28#ifndef EWOMS_NCP_LOCAL_RESIDUAL_HH
29#define EWOMS_NCP_LOCAL_RESIDUAL_HH
31#include <dune/istl/bvector.hh>
33#include <opm/material/common/MathToolbox.hpp>
34#include <opm/material/common/Valgrind.hpp>
51template <
class TypeTag>
66 enum { ncp0EqIdx = Indices::ncp0EqIdx };
67 enum { conti0EqIdx = Indices::conti0EqIdx };
75 using EvalEqVector = Dune::FieldVector<Evaluation, numEq>;
76 using ElemEvalEqVector = Dune::BlockVector<EvalEqVector>;
83 template <
class LhsEval>
85 const ElementContext& elemCtx,
90 const IntensiveQuantities& intQuants = elemCtx.intensiveQuantities(dofIdx,
timeIdx);
91 const auto& fluidState = intQuants.fluidState();
108 template <
class LhsEval>
110 const ElementContext& elemCtx,
119 EnergyModule::addSolidEnergyStorage(
storage, elemCtx.intensiveQuantities(dofIdx,
timeIdx));
126 const ElementContext& elemCtx,
132 Valgrind::CheckDefined(
flux);
135 Valgrind::CheckDefined(
flux);
142 const ElementContext& elemCtx,
153 const IntensiveQuantities&
up = elemCtx.intensiveQuantities(
upIdx,
timeIdx);
159 const Evaluation tmp =
169 const Evaluation tmp =
170 Toolbox::value(
up.fluidState().molarDensity(
phaseIdx)) *
187 const ElementContext& elemCtx,
202 const ElementContext& elemCtx,
206 Valgrind::SetUndefined(source);
207 elemCtx.problem().source(source, elemCtx, dofIdx,
timeIdx);
208 Valgrind::CheckDefined(source);
219 template <
class LhsEval = Evaluation>
225 const auto& fluidState = elemCtx.intensiveQuantities(dofIdx,
timeIdx).fluidState();
226 using FluidState = std::remove_const_t<std::remove_reference_t<
decltype(fluidState)>>;
232 return LhsToolbox::min(
a,
b);
240 template <
class Flu
idState,
class LhsEval>
241 LhsEval phasePresentIneq_(
const FluidState& fluidState,
unsigned phaseIdx)
const
251 template <
class Flu
idState,
class LhsEval>
252 LhsEval phaseNotPresentIneq_(
const FluidState& fluidState,
unsigned phaseIdx)
const
258 for (
unsigned i = 0; i < numComponents; ++i) {
Provides the auxiliary methods required for consideration of the diffusion equation.
Definition diffusionmodule.hh:51
Provides the auxiliary methods required for consideration of the energy equation.
Definition energymodule.hh:54
Details needed to calculate the local residual in the compositional multi-phase NCP-model .
Definition ncplocalresidual.hh:53
LhsEval phaseNcp(const ElementContext &elemCtx, unsigned dofIdx, unsigned timeIdx, unsigned phaseIdx) const
Returns the value of the NCP-function for a phase.
Definition ncplocalresidual.hh:220
void addAdvectiveFlux(RateVector &flux, const ElementContext &elemCtx, unsigned scvfIdx, unsigned timeIdx) const
Add the advective mass flux at a given flux integration point.
Definition ncplocalresidual.hh:141
void addDiffusiveFlux(RateVector &flux, const ElementContext &elemCtx, unsigned scvfIdx, unsigned timeIdx) const
Adds the diffusive flux at a given flux integration point.
Definition ncplocalresidual.hh:186
void computeFlux(RateVector &flux, const ElementContext &elemCtx, unsigned scvfIdx, unsigned timeIdx) const
Evaluates the total mass flux of all conservation quantities over a face of a sub-control volume.
Definition ncplocalresidual.hh:125
void addPhaseStorage(Dune::FieldVector< LhsEval, numEq > &storage, const ElementContext &elemCtx, unsigned dofIdx, unsigned timeIdx, unsigned phaseIdx) const
Adds the amount all conservation quantities (e.g.
Definition ncplocalresidual.hh:84
void computeStorage(Dune::FieldVector< LhsEval, numEq > &storage, const ElementContext &elemCtx, unsigned dofIdx, unsigned timeIdx) const
Evaluate the amount all conservation quantities (e.g.
Definition ncplocalresidual.hh:109
void computeSource(RateVector &source, const ElementContext &elemCtx, unsigned dofIdx, unsigned timeIdx) const
Calculate the source term of the equation.
Definition ncplocalresidual.hh:201
Classes required for molecular diffusion.
Contains the classes required to consider energy as a conservation quantity in a multi-phase module.
Declare the properties used by the infrastructure code of the finite volume discretizations.
Defines the common properties required by the porous medium multi-phase models.
This file contains a set of helper functions used by VFPProd / VFPInj.
Definition blackoilbioeffectsmodules.hh:43
constexpr auto getPropValue()
get the value data member of a property
Definition propertysystem.hh:240
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:233