true stabilize the strains with F_bar.
RankTwoTensorTempl< Real > transpose() const
MaterialProperty< RankFourTensor > & _d_F_d_grad_u
Derivative of F_{n+1} with respect to the displacement gradient.
const FBarMode _F_bar_mode
Selected F-bar averaging mode (Total vs. Incremental). See FBarMode.
const Real _alpha
Generalized-midpoint weight for the deformation gradient (1.0 = backward Euler, 0.5 = midpoint)
bool isPropertyActive(const unsigned int prop_id) const
MaterialProperty< RankFourTensor > & _d_deformation_gradient_increment_d_F
Derivative of the spatial velocity gradient increment with respect to F_{n+1}.
const bool & currentlyComputingJacobian() const
MaterialProperty< RankTwoTensor > & _f_inv
Inverse incremental deformation gradient.
void computeQpLargeKinematicIncrement(const RankTwoTensor &f_inv, RankTwoTensor &dd, RankTwoTensor &dw, RankFourTensor &d_dL_d_f_inv, RankFourTensor &d_dw_d_f_inv, bool need_jacobian)
Dispatcher: compute (Deltad, Deltaw, d(Deltal)/d(f^{-1}), d(Deltaw)/d(f^{-1})) for the active kinemat...

◆ computeQpUnstabilizedDeformationGradient()

template<class G >
void ComputeLagrangianStrainBase< G >::computeQpUnstabilizedDeformationGradient ( )
protectedvirtualinherited

Calculate the unstabilized (alpha-weighted) deformation gradient at the quadrature point.

Definition at line 767 of file ComputeLagrangianStrainBase.C.

768 {
769  // Generalized midpoint: F^alpha_{n+1} = I + alpha * (grad u_{n+1}, u_{n+1})
770  // + (1 - alpha) * (grad u_n, u_n).
771  // alpha = 1.0 reduces to backward Euler (no old contribution). With a Steady executioner
772  // the old displacement is treated as identically zero (F_n = I), so we skip the old call
773  // entirely - this lets a user run with alpha != 1 in steady mode as well.
774  _F_ust[_qp].setToIdentity();
775  const bool include_old = _alpha != 1.0 && _fe_problem.isTransient();
776  for (auto component : make_range(_ndisp))
777  {
778  G::addGradOp(_F_ust[_qp],
779  component,
781  _alpha * (*_disp[component])[_qp],
782  _q_point[_qp]);
783  if (include_old)
784  G::addGradOp(_F_ust[_qp],
785  component,
786  (1.0 - _alpha) * (*_grad_disp_old[component])[_qp],
787  (1.0 - _alpha) * (*_disp_old[component])[_qp],
788  _q_point[_qp]);
789  }
790 }
const MooseArray< Point > & _q_point
FEProblemBase & _fe_problem
std::vector< const VariableGradient * > _grad_disp_old
Old displacement gradients for the generalized midpoint rule.
static const std::string component
Definition: NS.h:157
std::vector< const VariableGradient * > _grad_disp
std::vector< const VariableValue * > _disp
unsigned int _qp
MaterialProperty< RankTwoTensor > & _F_ust
The unstabilized (alpha-weighted) deformation gradient.
std::vector< const VariableValue * > _disp_old
Old displacement values for the generalized midpoint rule.
const Real _alpha
Generalized-midpoint weight for the deformation gradient (1.0 = backward Euler, 0.5 = midpoint)
IntRange< T > make_range(T beg, T end)
virtual bool isTransient() const override

◆ hasGuarantee()

bool GuaranteeProvider::hasGuarantee ( const MaterialPropertyName &  prop_name,
Guarantee  guarantee 
)
inherited

Definition at line 16 of file GuaranteeProvider.C.

17 {
18  auto it = _guarantees.find(prop_name);
19  if (it == _guarantees.end())
20  return false;
21 
22  auto it2 = it->second.find(guarantee);
23  return it2 != it->second.end();
24 }
std::map< MaterialPropertyName, std::set< Guarantee > > _guarantees

◆ initialSetup() [1/4]

template<>
void ComputeLagrangianStrainBase< GradientOperatorCartesian >::initialSetup ( )
inlinevirtualinherited

Reimplemented from Material.

Definition at line 25 of file ComputeLagrangianStrain.h.

26 {
28  mooseError("This kernel should only act in Cartesian coordinates.");
29 }
Moose::CoordinateSystemType getBlockCoordSystem()
void mooseError(Args &&... args) const

◆ initialSetup() [2/4]

template<>
void ComputeLagrangianStrainBase< GradientOperatorAxisymmetricCylindrical >::initialSetup ( )
virtualinherited

Reimplemented from Material.

Definition at line 25 of file ComputeLagrangianStrainAxisymmetricCylindrical.h.

26 {
28  mooseError("This kernel should only act in 2D axisymmetric RZ coordinates.");
29 }
Moose::CoordinateSystemType getBlockCoordSystem()
void mooseError(Args &&... args) const

◆ initialSetup() [3/4]

template<>
void ComputeLagrangianStrainBase< GradientOperatorCentrosymmetricSpherical >::initialSetup ( )
virtualinherited

Reimplemented from Material.

Definition at line 25 of file ComputeLagrangianStrainCentrosymmetricSpherical.h.

26 {
28  mooseError("This kernel should only act in centrosymmetric spherical coordinates.");
29 }
Moose::CoordinateSystemType getBlockCoordSystem()
COORD_RSPHERICAL
void mooseError(Args &&... args) const

◆ initialSetup() [4/4]

template<class G >
virtual void ComputeLagrangianStrainBase< G >::initialSetup ( )
overridevirtualinherited

Reimplemented from Material.

◆ initQpStatefulProperties()

template<class G >
void ComputeLagrangianStrainBase< G >::initQpStatefulProperties ( )
overrideprotectedvirtualinherited

Reimplemented from Material.

Definition at line 172 of file ComputeLagrangianStrainBase.C.

173 {
174  _total_strain[_qp].zero();
175  _mechanical_strain[_qp].zero();
177  _F[_qp].setToIdentity();
178  _F_ust[_qp].setToIdentity();
179  _rotation[_qp].setToIdentity();
180 }
MaterialProperty< RankTwoTensor > & _F
unsigned int _qp
MaterialProperty< RankTwoTensor > & _mechanical_strain
MaterialProperty< RankTwoTensor > & _F_ust
The unstabilized (alpha-weighted) deformation gradient.
MaterialProperty< RankTwoTensor > & _total_strain
MaterialProperty< RankTwoTensor > & _rotation
Polar decomposition R of the (alpha-weighted, F-bar-stabilized) deformation gradient F at this qp...
MaterialProperty< RankTwoTensor > & _rotated_mechanical_strain
Mechanical strain accumulated with the incremental rotation r_hat = exp(Deltaw), matching the convent...

◆ issueGuarantee()

void GuaranteeProvider::issueGuarantee ( const MaterialPropertyName &  prop_name,
Guarantee  guarantee 
)
protectedinherited

◆ revokeGuarantee()

void GuaranteeProvider::revokeGuarantee ( const MaterialPropertyName &  prop_name,
Guarantee  guarantee 
)
protectedinherited

Definition at line 34 of file GuaranteeProvider.C.

Referenced by ComputeElasticityTensorCP::ComputeElasticityTensorCP().

35 {
36  auto it = _guarantees.find(prop_name);
37  if (it != _guarantees.end())
38  it->second.erase(guarantee);
39 }
std::map< MaterialPropertyName, std::set< Guarantee > > _guarantees

◆ setQpIncrementalStrains()

template<class G >
void ComputeLagrangianStrainBase< G >::setQpIncrementalStrains ( const RankTwoTensor dd,
const RankTwoTensor dw 
)
protectedinherited

Update strain / vorticity / mechanical-strain bookkeeping from already-split (dd, dw) tensors.

Used by the Rashid options where dd != sym(dL) and dw != skew(dL).

Definition at line 371 of file ComputeLagrangianStrainBase.C.

373 {
374  _strain_increment[_qp] = dd;
376  // Full kinematic spatial velocity gradient increment, before any eigenstrain subtraction.
377  // The objective-rate advection in ComputeLagrangianObjectiveStress consumes this.
379 
380  // Increment the total strain
382 
383  // Get rid of the eigenstrains
384  // Note we currently do not alter the deformation gradient -- this will be
385  // needed in the future for a "complete" system
387 
388  // Increment the mechanical strain
390 
391  // Additionally maintain the rotated mechanical-strain accumulator,
392  // eps_n+1 = r_hat (eps_n + Deltad) r_hat^T, where r_hat = exp(Deltaw) via Rodrigues. This matches
393  // the mechanical_strain output convention of `ComputeFiniteStrain` and is consumed only by aux
394  // variables -- the stress chain still uses the un-rotated `_mechanical_strain` above. In small
395  // kinematics dw is small and r_hat ~= I + dw + 1/2 dw^2, which contributes only second-order
396  // corrections (equivalent to no rotation for small strain).
397  RankTwoTensor r_hat;
398  if (_large_kinematics)
399  {
400  const Real theta2 = 0.5 * dw.doubleContraction(dw);
401  const Real theta = std::sqrt(theta2);
402  Real f, g;
403  const Real small_theta = 1.0e-7;
404  if (theta < small_theta)
405  {
406  f = 1.0 - theta2 / 6.0;
407  g = 0.5 - theta2 / 24.0;
408  }
409  else
410  {
411  f = std::sin(theta) / theta;
412  g = (1.0 - std::cos(theta)) / theta2;
413  }
414  r_hat = RankTwoTensor::Identity() + f * dw + g * dw * dw;
415  }
416  else
417  {
418  r_hat = RankTwoTensor::Identity();
419  }
422 
423  // Published rotation increment for downstream `ComputeStressBase`-style materials. The
424  // default (identity) preserves the historical Lagrangian pipeline where the objective
425  // rate is the sole rotation source. With `publish_rotation_increment = true` we dispatch
426  // to the `kinematic_approximation`-matched formula so wrapped plasticity with
427  // `perform_finite_strain_rotations = true` rotates its `_stress` bit-for-bit like OLD's
428  // `ComputeFiniteStrain` would have done (the rate then runs in `rotate_old_stress`
429  // passthrough mode so we don't double-rotate). Specifically `rashid_approximate` uses
430  // OLD's C1/C2/C3 polynomial form (not `exp(dw)`) so the wrapped material's accumulated
431  // stress storage matches OLD's `_stress` byte-for-byte through return mapping; without
432  // this, the small (~1e-5) per-step rotation drift between `exp(dw)` and OLD's R_incr
433  // amplifies through plastic flow into ~1e-3 cumulative stress error.
437 }
const MaterialProperty< RankTwoTensor > & _total_strain_old
static RankTwoTensorTempl Identity()
const MaterialProperty< RankTwoTensor > & _mechanical_strain_old
unsigned int _qp
MaterialProperty< RankTwoTensor > & _mechanical_strain
Real f(Real x)
Test function for Brents method.
MaterialProperty< RankTwoTensor > & _total_strain
const bool _large_kinematics
If true the equilibrium conditions is calculated with large deformations.
virtual void subtractQpEigenstrainIncrement(RankTwoTensor &strain)
Subtract the eigenstrain increment to subtract from the total strain.
MaterialProperty< RankTwoTensor > & _strain_increment
Strain increment.
RankTwoTensor computeQpRotationIncrement(const RankTwoTensor &f_inv, const RankTwoTensor &dw) const
Rotation increment matched to the active _kinematic_approximation, suitable for publishing as _rotati...
RankTwoTensorTempl< Real > transpose() const
DIE A HORRIBLE DEATH HERE typedef LIBMESH_DEFAULT_SCALAR_TYPE Real
MaterialProperty< RankTwoTensor > & _vorticity_increment
Vorticity increment.
const bool _publish_rotation_increment
If true, publish _rotation_increment = exp(_vorticity_increment) (Rodrigues) instead of the default i...
MaterialProperty< RankTwoTensor > & _rotation_increment
Rotation increment for "old" materials inheriting from ComputeStressBase.
MaterialProperty< RankTwoTensor > & _f_inv
Inverse incremental deformation gradient.
MaterialProperty< RankTwoTensor > & _deformation_gradient_increment
Deformation gradient increment.
MaterialProperty< RankTwoTensor > & _rotated_mechanical_strain
Mechanical strain accumulated with the incremental rotation r_hat = exp(Deltaw), matching the convent...
const MaterialProperty< RankTwoTensor > & _rotated_mechanical_strain_old

◆ subtractQpEigenstrainIncrement()

template<class G >
void ComputeLagrangianStrainBase< G >::subtractQpEigenstrainIncrement ( RankTwoTensor strain)
protectedvirtualinherited

Subtract the eigenstrain increment to subtract from the total strain.

Definition at line 759 of file ComputeLagrangianStrainBase.C.

760 {
761  for (auto i : make_range(_eigenstrain_names.size()))
762  strain -= (*_eigenstrains[i])[_qp] - (*_eigenstrains_old[i])[_qp];
763 }
unsigned int _qp
std::vector< const MaterialProperty< RankTwoTensor > * > _eigenstrains_old
std::vector< const MaterialProperty< RankTwoTensor > * > _eigenstrains
std::vector< MaterialPropertyName > _eigenstrain_names
IntRange< T > make_range(T beg, T end)

◆ validParams()

InputParameters ComputeLagrangianWPSStrain::validParams ( )
static

Definition at line 15 of file ComputeLagrangianWPSStrain.C.

16 {
18  params.addRequiredCoupledVar("out_of_plane_strain", "The out-of-plane strain");
19  return params;
20 }
void addRequiredCoupledVar(const std::string &name, const std::string &doc_string)
static InputParameters validParams()

Member Data Documentation

◆ _alpha

template<class G >
const Real ComputeLagrangianStrainBase< G >::_alpha
protectedinherited

Generalized-midpoint weight for the deformation gradient (1.0 = backward Euler, 0.5 = midpoint)

Definition at line 144 of file ComputeLagrangianStrainBase.h.

◆ _base_name

template<class G >
const std::string ComputeLagrangianStrainBase< G >::_base_name
protectedinherited

◆ _d_deformation_gradient_increment_d_F

template<class G >
MaterialProperty<RankFourTensor>& ComputeLagrangianStrainBase< G >::_d_deformation_gradient_increment_d_F
protectedinherited

Derivative of the spatial velocity gradient increment with respect to F_{n+1}.

Stored so downstream consumers do not bake in the linear-approximation assumption.

Definition at line 217 of file ComputeLagrangianStrainBase.h.

◆ _d_F_d_grad_u

template<class G >
MaterialProperty<RankFourTensor>& ComputeLagrangianStrainBase< G >::_d_F_d_grad_u
protectedinherited

Derivative of F_{n+1} with respect to the displacement gradient.

Identity for backward Euler; will become alpha * Identity for the generalized midpoint rule.

Definition at line 226 of file ComputeLagrangianStrainBase.h.

◆ _d_F_stab_d_F_avg

template<class G >
MaterialProperty<RankFourTensor>& ComputeLagrangianStrainBase< G >::_d_F_stab_d_F_avg
protectedinherited

Partial derivative of the F-bar-stabilized deformation gradient with respect to the element-averaged deformation gradient F_avg (the non-local coupling).

Equals zero when F-bar is off.

Definition at line 245 of file ComputeLagrangianStrainBase.h.

◆ _d_F_stab_d_F_ust

template<class G >
MaterialProperty<RankFourTensor>& ComputeLagrangianStrainBase< G >::_d_F_stab_d_F_ust
protectedinherited

Partial derivative of the F-bar-stabilized deformation gradient with respect to the unstabilized (per-qp local) deformation gradient.

Equals IdentityFour when F-bar is off.

Definition at line 240 of file ComputeLagrangianStrainBase.h.

◆ _d_rotation_d_F

template<class G >
MaterialProperty<RankFourTensor>& ComputeLagrangianStrainBase< G >::_d_rotation_d_F
protectedinherited

Derivative of R with respect to F.

Definition at line 236 of file ComputeLagrangianStrainBase.h.

◆ _d_vorticity_increment_d_F

template<class G >
MaterialProperty<RankFourTensor>& ComputeLagrangianStrainBase< G >::_d_vorticity_increment_d_F
protectedinherited

Derivative of the vorticity increment Deltaw with respect to F_{n+1}.

Consumed by the Jaumann objective rate so it can produce a consistent Jacobian regardless of which kinematic_approximation the strain calculator is using.

Definition at line 222 of file ComputeLagrangianStrainBase.h.

◆ _deformation_gradient_increment

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_deformation_gradient_increment
protectedinherited

Deformation gradient increment.

Definition at line 173 of file ComputeLagrangianStrainBase.h.

◆ _disp

template<class G >
std::vector<const VariableValue *> ComputeLagrangianStrainBase< G >::_disp
protectedinherited

Definition at line 113 of file ComputeLagrangianStrainBase.h.

◆ _disp_old

template<class G >
std::vector<const VariableValue *> ComputeLagrangianStrainBase< G >::_disp_old
protectedinherited

Old displacement values for the generalized midpoint rule.

Definition at line 116 of file ComputeLagrangianStrainBase.h.

Referenced by ComputeLagrangianStrainBase< G >::ComputeLagrangianStrainBase().

◆ _eigenstrain_names

template<class G >
std::vector<MaterialPropertyName> ComputeLagrangianStrainBase< G >::_eigenstrain_names
protectedinherited

◆ _eigenstrains

template<class G >
std::vector<const MaterialProperty<RankTwoTensor> *> ComputeLagrangianStrainBase< G >::_eigenstrains
protectedinherited

◆ _eigenstrains_old

template<class G >
std::vector<const MaterialProperty<RankTwoTensor> *> ComputeLagrangianStrainBase< G >::_eigenstrains_old
protectedinherited

◆ _F

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_F
protectedinherited

Definition at line 197 of file ComputeLagrangianStrainBase.h.

Referenced by computeDeformationGradient().

◆ _F_actual

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_F_actual
protectedinherited

The literal deformation gradient at n+1 (I + grad u_{n+1}).

Equals _F_ust when alpha = 1. Needed by the UL kernel for the spatial-to-reference pull-back, since the spatial frame is always at n+1 regardless of alpha.

Definition at line 189 of file ComputeLagrangianStrainBase.h.

◆ _F_avg

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_F_avg
protectedinherited

Definition at line 193 of file ComputeLagrangianStrainBase.h.

◆ _F_bar_mode

template<class G >
const FBarMode ComputeLagrangianStrainBase< G >::_F_bar_mode
protectedinherited

Selected F-bar averaging mode (Total vs. Incremental). See FBarMode.

Definition at line 130 of file ComputeLagrangianStrainBase.h.

◆ _F_inv

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_F_inv
protectedinherited

Inverse deformation gradient.

Definition at line 203 of file ComputeLagrangianStrainBase.h.

◆ _f_inv

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_f_inv
protectedinherited

Inverse incremental deformation gradient.

Definition at line 205 of file ComputeLagrangianStrainBase.h.

◆ _F_old

template<class G >
const MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_F_old
protectedinherited

Old deformation gradient.

Definition at line 200 of file ComputeLagrangianStrainBase.h.

◆ _F_ust

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_F_ust
protectedinherited

The unstabilized (alpha-weighted) deformation gradient.

Definition at line 179 of file ComputeLagrangianStrainBase.h.

Referenced by computeDeformationGradient().

◆ _F_ust_det

template<class G >
MaterialProperty<Real>& ComputeLagrangianStrainBase< G >::_F_ust_det
protectedinherited

Definition at line 213 of file ComputeLagrangianStrainBase.h.

◆ _F_ust_inv

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_F_ust_inv
protectedinherited

Inverse and determinant of the unstabilized deformation gradient F_ust.

Published for the F-bar Lagrangian kernels' spatial push-forward (grad_x = F_ust^{-T} grad_X, J_ust = det F_ust) so the kernel reads a per-qp material property (computed once, shared by all displacement kernels) instead of recomputing the 3x3 inverse per test/trial. Filled only when a consumer marks them active (see isPropertyActive gate in computeQpProperties).

Definition at line 212 of file ComputeLagrangianStrainBase.h.

◆ _F_ust_old

template<class G >
const MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_F_ust_old
protectedinherited

Old unstabilized deformation gradient.

Needed for F_bar_mode = incremental so the incremental F (F_ust * F_ust_old^{-1}) at this step is built from the unstabilized pair (matching OLD ComputeFiniteStrain's _Fhat). Only consulted in incremental mode.

Definition at line 184 of file ComputeLagrangianStrainBase.h.

◆ _grad_disp

template<class G >
std::vector<const VariableGradient *> ComputeLagrangianStrainBase< G >::_grad_disp
protectedinherited

Definition at line 114 of file ComputeLagrangianStrainBase.h.

◆ _grad_disp_old

template<class G >
std::vector<const VariableGradient *> ComputeLagrangianStrainBase< G >::_grad_disp_old
protectedinherited

Old displacement gradients for the generalized midpoint rule.

Definition at line 118 of file ComputeLagrangianStrainBase.h.

Referenced by ComputeLagrangianStrainBase< G >::ComputeLagrangianStrainBase().

◆ _homogenization_contributions

template<class G >
std::vector<const MaterialProperty<RankTwoTensor> *> ComputeLagrangianStrainBase< G >::_homogenization_contributions
protectedinherited

Actual homogenization contributions.

Definition at line 251 of file ComputeLagrangianStrainBase.h.

Referenced by ComputeLagrangianStrainBase< G >::ComputeLagrangianStrainBase().

◆ _homogenization_gradient_names

template<class G >
std::vector<MaterialPropertyName> ComputeLagrangianStrainBase< G >::_homogenization_gradient_names
protectedinherited

Names of any extra homogenization gradients.

Definition at line 248 of file ComputeLagrangianStrainBase.h.

Referenced by ComputeLagrangianStrainBase< G >::ComputeLagrangianStrainBase().

◆ _kinematic_approximation

template<class G >
const KinematicApproximation ComputeLagrangianStrainBase< G >::_kinematic_approximation
protectedinherited

Selected approximation for the spatial velocity gradient increment.

Definition at line 147 of file ComputeLagrangianStrainBase.h.

◆ _large_kinematics

template<class G >
const bool ComputeLagrangianStrainBase< G >::_large_kinematics
protectedinherited

If true the equilibrium conditions is calculated with large deformations.

Definition at line 124 of file ComputeLagrangianStrainBase.h.

Referenced by ComputeLagrangianStrainBase< G >::ComputeLagrangianStrainBase().

◆ _mechanical_strain

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_mechanical_strain
protectedinherited

Definition at line 157 of file ComputeLagrangianStrainBase.h.

◆ _mechanical_strain_old

template<class G >
const MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_mechanical_strain_old
protectedinherited

Definition at line 158 of file ComputeLagrangianStrainBase.h.

◆ _ndisp

template<class G >
const unsigned int ComputeLagrangianStrainBase< G >::_ndisp
protectedinherited

Definition at line 112 of file ComputeLagrangianStrainBase.h.

◆ _out_of_plane_strain

const VariableValue& ComputeLagrangianWPSStrain::_out_of_plane_strain
protected

Definition at line 28 of file ComputeLagrangianWPSStrain.h.

Referenced by computeDeformationGradient().

◆ _publish_rotation_increment

template<class G >
const bool ComputeLagrangianStrainBase< G >::_publish_rotation_increment
protectedinherited

If true, publish _rotation_increment = exp(_vorticity_increment) (Rodrigues) instead of the default identity.

Enables OLD-compatible plasticity through ComputeLagrangianWrappedStress: wrapped materials with perform_finite_strain_rotations = true (e.g. ComputeMultiPlasticityStress) will rotate their internal _stress each step, so the next step's return mapping reads _stress_old = sigma_cauchy_old (matching OLD's ComputeFiniteStrain pipeline). Pair with rotate_old_stress = true on the objective rate so the rate skips its outer rotation (the wrapped material already applied it) and doesn't double-rotate. Default false preserves the existing pipeline where the rate alone applies rotation.

Definition at line 141 of file ComputeLagrangianStrainBase.h.

◆ _rotated_mechanical_strain

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_rotated_mechanical_strain
protectedinherited

Mechanical strain accumulated with the incremental rotation r_hat = exp(Deltaw), matching the convention ComputeFiniteStrain uses for its mechanical_strain output (eps_n+1 = r_hat * (eps_n + Deltad) * r_hat^T).

Provided as a separate property so the standard _mechanical_strain (consumed by constitutive materials) stays un-rotated and the objective-rate-driven stress chain is unaffected. Use this for aux-variable output when matching the old-system convention.

Definition at line 166 of file ComputeLagrangianStrainBase.h.

◆ _rotated_mechanical_strain_old

template<class G >
const MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_rotated_mechanical_strain_old
protectedinherited

Definition at line 167 of file ComputeLagrangianStrainBase.h.

◆ _rotation

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_rotation
protectedinherited

Polar decomposition R of the (alpha-weighted, F-bar-stabilized) deformation gradient F at this qp.

Stateful so the Green-Naghdi rate can read R_n via getMaterialPropertyOld. Computed only when a consumer (the Green-Naghdi objective rate) marks it active – see the isPropertyActive gate on computeQpPolarDecomposition in computeQpProperties.

Definition at line 232 of file ComputeLagrangianStrainBase.h.

◆ _rotation_increment

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_rotation_increment
protectedinherited

Rotation increment for "old" materials inheriting from ComputeStressBase.

Definition at line 254 of file ComputeLagrangianStrainBase.h.

◆ _stabilize_strain

template<class G >
const bool ComputeLagrangianStrainBase< G >::_stabilize_strain
protectedinherited

If true stabilize the strains with F_bar.

Definition at line 127 of file ComputeLagrangianStrainBase.h.

◆ _strain_increment

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_strain_increment
protectedinherited

Strain increment.

Definition at line 170 of file ComputeLagrangianStrainBase.h.

◆ _stretch

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_stretch
protectedinherited

Stretch U from the same polar decomposition.

Definition at line 234 of file ComputeLagrangianStrainBase.h.

◆ _total_strain

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_total_strain
protectedinherited

Definition at line 155 of file ComputeLagrangianStrainBase.h.

◆ _total_strain_old

template<class G >
const MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_total_strain_old
protectedinherited

Definition at line 156 of file ComputeLagrangianStrainBase.h.

◆ _vorticity_increment

template<class G >
MaterialProperty<RankTwoTensor>& ComputeLagrangianStrainBase< G >::_vorticity_increment
protectedinherited

Vorticity increment.

Definition at line 176 of file ComputeLagrangianStrainBase.h.


The documentation for this class was generated from the following files: