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Merge pull request #859 from totto82/nodispgas
ignore dispersion in gas phase
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commit
ec8f84429e
@ -65,6 +65,13 @@ class BlackOilDispersionModule<TypeTag, /*enableDispersion=*/false>
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public:
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using ExtensiveQuantities = BlackOilDispersionExtensiveQuantities<TypeTag,false>;
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#if HAVE_ECL_INPUT
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static void initFromState(const EclipseState&)
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{
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}
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#endif
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/*!
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* \brief Adds the dispersive flux to the flux vector over a flux
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* integration point.
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@ -112,6 +119,16 @@ class BlackOilDispersionModule<TypeTag, /*enableDispersion=*/true>
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public:
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using ExtensiveQuantities = BlackOilDispersionExtensiveQuantities<TypeTag,true>;
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#if HAVE_ECL_INPUT
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static void initFromState(const EclipseState& eclState)
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{
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if (eclState.getSimulationConfig().hasVAPWAT() || eclState.getSimulationConfig().hasVAPOIL()) {
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OpmLog::warning("Dispersion is activated in combination with VAPWAT/VAPOIL. \n"
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"Water/oil is still allowed to vaporize, but dispersion in the "
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"gas phase is ignored.");
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}
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}
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#endif
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/*!
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* \brief Adds the mass flux due to dispersion to the flux vector over the
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* flux integration point.
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@ -170,6 +187,13 @@ public:
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continue;
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}
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// Adding dispersion in the gas phase leads to
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// convergence issues and unphysical results.
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// We disable dispersion in the gas phase for now
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if (FluidSystem::gasPhaseIdx == phaseIdx) {
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continue;
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}
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// no dispersion in gas for blackoil models unless gas can contain evaporated water or oil
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if ((!FluidSystem::enableVaporizedWater() && !FluidSystem::enableVaporizedOil()) && FluidSystem::gasPhaseIdx == phaseIdx) {
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continue;
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@ -226,6 +250,7 @@ public:
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}
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private:
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static Scalar toMassFractionGasOil (unsigned regionIdx) {
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Scalar rhoO = FluidSystem::referenceDensity(FluidSystem::oilPhaseIdx, regionIdx);
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Scalar rhoG = FluidSystem::referenceDensity(FluidSystem::gasPhaseIdx, regionIdx);
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