29template <
int DisplacementDim>
33 std::unique_ptr<ProcessLib::AbstractJacobianAssembler>&& jacobian_assembler,
34 std::vector<std::unique_ptr<ParameterLib::ParameterBase>>
const& parameters,
35 unsigned const integration_order,
36 std::vector<std::vector<std::reference_wrapper<ProcessVariable>>>&&
40 bool const use_monolithic_scheme)
41 :
Process(std::move(
name), mesh, std::move(jacobian_assembler), parameters,
42 integration_order, std::move(process_variables),
43 std::move(secondary_variables), use_monolithic_scheme),
46 process_data_(std::move(process_data))
48 _integration_point_writer.emplace_back(
49 std::make_unique<MeshLib::IntegrationPointWriter>(
51 static_cast<int>(mesh.getDimension() == 2 ? 4 : 6) ,
52 integration_order, local_assemblers_, &LocalAssemblerIF::getSigma));
54 _integration_point_writer.emplace_back(
55 std::make_unique<MeshLib::IntegrationPointWriter>(
57 static_cast<int>(mesh.getDimension() == 2 ? 4 : 6) ,
58 integration_order, local_assemblers_,
59 &LocalAssemblerIF::getEpsilon));
61 if (!_use_monolithic_scheme)
63 _integration_point_writer.emplace_back(
64 std::make_unique<MeshLib::IntegrationPointWriter>(
65 "strain_rate_variable_ip", 1, integration_order,
66 local_assemblers_, &LocalAssemblerIF::getStrainRateVariable));
70template <
int DisplacementDim>
76template <
int DisplacementDim>
79 const int process_id)
const
86 return {l.dofSizeWithoutGhosts(), l.dofSizeWithoutGhosts(),
92 return {l.dofSizeWithoutGhosts(), l.dofSizeWithoutGhosts(),
96template <
int DisplacementDim>
110 std::vector<MeshLib::MeshSubset> all_mesh_subsets_single_component{
113 std::make_unique<NumLib::LocalToGlobalIndexMap>(
114 std::move(all_mesh_subsets_single_component),
121 std::vector<MeshLib::MeshSubset> all_mesh_subsets{
125 const int monolithic_process_id = 0;
126 std::generate_n(std::back_inserter(all_mesh_subsets),
129 .getNumberOfGlobalComponents(),
132 std::vector<int>
const vec_n_components{1, DisplacementDim};
134 std::make_unique<NumLib::LocalToGlobalIndexMap>(
135 std::move(all_mesh_subsets), vec_n_components,
142 const int process_id = 1;
143 std::vector<MeshLib::MeshSubset> all_mesh_subsets;
144 std::generate_n(std::back_inserter(all_mesh_subsets),
147 .getNumberOfGlobalComponents(),
150 std::vector<int>
const vec_n_components{DisplacementDim};
152 std::make_unique<NumLib::LocalToGlobalIndexMap>(
153 std::move(all_mesh_subsets), vec_n_components,
158 std::vector<MeshLib::MeshSubset> all_mesh_subsets_base_nodes{
161 std::make_unique<NumLib::LocalToGlobalIndexMap>(
162 std::move(all_mesh_subsets_base_nodes),
174template <
int DisplacementDim>
178 unsigned const integration_order)
186 auto add_secondary_variable = [&](std::string
const&
name,
187 int const num_components,
188 auto get_ip_values_function)
194 std::move(get_ip_values_function)));
197 add_secondary_variable(
"sigma",
199 DisplacementDim>::RowsAtCompileTime,
202 add_secondary_variable(
"epsilon",
204 DisplacementDim>::RowsAtCompileTime,
207 add_secondary_variable(
"velocity", DisplacementDim,
215 add_secondary_variable);
224 const_cast<MeshLib::Mesh&
>(mesh),
"principal_stress_vector_1",
229 const_cast<MeshLib::Mesh&
>(mesh),
"principal_stress_vector_2",
234 const_cast<MeshLib::Mesh&
>(mesh),
"principal_stress_vector_3",
256template <
int DisplacementDim>
258 std::map<
int, std::shared_ptr<MaterialPropertyLib::Medium>>
const& media)
262 const int process_id_of_hydromechanics = 0;
270 const int hydraulic_process_id = 0;
276 const int mechanical_process_id = 1;
281template <
int DisplacementDim>
283 const double t,
double const dt, std::vector<GlobalVector*>
const& x,
284 std::vector<GlobalVector*>
const& x_prev,
int const process_id,
287 DBUG(
"Assemble the equations for HydroMechanics");
293 std::vector<NumLib::LocalToGlobalIndexMap const*> dof_table = {
302template <
int DisplacementDim>
305 const double t,
double const dt, std::vector<GlobalVector*>
const& x,
306 std::vector<GlobalVector*>
const& x_prev,
int const process_id,
310 bool const use_monolithic_scheme =
process_data_.isMonolithicSchemeUsed();
311 if (use_monolithic_scheme)
314 "Assemble the Jacobian of HydroMechanics for the monolithic "
323 "Assemble the Jacobian equations of liquid fluid process in "
324 "HydroMechanics for the staggered scheme.");
329 "Assemble the Jacobian equations of mechanical process in "
330 "HydroMechanics for the staggered scheme.");
335 t, dt, x, x_prev, process_id, b, Jac);
338template <
int DisplacementDim>
340 std::vector<GlobalVector*>
const& x,
double const t,
double const dt,
341 const int process_id)
343 DBUG(
"PreTimestep HydroMechanicsProcess.");
354template <
int DisplacementDim>
355std::vector<std::vector<std::string>>
357 std::vector<std::reference_wrapper<MeshLib::Mesh>>
const& meshes)
359 INFO(
"HydroMechanicsProcess initializeSubmeshOutput().");
360 std::vector<std::vector<std::string>> per_process_residuum_names;
363 per_process_residuum_names = {{
"MassFlowRate",
"NodalForces"}};
367 per_process_residuum_names = {{
"MassFlowRate"}, {
"NodalForces"}};
371 initializeAssemblyOnSubmeshes(meshes, per_process_residuum_names);
373 return per_process_residuum_names;
376template <
int DisplacementDim>
378 std::vector<GlobalVector*>
const& x,
379 std::vector<GlobalVector*>
const& x_prev,
double const t,
double const dt,
380 const int process_id)
387 DBUG(
"PostTimestep HydroMechanicsProcess.");
395template <
int DisplacementDim>
397 std::vector<GlobalVector*>
const& x,
398 std::vector<GlobalVector*>
const& x_prev,
const double t,
double const dt,
399 const int process_id)
401 DBUG(
"PostNonLinearSolver HydroMechanicsProcess.");
410template <
int DisplacementDim>
414 int const process_id)
417 if (process_id !=
process_data_.mechanics_related_process_id)
422 DBUG(
"Set initial conditions of HydroMechanicsProcess.");
429template <
int DisplacementDim>
431 double const t,
double const dt, std::vector<GlobalVector*>
const& x,
439 DBUG(
"Compute the secondary variables for HydroMechanicsProcess.");
447template <
int DisplacementDim>
448std::tuple<NumLib::LocalToGlobalIndexMap*, bool>
451 const bool manage_storage =
false;
456template <
int DisplacementDim>
MathLib::EigenMatrix GlobalMatrix
MathLib::EigenVector GlobalVector
void INFO(fmt::format_string< Args... > fmt, Args &&... args)
void DBUG(fmt::format_string< Args... > fmt, Args &&... args)
bool isAxiallySymmetric() const
std::vector< Element * > const & getElements() const
Get the element-vector for the mesh.
Properties & getProperties()
std::unique_ptr< MeshLib::MeshSubset const > mesh_subset_base_nodes_
void assembleConcreteProcess(const double t, double const, std::vector< GlobalVector * > const &x, std::vector< GlobalVector * > const &x_prev, int const process_id, GlobalMatrix &M, GlobalMatrix &K, GlobalVector &b) override
std::unique_ptr< NumLib::LocalToGlobalIndexMap > local_to_global_index_map_with_base_nodes_
std::vector< std::vector< std::string > > initializeAssemblyOnSubmeshes(std::vector< std::reference_wrapper< MeshLib::Mesh > > const &meshes) override
std::vector< MeshLib::Node * > base_nodes_
HydroMechanicsProcess(std::string name, MeshLib::Mesh &mesh, std::unique_ptr< ProcessLib::AbstractJacobianAssembler > &&jacobian_assembler, std::vector< std::unique_ptr< ParameterLib::ParameterBase > > const ¶meters, unsigned const integration_order, std::vector< std::vector< std::reference_wrapper< ProcessVariable > > > &&process_variables, HydroMechanicsProcessData< DisplacementDim > &&process_data, SecondaryVariableCollection &&secondary_variables, bool const use_monolithic_scheme)
void computeSecondaryVariableConcrete(double const t, double const dt, std::vector< GlobalVector * > const &x, GlobalVector const &x_prev, const int process_id) override
void preTimestepConcreteProcess(std::vector< GlobalVector * > const &x, double const t, double const dt, const int process_id) override
void initializeBoundaryConditions(std::map< int, std::shared_ptr< MaterialPropertyLib::Medium > > const &media) override
NumLib::LocalToGlobalIndexMap const & getDOFTable(const int process_id) const override
GlobalSparsityPattern sparsity_pattern_with_linear_element_
void assembleWithJacobianConcreteProcess(const double t, double const, std::vector< GlobalVector * > const &x, std::vector< GlobalVector * > const &x_prev, int const process_id, GlobalVector &b, GlobalMatrix &Jac) override
void constructDofTable() override
bool hasMechanicalProcess(int const process_id) const
bool isLinear() const override
std::unique_ptr< NumLib::LocalToGlobalIndexMap > local_to_global_index_map_single_component_
LocalAssemblerInterface< DisplacementDim > LocalAssemblerIF
void postNonLinearSolverConcreteProcess(std::vector< GlobalVector * > const &x, std::vector< GlobalVector * > const &x_prev, const double t, double const dt, int const process_id) override
void setInitialConditionsConcreteProcess(std::vector< GlobalVector * > &x, double const t, int const process_id) override
MathLib::MatrixSpecifications getMatrixSpecifications(const int process_id) const override
std::vector< std::unique_ptr< LocalAssemblerIF > > local_assemblers_
HydroMechanicsProcessData< DisplacementDim > process_data_
void initializeConcreteProcess(NumLib::LocalToGlobalIndexMap const &dof_table, MeshLib::Mesh const &mesh, unsigned const integration_order) override
Process specific initialization called by initialize().
std::tuple< NumLib::LocalToGlobalIndexMap *, bool > getDOFTableForExtrapolatorData() const override
void postTimestepConcreteProcess(std::vector< GlobalVector * > const &x, std::vector< GlobalVector * > const &x_prev, const double t, const double dt, int const process_id) override
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 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)
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 initialize(std::size_t const mesh_item_id, NumLib::LocalToGlobalIndexMap const &dof_table)
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)
std::vector< NumLib::LocalToGlobalIndexMap const * > getDOFTables(int const number_of_processes) const
std::vector< std::unique_ptr< MeshLib::IntegrationPointWriter > > _integration_point_writer
void initializeProcessBoundaryConditionsAndSourceTerms(const NumLib::LocalToGlobalIndexMap &dof_table, const int process_id, std::map< int, std::shared_ptr< MaterialPropertyLib::Medium > > const &media)
Process(std::string name_, MeshLib::Mesh &mesh, std::unique_ptr< AbstractJacobianAssembler > &&jacobian_assembler, std::vector< std::unique_ptr< ParameterLib::ParameterBase > > const ¶meters, unsigned const integration_order, std::vector< std::vector< std::reference_wrapper< ProcessVariable > > > &&process_variables, SecondaryVariableCollection &&secondary_variables, const bool use_monolithic_scheme=true)
std::unique_ptr< MeshLib::MeshSubset const > _mesh_subset_all_nodes
std::vector< std::vector< std::reference_wrapper< ProcessVariable > > > _process_variables
std::vector< std::size_t > const & getActiveElementIDs() const
SecondaryVariableCollection _secondary_variables
VectorMatrixAssembler _global_assembler
std::unique_ptr< NumLib::LocalToGlobalIndexMap > _local_to_global_index_map
std::unique_ptr< ProcessLib::AbstractJacobianAssembler > _jacobian_assembler
void assembleWithJacobian(const double t, double const dt, std::vector< GlobalVector * > const &x, std::vector< GlobalVector * > const &x_prev, int const process_id, GlobalVector &b, GlobalMatrix &Jac) final
std::vector< std::vector< std::reference_wrapper< ProcessVariable > > > const & getProcessVariables() const
NumLib::Extrapolator & getExtrapolator() const
GlobalSparsityPattern _sparsity_pattern
Handles configuration of several secondary variables from the project file.
void assemble(std::size_t const mesh_item_id, LocalAssemblerInterface &local_assembler, std::vector< NumLib::LocalToGlobalIndexMap const * > const &dof_tables, double const t, double const dt, std::vector< GlobalVector * > const &x, std::vector< GlobalVector * > const &x_prev, int const process_id, GlobalMatrix *M, GlobalMatrix *K, GlobalVector *b)
constexpr int kelvin_vector_dimensions(int const displacement_dim)
Kelvin vector dimensions for given displacement dimension.
Eigen::Matrix< double, kelvin_vector_dimensions(DisplacementDim), 1, Eigen::ColMajor > KelvinVectorType
PropertyVector< T > * getOrCreateMeshProperty(Mesh &mesh, std::string const &property_name, MeshItemType const item_type, int const number_of_components)
std::vector< Node * > getBaseNodes(std::vector< Element * > const &elements)
@ BY_LOCATION
Ordering data by spatial location.
GlobalSparsityPattern computeSparsityPattern(LocalToGlobalIndexMap const &dof_table, MeshLib::Mesh const &mesh)
Computes a sparsity pattern for the given inputs.
SecondaryVariableFunctions makeExtrapolator(const unsigned num_components, NumLib::Extrapolator &extrapolator, LocalAssemblerCollection const &local_assemblers, typename NumLib::ExtrapolatableLocalAssemblerCollection< LocalAssemblerCollection >::IntegrationPointValuesMethod integration_point_values_method)
void setIPDataInitialConditions(std::vector< std::unique_ptr< MeshLib::IntegrationPointWriter > > const &_integration_point_writer, MeshLib::Properties const &mesh_properties, LocalAssemblersVector &local_assemblers)
void createLocalAssemblersHM(std::vector< MeshLib::Element * > const &mesh_elements, NumLib::LocalToGlobalIndexMap const &dof_table, std::vector< std::unique_ptr< LocalAssemblerInterface > > &local_assemblers, ProviderOrOrder const &provider_or_order, ExtraCtorArgs &&... extra_ctor_args)
static void executeSelectedMemberOnDereferenced(Method method, Container const &container, std::vector< std::size_t > const &active_container_ids, Args &&... args)
static void executeSelectedMemberDereferenced(Object &object, Method method, Container const &container, std::vector< std::size_t > const &active_container_ids, Args &&... args)
static void executeMemberOnDereferenced(Method method, Container const &container, Args &&... args)
virtual std::vector< double > const & getIntPtSigma(const double t, std::vector< GlobalVector * > const &x, std::vector< NumLib::LocalToGlobalIndexMap const * > const &dof_table, std::vector< double > &cache) const =0
virtual std::vector< double > const & getIntPtDarcyVelocity(const double t, std::vector< GlobalVector * > const &x, std::vector< NumLib::LocalToGlobalIndexMap const * > const &dof_table, std::vector< double > &cache) const =0
virtual std::vector< double > const & getIntPtEpsilon(const double t, std::vector< GlobalVector * > const &x, std::vector< NumLib::LocalToGlobalIndexMap const * > const &dof_table, std::vector< double > &cache) const =0