90 void setFreeFlow(
const Context& context,
unsigned bfIdx,
unsigned timeIdx,
const FluidState& fluidState)
92 ExtensiveQuantities extQuants;
93 extQuants.updateBoundary(context, bfIdx, timeIdx, fluidState);
94 const auto& insideIntQuants = context.intensiveQuantities(bfIdx, timeIdx);
95 const unsigned focusDofIdx = context.focusDofIndex();
96 const unsigned interiorDofIdx = context.interiorScvIndex(bfIdx, timeIdx);
101 (*this) = Evaluation(0.0);
102 for (
unsigned phaseIdx = 0; phaseIdx < numPhases; ++phaseIdx) {
104 if (fluidState.pressure(phaseIdx) > insideIntQuants.fluidState().pressure(phaseIdx)) {
105 if (focusDofIdx == interiorDofIdx) {
106 density = fluidState.density(phaseIdx);
109 density = getValue(fluidState.density(phaseIdx));
112 else if (focusDofIdx == interiorDofIdx) {
113 density = insideIntQuants.fluidState().density(phaseIdx);
116 density = getValue(insideIntQuants.fluidState().density(phaseIdx));
119 for (
unsigned compIdx = 0; compIdx < numComponents; ++compIdx) {
121 if (fluidState.pressure(phaseIdx) > insideIntQuants.fluidState().pressure(phaseIdx)) {
122 if (focusDofIdx == interiorDofIdx) {
123 molarity = fluidState.molarity(phaseIdx, compIdx);
126 molarity = getValue(fluidState.molarity(phaseIdx, compIdx));
129 else if (focusDofIdx == interiorDofIdx) {
130 molarity = insideIntQuants.fluidState().molarity(phaseIdx, compIdx);
133 molarity = getValue(insideIntQuants.fluidState().molarity(phaseIdx, compIdx));
138 (*this)[conti0EqIdx + compIdx] += extQuants.volumeFlux(phaseIdx) * molarity;
141 if constexpr (enableEnergy) {
142 Evaluation specificEnthalpy;
143 if (fluidState.pressure(phaseIdx) > insideIntQuants.fluidState().pressure(phaseIdx)) {
144 if (focusDofIdx == interiorDofIdx) {
145 specificEnthalpy = fluidState.enthalpy(phaseIdx);
148 specificEnthalpy = getValue(fluidState.enthalpy(phaseIdx));
151 else if (focusDofIdx == interiorDofIdx) {
152 specificEnthalpy = insideIntQuants.fluidState().enthalpy(phaseIdx);
155 specificEnthalpy = getValue(insideIntQuants.fluidState().enthalpy(phaseIdx));
158 const Evaluation enthalpyRate = density * extQuants.volumeFlux(phaseIdx) * specificEnthalpy;
159 EnergyModule::addToEnthalpyRate(*
this, enthalpyRate);
163 if constexpr (enableEnergy) {
165 EnergyModule::addToEnthalpyRate(*
this, EnergyModule::thermalConductionRate(extQuants));
169 for (
unsigned i = 0; i < numEq; ++i) {
170 Opm::Valgrind::CheckDefined((*
this)[i]);