OGS
CreateRichardsMechanicsProcess.cpp
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1// SPDX-FileCopyrightText: Copyright (c) OpenGeoSys Community (opengeosys.org)
2// SPDX-License-Identifier: BSD-3-Clause
3
5
6#include <cassert>
7
14#include "ParameterLib/Utils.h"
20
21namespace ProcessLib
22{
23namespace RichardsMechanics
24{
26 std::map<int, std::shared_ptr<MaterialPropertyLib::Medium>> const& media)
27{
28 std::array const required_medium_properties = {
35 std::array const required_liquid_properties = {
37 std::array const required_solid_properties = {MaterialPropertyLib::density};
38
39 for (auto const& m : media)
40 {
41 checkRequiredProperties(*m.second, required_medium_properties);
42 checkRequiredProperties(m.second->phase("AqueousLiquid"),
43 required_liquid_properties);
44 checkRequiredProperties(m.second->phase("Solid"),
45 required_solid_properties);
46 }
47}
48
49template <int DisplacementDim>
50std::unique_ptr<Process> createRichardsMechanicsProcess(
51 std::string const& name,
52 MeshLib::Mesh& mesh,
53 std::unique_ptr<ProcessLib::AbstractJacobianAssembler>&& jacobian_assembler,
54 std::vector<ProcessVariable> const& variables,
55 std::vector<std::unique_ptr<ParameterLib::ParameterBase>> const& parameters,
56 std::optional<ParameterLib::CoordinateSystem> const&
57 local_coordinate_system,
58 unsigned const integration_order,
59 BaseLib::ConfigTree const& config,
60 std::map<int, std::shared_ptr<MaterialPropertyLib::Medium>> const& media)
61{
63 config.checkConfigParameter("type", "RICHARDS_MECHANICS");
64 DBUG("Create RichardsMechanicsProcess.");
65
66 auto const coupling_scheme =
68 config.getConfigParameterOptional<std::string>("coupling_scheme");
69 const bool use_monolithic_scheme =
70 !(coupling_scheme && (*coupling_scheme == "staggered"));
71
73
75 auto const pv_config = config.getConfigSubtree("process_variables");
76
77 ProcessVariable* variable_p;
78 ProcessVariable* variable_u;
79 std::vector<std::vector<std::reference_wrapper<ProcessVariable>>>
80 process_variables;
81 if (use_monolithic_scheme) // monolithic scheme.
82 {
85 auto per_process_variables = findProcessVariables(
86 variables, pv_config,
87 {
88 "pressure",
90 "displacement"});
91 variable_p = &per_process_variables[0].get();
92 variable_u = &per_process_variables[1].get();
93 process_variables.push_back(std::move(per_process_variables));
94 }
95 else // staggered scheme.
96 {
97 using namespace std::string_literals;
98 for (auto const& variable_name : {"pressure"s, "displacement"s})
99 {
100 auto per_process_variables =
101 findProcessVariables(variables, pv_config, {variable_name});
102 process_variables.push_back(std::move(per_process_variables));
103 }
104 variable_p = &process_variables[0][0].get();
105 variable_u = &process_variables[1][0].get();
106 }
107
108 DBUG("Associate displacement with process variable '{:s}'.",
109 variable_u->getName());
110
111 if (variable_u->getNumberOfGlobalComponents() != DisplacementDim)
112 {
113 OGS_FATAL(
114 "Number of components of the process variable '{:s}' is different "
115 "from the displacement dimension: got {:d}, expected {:d}",
116 variable_u->getName(),
117 variable_u->getNumberOfGlobalComponents(),
118 DisplacementDim);
119 }
120
121 DBUG("Associate pressure with process variable '{:s}'.",
122 variable_p->getName());
123 if (variable_p->getNumberOfGlobalComponents() != 1)
124 {
125 OGS_FATAL(
126 "Pressure process variable '{:s}' is not a scalar variable but has "
127 "{:d} components.",
128 variable_p->getName(),
129 variable_p->getNumberOfGlobalComponents());
130 }
131
132 auto solid_constitutive_relations =
134 parameters, local_coordinate_system, materialIDs(mesh), config);
135
137 // Specific body force
138 Eigen::Matrix<double, DisplacementDim, 1> specific_body_force;
139 {
140 std::vector<double> const b =
142 config.getConfigParameter<std::vector<double>>(
143 "specific_body_force");
144 if (b.size() != DisplacementDim)
145 {
146 OGS_FATAL(
147 "The size of the specific body force vector does not match the "
148 "displacement dimension. Vector size is {:d}, displacement "
149 "dimension is {:d}",
150 b.size(), DisplacementDim);
151 }
152
153 std::copy_n(b.data(), b.size(), specific_body_force.data());
154 }
155
156 auto media_map =
158 DBUG("Check the media properties of RichardsMechanics process ...");
159 checkMPLProperties(media);
160 DBUG("Media properties verified.");
161
162 // Initial stress conditions
163 auto const initial_stress =
165 mesh);
166
167 std::optional<MicroPorosityParameters> micro_porosity_parameters;
168 if (auto const micro_porosity_config =
170 config.getConfigSubtreeOptional("micro_porosity"))
171 {
172 micro_porosity_parameters = MicroPorosityParameters{
175 micro_porosity_config->getConfigSubtree("nonlinear_solver")),
177 micro_porosity_config->getConfigParameter<double>(
178 "mass_exchange_coefficient")};
179 }
180
181 auto const mass_lumping =
183 config.getConfigParameter<bool>("mass_lumping", false);
184
185 auto const explicit_hm_coupling_in_unsaturated_zone =
187 config.getConfigParameter<bool>(
188 "explicit_hm_coupling_in_unsaturated_zone", false);
189
190 auto const is_linear =
192 config.getConfigParameter("linear", false);
193
194 bool const use_numerical_jacobian =
195 jacobian_assembler->isPerturbationEnabled();
196
198 materialIDs(mesh),
199 std::move(media_map),
200 std::move(solid_constitutive_relations),
201 initial_stress,
202 specific_body_force,
203 micro_porosity_parameters,
204 mass_lumping,
205 explicit_hm_coupling_in_unsaturated_zone,
206 use_numerical_jacobian};
207
208 SecondaryVariableCollection secondary_variables;
209
210 ProcessLib::createSecondaryVariables(config, secondary_variables);
211
212 return std::make_unique<RichardsMechanicsProcess<DisplacementDim>>(
213 std::move(name), mesh, std::move(jacobian_assembler), parameters,
214 integration_order, std::move(process_variables),
215 std::move(process_data), std::move(secondary_variables),
216 use_monolithic_scheme, is_linear);
217}
218
219template std::unique_ptr<Process> createRichardsMechanicsProcess<2>(
220 std::string const& name,
221 MeshLib::Mesh& mesh,
222 std::unique_ptr<ProcessLib::AbstractJacobianAssembler>&& jacobian_assembler,
223 std::vector<ProcessVariable> const& variables,
224 std::vector<std::unique_ptr<ParameterLib::ParameterBase>> const& parameters,
225 std::optional<ParameterLib::CoordinateSystem> const&
226 local_coordinate_system,
227 unsigned const integration_order,
228 BaseLib::ConfigTree const& config,
229 std::map<int, std::shared_ptr<MaterialPropertyLib::Medium>> const& media);
230
231template std::unique_ptr<Process> createRichardsMechanicsProcess<3>(
232 std::string const& name,
233 MeshLib::Mesh& mesh,
234 std::unique_ptr<ProcessLib::AbstractJacobianAssembler>&& jacobian_assembler,
235 std::vector<ProcessVariable> const& variables,
236 std::vector<std::unique_ptr<ParameterLib::ParameterBase>> const& parameters,
237 std::optional<ParameterLib::CoordinateSystem> const&
238 local_coordinate_system,
239 unsigned const integration_order,
240 BaseLib::ConfigTree const& config,
241 std::map<int, std::shared_ptr<MaterialPropertyLib::Medium>> const& media);
242
243} // namespace RichardsMechanics
244} // namespace ProcessLib
#define OGS_FATAL(...)
Definition Error.h:19
void DBUG(fmt::format_string< Args... > fmt, Args &&... args)
Definition Logging.h:22
std::optional< ConfigTree > getConfigSubtreeOptional(std::string const &root) const
std::optional< T > getConfigParameterOptional(std::string const &param) const
T getConfigParameter(std::string const &param) const
ConfigTree getConfigSubtree(std::string const &root) const
void checkConfigParameter(std::string const &param, std::string_view const value) const
std::string const & getName() const
int getNumberOfGlobalComponents() const
Returns the number of components of the process variable.
Handles configuration of several secondary variables from the project file.
std::map< int, std::shared_ptr< MaterialLib::Solids::MechanicsBase< DisplacementDim > > > createConstitutiveRelations(std::vector< std::unique_ptr< ParameterLib::ParameterBase > > const &parameters, std::optional< ParameterLib::CoordinateSystem > const &local_coordinate_system, MeshLib::PropertyVector< int > const *const material_ids, BaseLib::ConfigTree const &config)
MaterialSpatialDistributionMap createMaterialSpatialDistributionMap(std::map< int, std::shared_ptr< Medium > > const &media, MeshLib::Mesh const &mesh)
NewtonRaphsonSolverParameters createNewtonRaphsonSolverParameters(BaseLib::ConfigTree const &config)
void checkMPLProperties(std::map< int, std::shared_ptr< MaterialPropertyLib::Medium > > const &media)
template std::unique_ptr< Process > createRichardsMechanicsProcess< 3 >(std::string const &name, MeshLib::Mesh &mesh, std::unique_ptr< ProcessLib::AbstractJacobianAssembler > &&jacobian_assembler, std::vector< ProcessVariable > const &variables, std::vector< std::unique_ptr< ParameterLib::ParameterBase > > const &parameters, std::optional< ParameterLib::CoordinateSystem > const &local_coordinate_system, unsigned const integration_order, BaseLib::ConfigTree const &config, std::map< int, std::shared_ptr< MaterialPropertyLib::Medium > > const &media)
std::unique_ptr< Process > createRichardsMechanicsProcess(std::string const &name, MeshLib::Mesh &mesh, std::unique_ptr< ProcessLib::AbstractJacobianAssembler > &&jacobian_assembler, std::vector< ProcessVariable > const &variables, std::vector< std::unique_ptr< ParameterLib::ParameterBase > > const &parameters, std::optional< ParameterLib::CoordinateSystem > const &local_coordinate_system, unsigned const integration_order, BaseLib::ConfigTree const &config, std::map< int, std::shared_ptr< MaterialPropertyLib::Medium > > const &media)
template std::unique_ptr< Process > createRichardsMechanicsProcess< 2 >(std::string const &name, MeshLib::Mesh &mesh, std::unique_ptr< ProcessLib::AbstractJacobianAssembler > &&jacobian_assembler, std::vector< ProcessVariable > const &variables, std::vector< std::unique_ptr< ParameterLib::ParameterBase > > const &parameters, std::optional< ParameterLib::CoordinateSystem > const &local_coordinate_system, unsigned const integration_order, BaseLib::ConfigTree const &config, std::map< int, std::shared_ptr< MaterialPropertyLib::Medium > > const &media)
std::vector< std::reference_wrapper< ProcessVariable > > findProcessVariables(std::vector< ProcessVariable > const &variables, BaseLib::ConfigTree const &pv_config, std::initializer_list< std::string > tags)
InitialStress createInitialStress(BaseLib::ConfigTree const &config, std::vector< std::unique_ptr< ParameterLib::ParameterBase > > const &parameters, MeshLib::Mesh const &mesh, bool const mandatory_stress_type)
void createSecondaryVariables(BaseLib::ConfigTree const &config, SecondaryVariableCollection &secondary_variables)