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106 lines
4.6 KiB
C++
106 lines
4.6 KiB
C++
// $Id$
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/*****************************************************************************
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* Copyright (C) 2008-2009 by Melanie Darcis *
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* Institute of Hydraulic Engineering *
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* University of Stuttgart, Germany *
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* email: <givenname>.<name>@iws.uni-stuttgart.de *
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* *
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* This program 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, as long as this copyright notice *
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* is included in its original form. *
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* *
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* This program is distributed WITHOUT ANY WARRANTY. *
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*****************************************************************************/
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#ifndef TUTORIALSPATIALPARAMETERS_COUPLED_HH
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#define TUTORIALSPATIALPARAMETERS_COUPLED_HH
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// include parent spatialparameters
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#include <dumux/material/spatialparameters/boxspatialparameters.hh>
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// include material laws
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#include <dumux/material/fluidmatrixinteractions/2p/linearmaterial.hh> /*@\label{tutorial-coupled:rawLawInclude}@*/
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#include <dumux/material/fluidmatrixinteractions/2p/efftoabslaw.hh>
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namespace Dumux
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{
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template<class TypeTag>
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class TutorialSpatialParametersCoupled: public BoxSpatialParameters<TypeTag> /*@\label{tutorial-coupled:tutorialSpatialParameters}@*/
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{
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// Get informations for current implementation via property system
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typedef typename GET_PROP_TYPE(TypeTag, PTAG(Grid)) Grid;
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typedef typename GET_PROP_TYPE(TypeTag, PTAG(GridView)) GridView;
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typedef typename GET_PROP_TYPE(TypeTag, PTAG(Scalar)) Scalar;
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enum
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{
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dim = Grid::dimension,
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dimWorld = Grid::dimensionworld,
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};
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// Get object types for function arguments
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typedef typename GET_PROP_TYPE(TypeTag, PTAG(FVElementGeometry)) FVElementGeometry;
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typedef typename Grid::Traits::template Codim<0>::Entity Element;
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// select material law to be used
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typedef LinearMaterial<Scalar> RawMaterialLaw; /*@\label{tutorial-coupled:rawlaw}@*/
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public:
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// adapter for absolute law
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typedef EffToAbsLaw<RawMaterialLaw> MaterialLaw; /*@\label{tutorial-coupled:eff2abs}@*/
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// determine appropriate parameters depening on selected materialLaw
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typedef typename MaterialLaw::Params MaterialLawParams; /*@\label{tutorial-coupled:matLawObjectType}@*/
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// method returning the intrinsic permeability tensor K depending
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// on the position within the domain
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const Dune::FieldMatrix<Scalar, dim, dim> &intrinsicPermeability(const Element &element, /*@\label{tutorial-coupled:permeability}@*/
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const FVElementGeometry &fvElemGeom,
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int scvIdx) const
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{
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return K_;
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}
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// method returning the porosity of the porous matrix depending on
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// the position within the domain
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double porosity(const Element &element, /*@\label{tutorial-coupled:porosity}@*/
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const FVElementGeometry &fvElemGeom,
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int scvIdx) const
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{
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return 0.2;
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}
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// return the materialLaw context (i.e. BC, regularizedVG, etc) depending on the position
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const MaterialLawParams& materialLawParams(const Element &element, /*@\label{tutorial-coupled:matLawParams}@*/
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const FVElementGeometry &fvElemGeom,
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int scvIdx) const
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{
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return materialParams_;
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}
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// constructor
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TutorialSpatialParametersCoupled(const GridView& gridView) :
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BoxSpatialParameters<TypeTag>(gridView), K_(0)
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{
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for (int i = 0; i < dim; i++)
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K_[i][i] = 1e-7;
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//set residual saturations
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materialParams_.setSwr(0.0); /*@\label{tutorial-coupled:setLawParams}@*/
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materialParams_.setSnr(0.0);
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//linear material law
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materialParams_.setEntryPC(0.0);
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materialParams_.setMaxPC(0.0);
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}
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private:
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Dune::FieldMatrix<Scalar, dim, dim> K_;
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// Object that helds the values/parameters of the selected material law.
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MaterialLawParams materialParams_; /*@\label{tutorial-coupled:matParamsObject}@*/
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};
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} // end namespace
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#endif
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