mirror of
https://github.com/OPM/opm-simulators.git
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220 lines
7.8 KiB
C++
220 lines
7.8 KiB
C++
// -*- mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*-
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// vi: set et ts=4 sw=4 sts=4:
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/*
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This file is part of the Open Porous Media project (OPM).
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OPM is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 2 of the License, or
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(at your option) any later version.
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OPM is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with OPM. If not, see <http://www.gnu.org/licenses/>.
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Consult the COPYING file in the top-level source directory of this
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module for the precise wording of the license and the list of
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copyright holders.
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*/
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/*!
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* \file
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*
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* \copydoc Opm::VtkDiffusionModule
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*/
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#ifndef EWOMS_VTK_DIFFUSION_MODULE_HH
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#define EWOMS_VTK_DIFFUSION_MODULE_HH
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#include "vtkmultiwriter.hh"
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#include "baseoutputmodule.hh"
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#include <opm/material/densead/Evaluation.hpp>
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#include <opm/material/densead/Math.hpp>
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#include <opm/models/discretization/common/fvbaseparameters.hh>
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#include <opm/models/utils/propertysystem.hh>
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#include <opm/models/utils/parametersystem.hh>
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namespace Opm::Properties::TTag {
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// create new type tag for the VTK output of the quantities for molecular
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// diffusion
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struct VtkDiffusion {};
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} // namespace Opm::Properties::TTag
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namespace Opm::Parameters {
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// create the property tags needed for the diffusion module
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template<class TypeTag, class MyTypeTag>
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struct VtkWriteTortuosities { using type = Properties::UndefinedProperty; };
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template<class TypeTag, class MyTypeTag>
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struct VtkWriteDiffusionCoefficients { using type = Properties::UndefinedProperty; };
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template<class TypeTag, class MyTypeTag>
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struct VtkWriteEffectiveDiffusionCoefficients { using type = Properties::UndefinedProperty; };
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// set default values for what quantities to output
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template<class TypeTag>
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struct VtkWriteTortuosities<TypeTag, Properties::TTag::VtkDiffusion>
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{ static constexpr bool value = false; };
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template<class TypeTag>
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struct VtkWriteDiffusionCoefficients<TypeTag, Properties::TTag::VtkDiffusion>
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{ static constexpr bool value = false; };
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template<class TypeTag>
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struct VtkWriteEffectiveDiffusionCoefficients<TypeTag, Properties::TTag::VtkDiffusion>
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{ static constexpr bool value = false; };
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} // namespace Opm::Parameters
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namespace Opm {
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/*!
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* \ingroup Vtk
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*
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* \brief VTK output module for quantities which make sense for models which
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* incorperate molecular diffusion.
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*
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* This module deals with the following quantities:
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* - Molecular diffusion coefficients of all components in all fluid phases
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* - Effective molecular diffusion coefficients of the porous medium of all
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* components in all fluid phases
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*/
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template <class TypeTag>
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class VtkDiffusionModule : public BaseOutputModule<TypeTag>
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{
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using ParentType = BaseOutputModule<TypeTag>;
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using Simulator = GetPropType<TypeTag, Properties::Simulator>;
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using ElementContext = GetPropType<TypeTag, Properties::ElementContext>;
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using GridView = GetPropType<TypeTag, Properties::GridView>;
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using Evaluation = GetPropType<TypeTag, Properties::Evaluation>;
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using Toolbox = MathToolbox<Evaluation>;
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using PhaseComponentBuffer = typename ParentType::PhaseComponentBuffer;
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using PhaseBuffer = typename ParentType::PhaseBuffer;
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static const int vtkFormat = getPropValue<TypeTag, Properties::VtkOutputFormat>();
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using VtkMultiWriter = ::Opm::VtkMultiWriter<GridView, vtkFormat>;
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enum { numPhases = getPropValue<TypeTag, Properties::NumPhases>() };
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enum { numComponents = getPropValue<TypeTag, Properties::NumComponents>() };
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public:
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VtkDiffusionModule(const Simulator& simulator)
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: ParentType(simulator)
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{ }
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/*!
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* \brief Register all run-time parameters for the Vtk output module.
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*/
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static void registerParameters()
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{
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Parameters::registerParam<TypeTag, Parameters::VtkWriteTortuosities>
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("Include the tortuosity for each phase in the VTK output files");
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Parameters::registerParam<TypeTag, Parameters::VtkWriteDiffusionCoefficients>
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("Include the molecular diffusion coefficients in "
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"the VTK output files");
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Parameters::registerParam<TypeTag, Parameters::VtkWriteEffectiveDiffusionCoefficients>
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("Include the effective molecular diffusion "
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"coefficients the medium in the VTK output files");
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}
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/*!
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* \brief Allocate memory for the scalar fields we would like to
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* write to the VTK file.
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*/
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void allocBuffers()
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{
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if (tortuosityOutput_())
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this->resizePhaseBuffer_(tortuosity_);
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if (diffusionCoefficientOutput_())
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this->resizePhaseComponentBuffer_(diffusionCoefficient_);
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if (effectiveDiffusionCoefficientOutput_())
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this->resizePhaseComponentBuffer_(effectiveDiffusionCoefficient_);
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}
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/*!
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* \brief Modify the internal buffers according to the intensive quanties relevant
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* for an element
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*/
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void processElement(const ElementContext& elemCtx)
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{
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if (!Parameters::get<TypeTag, Parameters::EnableVtkOutput>())
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return;
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for (unsigned i = 0; i < elemCtx.numPrimaryDof(/*timeIdx=*/0); ++i) {
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unsigned I = elemCtx.globalSpaceIndex(i, /*timeIdx=*/0);
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const auto& intQuants = elemCtx.intensiveQuantities(i, /*timeIdx=*/0);
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for (unsigned phaseIdx = 0; phaseIdx < numPhases; ++phaseIdx) {
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if (tortuosityOutput_())
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tortuosity_[phaseIdx][I] = Toolbox::value(intQuants.tortuosity(phaseIdx));
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for (unsigned compIdx = 0; compIdx < numComponents; ++compIdx) {
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if (diffusionCoefficientOutput_())
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diffusionCoefficient_[phaseIdx][compIdx][I] =
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Toolbox::value(intQuants.diffusionCoefficient(phaseIdx, compIdx));
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if (effectiveDiffusionCoefficientOutput_())
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effectiveDiffusionCoefficient_[phaseIdx][compIdx][I] =
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Toolbox::value(intQuants.effectiveDiffusionCoefficient(phaseIdx, compIdx));
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}
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}
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}
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}
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/*!
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* \brief Add all buffers to the VTK output writer.
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*/
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void commitBuffers(BaseOutputWriter& baseWriter)
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{
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VtkMultiWriter *vtkWriter = dynamic_cast<VtkMultiWriter*>(&baseWriter);
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if (!vtkWriter) {
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return;
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}
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if (tortuosityOutput_())
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this->commitPhaseBuffer_(baseWriter, "tortuosity", tortuosity_);
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if (diffusionCoefficientOutput_())
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this->commitPhaseComponentBuffer_(baseWriter, "diffusionCoefficient",
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diffusionCoefficient_);
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if (effectiveDiffusionCoefficientOutput_())
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this->commitPhaseComponentBuffer_(baseWriter,
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"effectiveDiffusionCoefficient",
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effectiveDiffusionCoefficient_);
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}
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private:
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static bool tortuosityOutput_()
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{
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static bool val = Parameters::get<TypeTag, Parameters::VtkWriteTortuosities>();
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return val;
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}
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static bool diffusionCoefficientOutput_()
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{
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static bool val = Parameters::get<TypeTag, Parameters::VtkWriteDiffusionCoefficients>();
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return val;
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}
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static bool effectiveDiffusionCoefficientOutput_()
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{
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static bool val = Parameters::get<TypeTag, Parameters::VtkWriteEffectiveDiffusionCoefficients>();
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return val;
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}
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PhaseBuffer tortuosity_;
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PhaseComponentBuffer diffusionCoefficient_;
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PhaseComponentBuffer effectiveDiffusionCoefficient_;
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};
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} // namespace Opm
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#endif
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