98 const FluidState& fluidState)
100 ExtensiveQuantities extQuants;
101 extQuants.updateBoundary(context, bfIdx, timeIdx, fluidState);
102 const auto& insideIntQuants = context.intensiveQuantities(bfIdx, timeIdx);
103 const unsigned focusDofIdx = context.focusDofIndex();
104 const unsigned interiorDofIdx = context.interiorScvIndex(bfIdx, timeIdx);
110 for (
unsigned phaseIdx = 0; phaseIdx < numPhases; ++phaseIdx) {
111 if (!FluidSystem::phaseIsActive(phaseIdx)) {
114 const auto& pBoundary = fluidState.pressure(phaseIdx);
115 const Evaluation& pInside = insideIntQuants.fluidState().pressure(phaseIdx);
120 if (pBoundary < pInside) {
122 LocalResidual::template evalPhaseFluxes_<Evaluation>(tmp,
124 insideIntQuants.pvtRegionIndex(),
126 insideIntQuants.fluidState());
128 else if (pBoundary > pInside) {
129 using RhsEval = std::conditional_t<std::is_same_v<typename FluidState::ValueType, Evaluation>,
132 LocalResidual::template evalPhaseFluxes_<RhsEval>(tmp,
134 insideIntQuants.pvtRegionIndex(),
139 for (
unsigned i = 0; i < tmp.size(); ++i) {
140 (*this)[i] += tmp[i];
144 if constexpr (enableFullyImplicitThermal) {
146 Evaluation specificEnthalpy;
147 if (pBoundary > pInside) {
148 if (focusDofIdx == interiorDofIdx) {
149 density = fluidState.density(phaseIdx);
150 specificEnthalpy = fluidState.enthalpy(phaseIdx);
153 density = getValue(fluidState.density(phaseIdx));
154 specificEnthalpy = getValue(fluidState.enthalpy(phaseIdx));
157 else if (focusDofIdx == interiorDofIdx) {
158 density = insideIntQuants.fluidState().density(phaseIdx);
159 specificEnthalpy = insideIntQuants.fluidState().enthalpy(phaseIdx);
162 density = getValue(insideIntQuants.fluidState().density(phaseIdx));
163 specificEnthalpy = getValue(insideIntQuants.fluidState().enthalpy(phaseIdx));
166 const Evaluation enthalpyRate = density * extQuants.volumeFlux(phaseIdx) * specificEnthalpy;
167 EnergyModule::addToEnthalpyRate(*
this, enthalpyRate *
172 if constexpr (enableSolvent) {
173 (*this)[Indices::contiSolventEqIdx] = extQuants.solventVolumeFlux();
174 if (blackoilConserveSurfaceVolume) {
175 (*this)[Indices::contiSolventEqIdx] *= insideIntQuants.solventInverseFormationVolumeFactor();
178 (*this)[Indices::contiSolventEqIdx] *= insideIntQuants.solventDensity();
182 if constexpr (enablePolymer) {
183 (*this)[Indices::contiPolymerEqIdx] = extQuants.volumeFlux(FluidSystem::waterPhaseIdx) *
184 insideIntQuants.polymerConcentration();
187 if constexpr (enableMICP) {
188 (*this)[Indices::contiMicrobialEqIdx] = extQuants.volumeFlux(FluidSystem::waterPhaseIdx) *
189 insideIntQuants.microbialConcentration();
190 (*this)[Indices::contiOxygenEqIdx] = extQuants.volumeFlux(FluidSystem::waterPhaseIdx) *
191 insideIntQuants.oxygenConcentration();
192 (*this)[Indices::contiUreaEqIdx] = extQuants.volumeFlux(FluidSystem::waterPhaseIdx) *
193 insideIntQuants.ureaConcentration();
199 LocalResidual::adaptMassConservationQuantities_(*
this, insideIntQuants.pvtRegionIndex());
202 if constexpr (enableFullyImplicitThermal) {
203 EnergyModule::addToEnthalpyRate(*
this, extQuants.energyFlux() *
208 for (
unsigned i = 0; i < numEq; ++i) {
209 Valgrind::CheckDefined((*
this)[i]);
211 Valgrind::CheckDefined(*
this);