3.1-git
DUNE for Multi-{Phase, Component, Scale, Physics, ...} flow and transport in porous media
linearprofile/problem_lowdim.hh
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24#ifndef DUMUX_TEST_TPFAFACETCOUPLING_ONEP_LOWDIMPROBLEM_HH
25#define DUMUX_TEST_TPFAFACETCOUPLING_ONEP_LOWDIMPROBLEM_HH
26
27#include <dune/foamgrid/foamgrid.hh>
28
31
34
37
38#include "spatialparams.hh"
39
40// default for the grid type
41#ifndef LOWDIMGRIDTYPE
42#define LOWDIMGRIDTYPE Dune::FoamGrid<1, 2>
43#endif
44
45namespace Dumux {
46// forward declarations
47template<class TypeTag> class OnePLowDimProblem;
48
49namespace Properties {
50
51// create the type tag nodes
52namespace TTag {
53struct OnePLowDim { using InheritsFrom = std::tuple<OneP>; };
54struct OnePLowDimTpfa { using InheritsFrom = std::tuple<OnePLowDim, CCTpfaModel>; };
55
56// for the test using mpfa in the bulk domain we need an additional type tag
57struct OnePLowDimMpfa { using InheritsFrom = std::tuple<OnePLowDim, CCTpfaModel>; };
58} // end namespace TTag
59
60// Set the grid type
61template<class TypeTag>
62struct Grid<TypeTag, TTag::OnePLowDim> { using type = LOWDIMGRIDTYPE; };
63// Set the problem type
64template<class TypeTag>
65struct Problem<TypeTag, TTag::OnePLowDim> { using type = OnePLowDimProblem<TypeTag>; };
66// set the spatial params
67template<class TypeTag>
68struct SpatialParams<TypeTag, TTag::OnePLowDim>
69{
72};
73
74// the fluid system
75template<class TypeTag>
76struct FluidSystem<TypeTag, TTag::OnePLowDim>
77{
78private:
80public:
82};
83} // end namespace Properties
84
90template<class TypeTag>
91class OnePLowDimProblem : public PorousMediumFlowProblem<TypeTag>
92{
93 using ParentType = PorousMediumFlowProblem<TypeTag>;
94
96 using ElementVolumeVariables = typename GridVariables::GridVolumeVariables::LocalView;
97 using PrimaryVariables = typename GridVariables::PrimaryVariables;
98 using Scalar = typename GridVariables::Scalar;
99
100 using GridGeometry = typename GridVariables::GridGeometry;
101 using FVElementGeometry = typename GridGeometry::LocalView;
102 using SubControlVolume = typename GridGeometry::SubControlVolume;
103 using GridView = typename GridGeometry::GridView;
104 using Element = typename GridView::template Codim<0>::Entity;
105 using GlobalPosition = typename Element::Geometry::GlobalCoordinate;
106
110
111public:
112 OnePLowDimProblem(std::shared_ptr<const GridGeometry> gridGeometry,
113 std::shared_ptr<typename ParentType::SpatialParams> spatialParams,
114 std::shared_ptr<CouplingManager> couplingManager,
115 const std::string& paramGroup = "")
117 , couplingManagerPtr_(couplingManager)
118 , aperture_(getParam<Scalar>("Problem.FractureAperture"))
119 {
120 problemName_ = getParam<std::string>("Vtk.OutputName") + "_" +
121 getParamFromGroup<std::string>(this->paramGroup(), "Problem.Name");
122 }
123
125 const std::string& name() const
126 { return problemName_; }
127
129 BoundaryTypes boundaryTypesAtPos(const GlobalPosition& globalPos) const
130 {
131 BoundaryTypes values;
132 values.setAllNeumann();
133 return values;
134 }
135
137 NumEqVector source(const Element& element,
138 const FVElementGeometry& fvGeometry,
139 const ElementVolumeVariables& elemVolVars,
140 const SubControlVolume& scv) const
141 {
142 // evaluate sources from bulk domain
143 auto source = couplingManagerPtr_->evalSourcesFromBulk(element, fvGeometry, elemVolVars, scv);
144 source /= scv.volume()*elemVolVars[scv].extrusionFactor();
145 return source;
146 }
147
149 PrimaryVariables dirichletAtPos(const GlobalPosition& globalPos) const
150 { return initialAtPos(globalPos); }
151
153 Scalar extrusionFactorAtPos(const GlobalPosition& globalPos) const
154 { return aperture_; }
155
157 PrimaryVariables initialAtPos(const GlobalPosition& globalPos) const
158 { return PrimaryVariables(1.0); }
159
161 Scalar temperature() const
162 { return 283.15; /*10°*/ }
163
165 const CouplingManager& couplingManager() const
166 { return *couplingManagerPtr_; }
167
168private:
169 std::shared_ptr<CouplingManager> couplingManagerPtr_;
170 Scalar aperture_;
171 std::string problemName_;
172};
173
174} // end namespace Dumux
175
176#endif
Defines a type tag and some properties for models using the box scheme.
Properties for all models using cell-centered finite volume scheme with TPFA.
Setting constant fluid properties via the input file.
A liquid phase consisting of a single component.
T getParam(Args &&... args)
A free function to get a parameter from the parameter tree singleton.
Definition: parameters.hh:428
make the local view function available whenever we use the grid geometry
Definition: adapt.hh:29
typename Properties::Detail::GetPropImpl< TypeTag, Property >::type::type GetPropType
get the type alias defined in the property (equivalent to old macro GET_PROP_TYPE(....
Definition: propertysystem.hh:149
Class to specify the type of a boundary.
Definition: common/boundarytypes.hh:38
Base class for all finite-volume problems.
Definition: common/fvproblem.hh:50
const std::string & paramGroup() const
The parameter group in which to retrieve runtime parameters.
Definition: common/fvproblem.hh:592
const GridGeometry & gridGeometry() const
The finite volume grid geometry.
Definition: common/fvproblem.hh:588
Property to specify the type of scalar values.
Definition: common/properties.hh:53
The DUNE grid type.
Definition: common/properties.hh:57
Property to specify the type of a problem which has to be solved.
Definition: common/properties.hh:69
The type of the spatial parameters object.
Definition: common/properties.hh:221
The type of the fluid system to use.
Definition: common/properties.hh:223
A liquid phase consisting of a single component.
Definition: 1pliquid.hh:46
Definition: multidomain/couplingmanager.hh:46
Base class for all fully implicit porous media problems.
Definition: dumux/porousmediumflow/problem.hh:39
SpatialParams & spatialParams()
Returns the spatial parameters object.
Definition: dumux/porousmediumflow/problem.hh:146
The spatial parameters class for the test problem using the 1p cc model.
Definition: multidomain/boundary/stokesdarcy/1p2c_1p2c/spatialparams.hh:41
The lower-dimensional test problem for the incompressible one-phase model with coupling across the bu...
Definition: problem_1p_lowdim.hh:88
const CouplingManager & couplingManager() const
Returns reference to the coupling manager.
Definition: analytical/problem_lowdim.hh:174
PrimaryVariables dirichletAtPos(const GlobalPosition &globalPos) const
Evaluates the Dirichlet boundary condition for a given position.
Definition: linearprofile/problem_lowdim.hh:149
const std::string & name() const
The problem name.
Definition: linearprofile/problem_lowdim.hh:125
BoundaryTypes boundaryTypesAtPos(const GlobalPosition &globalPos) const
Specifies the type of boundary condition at a given position.
Definition: linearprofile/problem_lowdim.hh:129
NumEqVector source(const Element &element, const FVElementGeometry &fvGeometry, const ElementVolumeVariables &elemVolVars, const SubControlVolume &scv) const
Evaluates the source term at a given position.
Definition: linearprofile/problem_lowdim.hh:137
Scalar temperature() const
Returns the temperature in in the domain.
Definition: linearprofile/problem_lowdim.hh:161
OnePLowDimProblem(std::shared_ptr< const GridGeometry > gridGeometry, std::shared_ptr< typename ParentType::SpatialParams > spatialParams, std::shared_ptr< CouplingManager > couplingManager, const std::string &paramGroup="")
Definition: linearprofile/problem_lowdim.hh:112
PrimaryVariables initialAtPos(const GlobalPosition &globalPos) const
Evaluates the initial conditions.
Definition: analytical/problem_lowdim.hh:166
Scalar extrusionFactorAtPos(const GlobalPosition &globalPos) const
Sets the aperture as extrusion factor.
Definition: linearprofile/problem_lowdim.hh:153
Definition: analytical/problem_lowdim.hh:49
std::tuple< OneP > InheritsFrom
Definition: analytical/problem_lowdim.hh:49
Definition: analytical/problem_lowdim.hh:50
std::tuple< OnePLowDim, CCTpfaModel > InheritsFrom
Definition: analytical/problem_lowdim.hh:50
Dune::FoamGrid< 1, 2 > type
Definition: analytical/problem_lowdim.hh:56
Definition: gravity/problem_lowdim.hh:57
std::tuple< OnePLowDim, CCTpfaModel > InheritsFrom
Definition: gravity/problem_lowdim.hh:57
A single-phase, isothermal flow model using the fully implicit scheme.
Base class for all porous media problems.
Definition of the spatial parameters for the MaxwellStefan problem.
#define LOWDIMGRIDTYPE
Definition: linearprofile/problem_lowdim.hh:42