OGS
ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim > Struct Template Reference

Detailed Description

template<int DisplacementDim>
struct ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >

Definition at line 32 of file LocalAssemblerInterface.h.

#include <LocalAssemblerInterface.h>

Inheritance diagram for ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >:
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Collaboration diagram for ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >:
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Public Member Functions

 LargeDeformationLocalAssemblerInterface (MeshLib::Element const &e, NumLib::GenericIntegrationMethod const &integration_method, bool const is_axially_symmetric, LargeDeformationProcessData< DisplacementDim > &process_data)
std::size_t setIPDataInitialConditions (std::string_view name, double const *values, int const integration_order)
 Returns number of read integration points.
unsigned getNumberOfIntegrationPoints () const
int getMaterialID () const
std::vector< double > getMaterialStateVariableInternalState (std::function< std::span< double >(typename MaterialLib::Solids::MechanicsBase< DisplacementDim >::MaterialStateVariables &)> const &get_values_span, int const &n_components) const
MaterialLib::Solids::MechanicsBase< DisplacementDim >::MaterialStateVariables const & getMaterialStateVariablesAt (unsigned integration_point) const
Public Member Functions inherited from ProcessLib::LocalAssemblerInterface
virtual ~LocalAssemblerInterface ()=default
virtual void setInitialConditions (std::size_t const mesh_item_id, std::vector< NumLib::LocalToGlobalIndexMap const * > const &dof_tables, std::vector< GlobalVector * > const &x, double const t, int const process_id)
virtual void initialize (std::size_t const mesh_item_id, NumLib::LocalToGlobalIndexMap const &dof_table)
virtual void preAssemble (double const, double const, std::vector< double > const &)
virtual void assemble (double const t, double const dt, std::vector< double > const &local_x, std::vector< double > const &local_x_prev, std::vector< double > &local_M_data, std::vector< double > &local_K_data, std::vector< double > &local_b_data)
virtual void assembleForStaggeredScheme (double const t, double const dt, Eigen::VectorXd const &local_x, Eigen::VectorXd const &local_x_prev, int const process_id, std::vector< double > &local_M_data, std::vector< double > &local_K_data, std::vector< double > &local_b_data)
virtual void assembleWithJacobian (double const t, double const dt, std::vector< double > const &local_x, std::vector< double > const &local_x_prev, std::vector< double > &local_b_data, std::vector< double > &local_Jac_data)
virtual void assembleWithJacobianForStaggeredScheme (double const t, double const dt, Eigen::VectorXd const &local_x, Eigen::VectorXd const &local_x_prev, int const process_id, std::vector< double > &local_b_data, std::vector< double > &local_Jac_data)
virtual void computeSecondaryVariable (std::size_t const mesh_item_id, std::vector< NumLib::LocalToGlobalIndexMap const * > const &dof_tables, double const t, double const dt, std::vector< GlobalVector * > const &x, GlobalVector const &x_prev, int const process_id)
virtual void preTimestep (std::size_t const mesh_item_id, NumLib::LocalToGlobalIndexMap const &dof_table, GlobalVector const &x, double const t, double const delta_t)
virtual void postTimestep (std::size_t const mesh_item_id, std::vector< NumLib::LocalToGlobalIndexMap const * > const &dof_tables, std::vector< GlobalVector * > const &x, std::vector< GlobalVector * > const &x_prev, double const t, double const dt, int const process_id)
void postNonLinearSolver (std::size_t const mesh_item_id, std::vector< NumLib::LocalToGlobalIndexMap const * > const &dof_tables, std::vector< GlobalVector * > const &x, std::vector< GlobalVector * > const &x_prev, double const t, double const dt, int const process_id)
virtual Eigen::Vector3d getFlux (MathLib::Point3d const &, double const, std::vector< double > const &) const
virtual Eigen::Vector3d getFlux (MathLib::Point3d const &, double const, std::vector< std::vector< double > > const &) const
 Fits to staggered scheme.
virtual std::optional< VectorSegmentgetVectorDeformationSegment () const
Public Member Functions inherited from NumLib::ExtrapolatableElement
virtual Eigen::Map< const Eigen::RowVectorXd > getShapeMatrix (const unsigned integration_point) const =0
 Provides the shape matrix at the given integration point.
virtual ~ExtrapolatableElement ()=default

Static Public Member Functions

static auto getReflectionDataForOutput ()

Protected Attributes

LargeDeformationProcessData< DisplacementDim > & process_data_
std::vector< MaterialStateData< DisplacementDim > > material_states_
std::vector< typename ConstitutiveRelations::StatefulData< DisplacementDim > > current_states_
std::vector< typename ConstitutiveRelations::StatefulDataPrev< DisplacementDim > > prev_states_
std::vector< typename ConstitutiveRelations::OutputData< DisplacementDim > > output_data_
NumLib::GenericIntegrationMethod const & integration_method_
MeshLib::Element const & element_
bool const is_axially_symmetric_
ConstitutiveRelations::SolidConstitutiveRelation< DisplacementDim > const & solid_material_

Constructor & Destructor Documentation

◆ LargeDeformationLocalAssemblerInterface()

template<int DisplacementDim>
ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >::LargeDeformationLocalAssemblerInterface ( MeshLib::Element const & e,
NumLib::GenericIntegrationMethod const & integration_method,
bool const is_axially_symmetric,
LargeDeformationProcessData< DisplacementDim > & process_data )
inline

Definition at line 36 of file LocalAssemblerInterface.h.

43 element_(e),
46 process_data_.solid_materials, process_data_.material_ids,
47 element_.getID()))
48 {
49 unsigned const n_integration_points =
50 integration_method_.getNumberOfPoints();
51
53 for (unsigned ip = 0; ip < n_integration_points; ++ip)
54 {
55 material_states_.emplace_back(
56 solid_material_.createMaterialStateVariables());
57 }
58
62 }
std::vector< MaterialStateData< DisplacementDim > > material_states_
std::vector< typename ConstitutiveRelations::StatefulDataPrev< DisplacementDim > > prev_states_
std::vector< typename ConstitutiveRelations::StatefulData< DisplacementDim > > current_states_
std::vector< typename ConstitutiveRelations::OutputData< DisplacementDim > > output_data_
ConstitutiveRelations::SolidConstitutiveRelation< DisplacementDim > const & solid_material_

References current_states_, element_, integration_method_, is_axially_symmetric_, material_states_, output_data_, prev_states_, process_data_, and solid_material_.

Referenced by ProcessLib::LargeDeformation::LargeDeformationLocalAssembler< ShapeFunction, DisplacementDim >::LargeDeformationLocalAssembler(), and getReflectionDataForOutput().

Member Function Documentation

◆ getMaterialID()

template<int DisplacementDim>
int ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >::getMaterialID ( ) const
inline

Definition at line 118 of file LocalAssemblerInterface.h.

119 {
120 return process_data_.material_ids == nullptr
121 ? 0
122 : (*process_data_.material_ids)[element_.getID()];
123 }

References element_, and process_data_.

◆ getMaterialStateVariableInternalState()

template<int DisplacementDim>
std::vector< double > ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >::getMaterialStateVariableInternalState ( std::function< std::span< double >(typename MaterialLib::Solids::MechanicsBase< DisplacementDim >::MaterialStateVariables &)> const & get_values_span,
int const & n_components ) const
inline

Definition at line 125 of file LocalAssemblerInterface.h.

130 {
135 }
std::vector< double > getIntegrationPointDataMaterialStateVariables(IntegrationPointDataVector const &ip_data_vector, MemberType member, std::function< std::span< double >(MaterialStateVariables &)> get_values_span, int const n_components)

References ProcessLib::getIntegrationPointDataMaterialStateVariables(), ProcessLib::LargeDeformation::MaterialStateData< DisplacementDim >::material_state_variables, and material_states_.

◆ getMaterialStateVariablesAt()

template<int DisplacementDim>
MaterialLib::Solids::MechanicsBase< DisplacementDim >::MaterialStateVariables const & ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >::getMaterialStateVariablesAt ( unsigned integration_point) const
inline

Definition at line 139 of file LocalAssemblerInterface.h.

140 {
141 return *material_states_[integration_point].material_state_variables;
142 }

References material_states_.

◆ getNumberOfIntegrationPoints()

template<int DisplacementDim>
unsigned ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >::getNumberOfIntegrationPoints ( ) const
inline

Definition at line 113 of file LocalAssemblerInterface.h.

114 {
115 return integration_method_.getNumberOfPoints();
116 }

References integration_method_.

◆ getReflectionDataForOutput()

template<int DisplacementDim>
auto ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >::getReflectionDataForOutput ( )
inlinestatic

Definition at line 144 of file LocalAssemblerInterface.h.

145 {
147
150 }
auto reflectWithoutName(Accessors &&... accessors)
LargeDeformationLocalAssemblerInterface(MeshLib::Element const &e, NumLib::GenericIntegrationMethod const &integration_method, bool const is_axially_symmetric, LargeDeformationProcessData< DisplacementDim > &process_data)

References LargeDeformationLocalAssemblerInterface(), and ProcessLib::Reflection::reflectWithoutName().

◆ setIPDataInitialConditions()

template<int DisplacementDim>
std::size_t ProcessLib::LargeDeformation::LargeDeformationLocalAssemblerInterface< DisplacementDim >::setIPDataInitialConditions ( std::string_view name,
double const * values,
int const integration_order )
inline

Returns number of read integration points.

Definition at line 64 of file LocalAssemblerInterface.h.

67 {
69 static_cast<int>(integration_method_.getIntegrationOrder()))
70 {
72 "Setting integration point initial conditions; The integration "
73 "order of the local assembler for element {:d} is different "
74 "from the integration order in the initial condition.",
75 element_.getID());
76 }
77
78 if (name.starts_with("material_state_variable_"))
79 {
80 name.remove_prefix(24);
81
82 auto const& internal_variables =
83 solid_material_.getInternalVariables();
84 if (auto const iv = std::find_if(
86 [&name](auto const& iv) { return iv.name == name; });
88 {
89 DBUG("Setting material state variable '{:s}'", name);
90 return ProcessLib::
95 iv->reference);
96 }
97
98 WARN(
99 "Could not find variable {:s} in solid material model's "
100 "internal variables.",
101 name);
102 return 0;
103 }
104
105 // TODO this logic could be pulled out of the local assembler into the
106 // process. That might lead to a slightly better performance due to less
107 // string comparisons.
110 }
#define OGS_FATAL(...)
Definition Error.h:26
void DBUG(fmt::format_string< Args... > fmt, Args &&... args)
Definition Logging.h:30
void WARN(fmt::format_string< Args... > fmt, Args &&... args)
Definition Logging.h:42
std::size_t reflectSetIPData(std::string_view const name, double const *values, std::vector< IPData > &ip_data_vector)
std::size_t setIntegrationPointDataMaterialStateVariables(double const *values, IntegrationPointDataVector &ip_data_vector, MemberType member, std::function< std::span< double >(MaterialStateVariables &)> get_values_span)

References current_states_, DBUG(), element_, integration_method_, material_states_, OGS_FATAL, ProcessLib::Reflection::reflectSetIPData(), ProcessLib::setIntegrationPointDataMaterialStateVariables(), solid_material_, and WARN().

Member Data Documentation

◆ current_states_

◆ element_

◆ integration_method_

◆ is_axially_symmetric_

◆ material_states_

◆ output_data_

◆ prev_states_

◆ process_data_

◆ solid_material_


The documentation for this struct was generated from the following file: