opm-simulators
blackoilratevector.hh
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28 #ifndef EWOMS_BLACK_OIL_RATE_VECTOR_HH
29 #define EWOMS_BLACK_OIL_RATE_VECTOR_HH
30 
31 #include <dune/common/fvector.hh>
32 
33 #include <opm/material/common/MathToolbox.hpp>
34 #include <opm/material/common/Valgrind.hpp>
35 #include <opm/material/constraintsolvers/NcpFlash.hpp>
36 
41 
42 #include <stdexcept>
43 
44 namespace Opm {
45 
55 template <class TypeTag>
57  : public Dune::FieldVector<GetPropType<TypeTag, Properties::Evaluation>,
58  getPropValue<TypeTag, Properties::NumEq>()>
59 {
64 
65  enum { numEq = getPropValue<TypeTag, Properties::NumEq>() };
66  enum { numComponents = getPropValue<TypeTag, Properties::NumComponents>() };
67  enum { conti0EqIdx = Indices::conti0EqIdx };
68 
69  static constexpr bool enableBioeffects = getPropValue<TypeTag, Properties::EnableBioeffects>();
70  static constexpr bool enableBrine = getPropValue<TypeTag, Properties::EnableBrine>();
71  static constexpr bool enableFoam = getPropValue<TypeTag, Properties::EnableFoam>();
72  static constexpr bool enablePolymer = getPropValue<TypeTag, Properties::EnablePolymer>();
73  static constexpr bool enablePolymerMolarWeight = getPropValue<TypeTag, Properties::EnablePolymerMW>();
74  static constexpr bool enableSolvent = getPropValue<TypeTag, Properties::EnableSolvent>();
75 
76  using Toolbox = MathToolbox<Evaluation>;
77  using ParentType = Dune::FieldVector<Evaluation, numEq>;
78 
79  using BrineModule = BlackOilBrineModule<TypeTag, enableBrine>;
81  using PolymerModule = BlackOilPolymerModule<TypeTag, enablePolymer>;
82  using SolventModule = BlackOilSolventModule<TypeTag, enableSolvent>;
83 
84 public:
85  BlackOilRateVector() : ParentType()
86  { Valgrind::SetUndefined(*this); }
87 
91  BlackOilRateVector(Scalar value) : ParentType(Toolbox::createConstant(value))
92  {}
93 
100  void setMassRate(const ParentType& value, unsigned pvtRegionIdx = 0)
101  {
102  ParentType::operator=(value);
103 
104  // convert to "surface volume" if requested
105  if constexpr (getPropValue<TypeTag, Properties::BlackoilConserveSurfaceVolume>()) {
106  if (FluidSystem::phaseIsActive(FluidSystem::gasPhaseIdx)) {
107  (*this)[FluidSystem::canonicalToActiveCompIdx(FluidSystem::gasCompIdx)] /=
108  FluidSystem::referenceDensity(FluidSystem::gasPhaseIdx, pvtRegionIdx);
109  }
110  if (FluidSystem::phaseIsActive(FluidSystem::oilPhaseIdx)) {
111  (*this)[FluidSystem::canonicalToActiveCompIdx(FluidSystem::oilCompIdx)] /=
112  FluidSystem::referenceDensity(FluidSystem::oilPhaseIdx, pvtRegionIdx);
113  }
114  if (FluidSystem::phaseIsActive(FluidSystem::waterPhaseIdx)) {
115  (*this)[FluidSystem::canonicalToActiveCompIdx(FluidSystem::waterCompIdx)] /=
116  FluidSystem::referenceDensity(FluidSystem::waterPhaseIdx, pvtRegionIdx);
117  }
118  if constexpr (enableSolvent) {
119  const auto& solventPvt = SolventModule::solventPvt();
120  (*this)[Indices::contiSolventEqIdx] /=
121  solventPvt.referenceDensity(pvtRegionIdx);
122  }
123  }
124  }
125 
132  void setMolarRate(const ParentType& value, unsigned pvtRegionIdx = 0)
133  {
134  // first, assign molar rates
135  ParentType::operator=(value);
136 
137  // then, convert them to mass rates
138  for (unsigned compIdx = 0; compIdx < numComponents; ++compIdx) {
139  (*this)[conti0EqIdx + compIdx] *= FluidSystem::molarMass(compIdx, pvtRegionIdx);
140  }
141 
142  if constexpr (enableSolvent) {
143  const auto& solventPvt = SolventModule::solventPvt();
144  (*this)[Indices::contiSolventEqIdx] *= solventPvt.molarMass(pvtRegionIdx);
145  }
146 
147  if constexpr (enablePolymer) {
148  if constexpr (enablePolymerMolarWeight) {
149  throw std::logic_error("Set molar rate with polymer weight tracking not implemented");
150  }
151 
152  (*this)[Indices::contiPolymerEqIdx] *= PolymerModule::molarMass(pvtRegionIdx);
153  }
154 
155  if constexpr (enableFoam) {
156  throw std::logic_error("setMolarRate() not implemented for foam");
157  }
158 
159  if constexpr (enableBrine) {
160  throw std::logic_error("setMolarRate() not implemented for salt water");
161  }
162 
163  if constexpr (enableBioeffects) {
164  throw std::logic_error("setMolarRate() not implemented for bioeffects (biofilm/MICP)");
165  }
166 
167  // convert to "surface volume" if requested
168  if constexpr (getPropValue<TypeTag, Properties::BlackoilConserveSurfaceVolume>()) {
169  if (FluidSystem::phaseIsActive(FluidSystem::gasPhaseIdx)) {
170  (*this)[FluidSystem::canonicalToActiveCompIdx(FluidSystem::gasCompIdx)] /=
171  FluidSystem::referenceDensity(FluidSystem::gasPhaseIdx, pvtRegionIdx);
172  }
173  if (FluidSystem::phaseIsActive(FluidSystem::oilPhaseIdx)) {
174  (*this)[FluidSystem::canonicalToActiveCompIdx(FluidSystem::oilCompIdx)] /=
175  FluidSystem::referenceDensity(FluidSystem::oilPhaseIdx, pvtRegionIdx);
176  }
177  if (FluidSystem::phaseIsActive(FluidSystem::waterPhaseIdx)) {
178  (*this)[FluidSystem::canonicalToActiveCompIdx(FluidSystem::waterCompIdx)] /=
179  FluidSystem::referenceDensity(FluidSystem::waterPhaseIdx, pvtRegionIdx);
180  }
181  if constexpr (enableSolvent) {
182  const auto& solventPvt = SolventModule::solventPvt();
183  (*this)[Indices::contiSolventEqIdx] /=
184  solventPvt.referenceDensity(pvtRegionIdx);
185  }
186  }
187  }
188 
192  template <class FluidState, class RhsEval>
193  void setVolumetricRate(const FluidState& fluidState,
194  unsigned phaseIdx,
195  const RhsEval& volume)
196  {
197  for (unsigned compIdx = 0; compIdx < numComponents; ++compIdx) {
198  (*this)[conti0EqIdx + compIdx] =
199  fluidState.density(phaseIdx) *
200  fluidState.massFraction(phaseIdx, compIdx) *
201  volume;
202  }
203  }
204 
208  template <class RhsEval>
209  BlackOilRateVector& operator=(const RhsEval& value)
210  {
211  for (unsigned i = 0; i < this->size(); ++i) {
212  (*this)[i] = value;
213  }
214  return *this;
215  }
216 };
217 
218 } // namespace Opm
219 
220 #endif
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
Definition: blackoilfoammodules.hh:57
void setMolarRate(const ParentType &value, unsigned pvtRegionIdx=0)
Set a molar rate of the conservation quantities.
Definition: blackoilratevector.hh:132
Defines the common properties required by the porous medium multi-phase models.
Structs needed for tpfalinearizer and its gpuparams struct extracted to be defined in one place that ...
Definition: blackoilbioeffectsmodules.hh:45
Contains classes extending the black-oil model.
Declares the properties required by the black oil model.
BlackOilRateVector(Scalar value)
Definition: blackoilratevector.hh:91
Declare the properties used by the infrastructure code of the finite volume discretizations.
BlackOilRateVector & operator=(const RhsEval &value)
Assignment operator from a scalar or a function evaluation.
Definition: blackoilratevector.hh:209
void setMassRate(const ParentType &value, unsigned pvtRegionIdx=0)
Set a mass rate of the conservation quantities.
Definition: blackoilratevector.hh:100
Implements a vector representing mass, molar or volumetric rates for the black oil model...
Definition: blackoilratevector.hh:56
void setVolumetricRate(const FluidState &fluidState, unsigned phaseIdx, const RhsEval &volume)
Set a volumetric rate of a phase.
Definition: blackoilratevector.hh:193