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DUNE for Multi-{Phase, Component, Scale, Physics, ...} flow and transport in porous media
porousmediumflow/2p1c/model.hh
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50#ifndef DUMUX_2P1C_MODEL_HH
51#define DUMUX_2P1C_MODEL_HH
52
53#include <dune/common/fvector.hh>
54
56
59
66
67#include "darcyslaw.hh"
68#include "iofields.hh"
69#include "localresidual.hh"
70#include "indices.hh"
71#include "volumevariables.hh"
72
73namespace Dumux {
74
80template<TwoPFormulation f>
82{
84
86 static constexpr int numEq() { return 2; }
88 static constexpr int numEnergyEq() { return 1; }
89 static constexpr int numFluidPhases() { return 2; }
90 static constexpr int numFluidComponents() { return 1; }
91
92 static constexpr bool enableAdvection() { return true; }
93 static constexpr bool enableMolecularDiffusion() { return false; }
94 static constexpr bool enableEnergyBalance() { return true; }
95
96 static constexpr TwoPFormulation priVarFormulation() { return f; }
97};
98
109template<class PV, class FSY, class FST, class SSY, class SST, class PT, class MT>
111{
113 using FluidSystem = FSY;
114 using FluidState = FST;
115 using SolidSystem = SSY;
118 using ModelTraits = MT;
119};
120
121namespace Properties {
123// Create new type tags
124namespace TTag {
125struct TwoPOneCNI { using InheritsFrom = std::tuple<PorousMediumFlow>; };
126} // end namespace TTag
127
129// Properties
131
138template<class TypeTag>
139struct FluidState<TypeTag, TTag::TwoPOneCNI>
140{
141private:
144public:
146};
147
149template<class TypeTag>
150struct Formulation<TypeTag, TTag::TwoPOneCNI>
151{ static constexpr TwoPFormulation value = TwoPFormulation::p1s0; };
152
154template<class TypeTag>
155struct UseBlockingOfSpuriousFlow<TypeTag, TTag::TwoPOneCNI> { static constexpr bool value = false; };
156
158template<class TypeTag>
159struct LocalResidual<TypeTag, TTag::TwoPOneCNI> { using type = TwoPOneCLocalResidual<TypeTag>; };
160
162template<class TypeTag>
163struct AdvectionType<TypeTag, TTag::TwoPOneCNI> { using type = TwoPOneCDarcysLaw<TypeTag>; };
164
166template<class TypeTag>
167struct VolumeVariables<TypeTag, TTag::TwoPOneCNI>
168{
169private:
177 static_assert(FSY::numComponents == 1, "Only fluid systems with 1 component are supported by the 2p1cni model!");
178 static_assert(FSY::numPhases == 2, "Only fluid systems with 2 phases are supported by the 2p1cni model!");
179
182 template<class BaseTraits, class ETCM>
183 struct NITraits : public BaseTraits { using EffectiveThermalConductivityModel = ETCM; };
184public:
186};
187
189template<class TypeTag>
190struct PrimaryVariables<TypeTag, TTag::TwoPOneCNI>
191{
192private:
193 using PrimaryVariablesVector = Dune::FieldVector<GetPropType<TypeTag, Properties::Scalar>,
195public:
197};
198
200template<class TypeTag>
202
204// Property values for isothermal model required for the general non-isothermal model
206
208template<class TypeTag>
210
212template<class TypeTag>
213struct IOFields<TypeTag, TTag::TwoPOneCNI> { using type = EnergyIOFields<TwoPOneCIOFields>; };
214
215} // end namespace Properties
216} // end namespace Dumux
217
218#endif
Relation for the saturation-dependent effective thermal conductivity.
Represents all relevant thermodynamic quantities of a multi-phase, multi-component fluid system assum...
Defines an enumeration for the formulations accepted by the two-phase model.
A primary variable vector with a state to allow variable switches.
TwoPFormulation
Enumerates the formulations which the two-phase model accepts.
Definition: formulation.hh:35
@ p1s0
first phase saturation and second phase pressure as primary variables
Adaption of the non-isothermal two-phase two-component flow model to problems with CO2.
Definition: adapt.hh:29
typename GetProp< TypeTag, Property >::type GetPropType
get the type alias defined in the property
Definition: propertysystem.hh:180
A vector of primary variables.
Definition: common/properties.hh:49
Traits class encapsulating model specifications.
Definition: common/properties.hh:51
A class helping models to define input and output fields.
Definition: common/properties.hh:61
Definition: common/properties.hh:72
The secondary variables within a sub-control volume.
Definition: common/properties.hh:105
The type for the calculation the advective fluxes.
Definition: common/properties.hh:139
The type of the fluid state to use.
Definition: common/properties.hh:162
Model to be used for the calculation of the effective conductivity.
Definition: common/properties.hh:170
The formulation of the model.
Definition: common/properties.hh:174
Relation for the saturation-dependent effective thermal conductivity.
Definition: somerton.hh:60
Represents all relevant thermodynamic quantities of a multi-phase, multi-component fluid system assum...
Definition: compositional.hh:47
Determines whether blocking of spurious flow is used or not.
Definition: porousmediumflow/2p1c/darcyslaw.hh:38
Specialization of Darcy's Law for the two-phase one-component model, including a the possibility to...
Definition: porousmediumflow/2p1c/darcyslaw.hh:49
The indices for the two-phase one-component model.
Definition: porousmediumflow/2p1c/indices.hh:35
Element-wise calculation of the residual for the fully implicit two-phase one-component flow model.
Definition: porousmediumflow/2p1c/localresidual.hh:39
Specifies a number properties of models considering two phases with water as a single component.
Definition: porousmediumflow/2p1c/model.hh:82
static constexpr int numFluidPhases()
Definition: porousmediumflow/2p1c/model.hh:89
static constexpr int numFluidComponents()
Definition: porousmediumflow/2p1c/model.hh:90
static constexpr bool enableEnergyBalance()
Definition: porousmediumflow/2p1c/model.hh:94
static constexpr bool enableMolecularDiffusion()
Definition: porousmediumflow/2p1c/model.hh:93
static constexpr TwoPFormulation priVarFormulation()
Definition: porousmediumflow/2p1c/model.hh:96
static constexpr int numEq()
We solve for one more equation, i.e. the energy balance.
Definition: porousmediumflow/2p1c/model.hh:86
static constexpr int numEnergyEq()
only one energy equation is needed when assuming thermal equilibrium
Definition: porousmediumflow/2p1c/model.hh:88
static constexpr bool enableAdvection()
Definition: porousmediumflow/2p1c/model.hh:92
Traits class for the two-phase model.
Definition: porousmediumflow/2p1c/model.hh:111
FST FluidState
Definition: porousmediumflow/2p1c/model.hh:114
PT PermeabilityType
Definition: porousmediumflow/2p1c/model.hh:117
MT ModelTraits
Definition: porousmediumflow/2p1c/model.hh:118
PV PrimaryVariables
Definition: porousmediumflow/2p1c/model.hh:112
SST SolidState
Definition: porousmediumflow/2p1c/model.hh:116
FSY FluidSystem
Definition: porousmediumflow/2p1c/model.hh:113
SSY SolidSystem
Definition: porousmediumflow/2p1c/model.hh:115
Definition: porousmediumflow/2p1c/model.hh:125
std::tuple< PorousMediumFlow > InheritsFrom
Definition: porousmediumflow/2p1c/model.hh:125
The volume variables (i.e. secondary variables) for the two-phase one-component model.
Definition: porousmediumflow/2p1c/volumevariables.hh:49
A primary variable vector with a state to allow variable switches.
Definition: switchableprimaryvariables.hh:40
Adds I/O fields specific to non-isothermal models.
Definition: porousmediumflow/nonisothermal/iofields.hh:39
Declares all properties used in Dumux.
Defines a type tag and some properties for models using the box scheme.
The implicit non-isothermal model.
Adds I/O fields specific to non-isothermal models.
Adds I/O fields specific to the tracer model.
Element-wise calculation of the local residual for problems using fully implicit tracer model.
Python wrapper for volume variables (finite volume schemes)
Defines the indices used by the non-isothermal two-phase two-component model.
Defines the primary variable and equation indices used by the isothermal tracer model.