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GenericTemperatureModel_impl.hpp
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1// -*- mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*-
2// vi: set et ts=4 sw=4 sts=4:
3/*
4 This file is part of the Open Porous Media project (OPM).
5
6 OPM is free software: you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation, either version 2 of the License, or
9 (at your option) any later version.
10
11 OPM is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with OPM. If not, see <http://www.gnu.org/licenses/>.
18
19 Consult the COPYING file in the top-level source directory of this
20 module for the precise wording of the license and the list of
21 copyright holders.
22*/
28#ifndef OPM_GENERIC_TEMPERATURE_MODEL_IMPL_HPP
29#define OPM_GENERIC_TEMPERATURE_MODEL_IMPL_HPP
30
31// Improve IDE experience
32#ifndef OPM_GENERIC_TEMPERATURE_MODEL_HPP
33#include <config.h>
35#endif
36
37#include <dune/istl/operators.hh>
38#include <dune/istl/solvers.hh>
39#include <dune/istl/schwarz.hh>
40#include <dune/istl/preconditioners.hh>
41#include <dune/istl/schwarz.hh>
42
43#include <opm/common/OpmLog/OpmLog.hpp>
44
45#include <opm/grid/CpGrid.hpp>
46
47#include <opm/input/eclipse/EclipseState/EclipseState.hpp>
48#include <opm/input/eclipse/Schedule/Well/Well.hpp>
49
51
52#include <opm/simulators/linalg/ilufirstelement.hh>
53#include <opm/simulators/linalg/PropertyTree.hpp>
54#include <opm/simulators/linalg/FlexibleSolver.hpp>
55
56#include <memory>
57#include <set>
58#include <stdexcept>
59#include <string>
60
61#include <fmt/format.h>
62
63namespace Opm {
64
65#if HAVE_MPI
66template<class M, class V>
67struct EnergySolverSelector
68{
69 using Comm = Dune::OwnerOverlapCopyCommunication<int, int>;
70 using EnergyOperator = Dune::OverlappingSchwarzOperator<M, V, V, Comm>;
71 using type = Dune::FlexibleSolver<EnergyOperator>;
72};
73
74template<class Vector, class Grid, class Matrix>
75std::tuple<std::unique_ptr<Dune::OverlappingSchwarzOperator<Matrix,Vector,Vector,
76 Dune::OwnerOverlapCopyCommunication<int,int>>>,
77 std::unique_ptr<typename EnergySolverSelector<Matrix,Vector>::type>>
78createParallelFlexibleSolver(const Grid&, const Matrix&, const PropertyTree&)
79{
80 OPM_THROW(std::logic_error, "Grid not supported for parallel Temperatures.");
81 return {nullptr, nullptr};
82}
83
84template<class Vector, class Matrix>
85std::tuple<std::unique_ptr<Dune::OverlappingSchwarzOperator<Matrix,Vector,Vector,
86 Dune::OwnerOverlapCopyCommunication<int,int>>>,
87 std::unique_ptr<typename EnergySolverSelector<Matrix,Vector>::type>>
88createParallelFlexibleSolver(const Dune::CpGrid& grid, const Matrix& M, const PropertyTree& prm)
89{
90 using EnergyOperator = Dune::OverlappingSchwarzOperator<Matrix,Vector,Vector,
91 Dune::OwnerOverlapCopyCommunication<int,int>>;
92 using EnergySolver = Dune::FlexibleSolver<EnergyOperator>;
93 const auto& cellComm = grid.cellCommunication();
94 auto op = std::make_unique<EnergyOperator>(M, cellComm);
95 auto dummyWeights = [](){ return Vector();};
96 return {std::move(op), std::make_unique<EnergySolver>(*op, cellComm, prm, dummyWeights, 0)};
97}
98#endif
99
100template<class Grid, class GridView, class DofMapper, class Stencil, class FluidSystem, class Scalar>
102GenericTemperatureModel(const GridView& gridView,
103 const EclipseState& eclState,
104 const CartesianIndexMapper& cartMapper,
105 const DofMapper& dofMapper)
106 : gridView_(gridView)
107 , eclState_(eclState)
108 , cartMapper_(cartMapper)
109 , dofMapper_(dofMapper)
110{
111}
112
113template<class Grid, class GridView, class DofMapper, class Stencil, class FluidSystem, class Scalar>
114void GenericTemperatureModel<Grid,GridView,DofMapper,Stencil,FluidSystem,Scalar>::
115doInit(std::size_t numGridDof)
116{
117 doTemp_ = eclState_.getSimulationConfig().isTemp();
118 temperature_.resize(numGridDof);
119
120 if (!doTemp_)
121 return;
122
123 energyVector_.resize(numGridDof);
125}
126
127template<class Grid, class GridView, class DofMapper, class Stencil, class FluidSystem, class Scalar>
129setupLinearSolver(const EnergyMatrix& matrix)
130{
131 Scalar tolerance = 1e-2;
132 int maxIter = 100;
133 int verbosity = 0;
134 PropertyTree prm;
135 prm.put("maxiter", maxIter);
136 prm.put("tol", tolerance);
137 prm.put("verbosity", verbosity);
138 prm.put("solver", std::string("bicgstab"));
139 prm.put("preconditioner.type", std::string("ParOverILU0"));
140
141#if HAVE_MPI
142 if (gridView_.grid().comm().size() > 1)
143 {
144 auto [energyOperator, solver] =
145 createParallelFlexibleSolver<EnergyVector>(gridView_.grid(), matrix, prm);
146 op_ = std::move(energyOperator);
147 pre_ = &solver->preconditioner();
148 linear_solver_ = std::move(solver);
149 }
150 else
151#endif
152 {
153 using SeqOperator = Dune::MatrixAdapter<EnergyMatrix, EnergyVector, EnergyVector>;
154 using SeqSolver = Dune::FlexibleSolver<SeqOperator>;
155 auto seqOp = std::make_unique<SeqOperator>(matrix);
156 auto dummyWeights = [](){ return EnergyVector(); };
157 auto seqSolver = std::make_unique<SeqSolver>(*seqOp, prm, dummyWeights, 0);
158 op_ = std::move(seqOp);
159 pre_ = &seqSolver->preconditioner();
160 linear_solver_ = std::move(seqSolver);
161 }
162}
163
164template<class Grid, class GridView, class DofMapper, class Stencil, class FluidSystem, class Scalar>
165bool GenericTemperatureModel<Grid,GridView,DofMapper,Stencil,FluidSystem,Scalar>::
166linearSolve_(const EnergyMatrix& M, EnergyVector& x, EnergyVector& b)
167{
168 if (!linear_solver_) {
169 setupLinearSolver(M);
170 } else {
171 pre_->update();
172 }
173
174 Dune::InverseOperatorResult result;
175 linear_solver_->apply(x, b, result);
176 return result.converged;
177}
178
179} // namespace Opm
180
181#endif // OPM_GENERIC_TEMPERATURE_MODEL_IMPL_HPP
A class which handles sequential implicit solution of the energy equation as specified in by TEMP.
A solver class that encapsulates all needed objects for a linear solver (operator,...
Definition FlexibleSolver.hpp:45
Definition GenericTemperatureModel.hpp:53
Hierarchical collection of key/value pairs.
Definition PropertyTree.hpp:39
void put(const std::string &key, const T &data)
Insert key/value pair into property tree.
Definition PropertyTree.cpp:71
Represents the stencil (finite volume geometry) of a single element in the ECFV discretization.
This file contains a set of helper functions used by VFPProd / VFPInj.
Definition blackoilbioeffectsmodules.hh:45
auto Get(bool errorIfNotRegistered=true)
Retrieve a runtime parameter.
Definition parametersystem.hpp:187