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Merge pull request #816 from totto82/maximum_water_sat
add parameter to set maximum water saturation. Default is 1.0
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commit
63764d715c
@ -55,6 +55,10 @@ template<class TypeTag, class MyTypeTag>
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struct TemperatureMax { using type = UndefinedProperty; };
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struct TemperatureMax { using type = UndefinedProperty; };
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template<class TypeTag, class MyTypeTag>
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template<class TypeTag, class MyTypeTag>
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struct TemperatureMin { using type = UndefinedProperty; };
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struct TemperatureMin { using type = UndefinedProperty; };
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template<class TypeTag, class MyTypeTag>
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struct MaximumWaterSaturation { using type = UndefinedProperty; };
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template<class TypeTag, class MyTypeTag>
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struct WaterOnlyThreshold { using type = UndefinedProperty; };
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template<class TypeTag>
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template<class TypeTag>
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struct DpMaxRel<TypeTag, TTag::NewtonMethod>
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struct DpMaxRel<TypeTag, TTag::NewtonMethod>
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{
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{
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@ -93,6 +97,18 @@ struct TemperatureMin<TypeTag, TTag::NewtonMethod>
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using type = GetPropType<TypeTag, Scalar>;
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using type = GetPropType<TypeTag, Scalar>;
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static constexpr type value = 0.0; //Kelvin
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static constexpr type value = 0.0; //Kelvin
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};
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};
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template<class TypeTag>
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struct MaximumWaterSaturation<TypeTag, TTag::NewtonMethod>
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{
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using type = GetPropType<TypeTag, Scalar>;
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static constexpr type value = 1.0;
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};
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template<class TypeTag>
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struct WaterOnlyThreshold<TypeTag, TTag::NewtonMethod>
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{
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using type = GetPropType<TypeTag, Scalar>;
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static constexpr type value = 1.0;
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};
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} // namespace Opm::Properties
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} // namespace Opm::Properties
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namespace Opm {
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namespace Opm {
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@ -130,7 +146,8 @@ public:
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maxTempChange_ = EWOMS_GET_PARAM(TypeTag, Scalar, MaxTemperatureChange);
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maxTempChange_ = EWOMS_GET_PARAM(TypeTag, Scalar, MaxTemperatureChange);
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tempMax_ = EWOMS_GET_PARAM(TypeTag, Scalar, TemperatureMax);
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tempMax_ = EWOMS_GET_PARAM(TypeTag, Scalar, TemperatureMax);
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tempMin_ = EWOMS_GET_PARAM(TypeTag, Scalar, TemperatureMin);
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tempMin_ = EWOMS_GET_PARAM(TypeTag, Scalar, TemperatureMin);
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waterSaturationMax_ = EWOMS_GET_PARAM(TypeTag, Scalar, MaximumWaterSaturation);
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waterOnlyThreshold_ = EWOMS_GET_PARAM(TypeTag, Scalar, WaterOnlyThreshold);
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}
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}
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/*!
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/*!
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@ -159,6 +176,8 @@ public:
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EWOMS_REGISTER_PARAM(TypeTag, Scalar, MaxTemperatureChange, "Maximum absolute change of temperature in a single iteration");
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EWOMS_REGISTER_PARAM(TypeTag, Scalar, MaxTemperatureChange, "Maximum absolute change of temperature in a single iteration");
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EWOMS_REGISTER_PARAM(TypeTag, Scalar, TemperatureMax, "Maximum absolute temperature");
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EWOMS_REGISTER_PARAM(TypeTag, Scalar, TemperatureMax, "Maximum absolute temperature");
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EWOMS_REGISTER_PARAM(TypeTag, Scalar, TemperatureMin, "Minimum absolute temperature");
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EWOMS_REGISTER_PARAM(TypeTag, Scalar, TemperatureMin, "Minimum absolute temperature");
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EWOMS_REGISTER_PARAM(TypeTag, Scalar, MaximumWaterSaturation, "Maximum water saturation");
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EWOMS_REGISTER_PARAM(TypeTag, Scalar, WaterOnlyThreshold, "Cells with water saturation above or equal is considered one-phase water only");
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}
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}
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/*!
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/*!
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@ -433,9 +452,9 @@ protected:
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// use a threshold value after a switch to make it harder to switch back
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// use a threshold value after a switch to make it harder to switch back
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// immediately.
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// immediately.
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if (wasSwitched_[globalDofIdx])
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if (wasSwitched_[globalDofIdx])
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wasSwitched_[globalDofIdx] = nextValue.adaptPrimaryVariables(this->problem(), globalDofIdx, priVarOscilationThreshold_);
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wasSwitched_[globalDofIdx] = nextValue.adaptPrimaryVariables(this->problem(), globalDofIdx, waterSaturationMax_, waterOnlyThreshold_, priVarOscilationThreshold_);
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else
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else
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wasSwitched_[globalDofIdx] = nextValue.adaptPrimaryVariables(this->problem(), globalDofIdx);
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wasSwitched_[globalDofIdx] = nextValue.adaptPrimaryVariables(this->problem(), globalDofIdx, waterSaturationMax_, waterOnlyThreshold_);
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if (wasSwitched_[globalDofIdx])
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if (wasSwitched_[globalDofIdx])
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++ numPriVarsSwitched_;
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++ numPriVarsSwitched_;
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@ -450,6 +469,9 @@ private:
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int numPriVarsSwitched_;
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int numPriVarsSwitched_;
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Scalar priVarOscilationThreshold_;
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Scalar priVarOscilationThreshold_;
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Scalar waterSaturationMax_;
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Scalar waterOnlyThreshold_;
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Scalar dpMaxRel_;
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Scalar dpMaxRel_;
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Scalar dsMax_;
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Scalar dsMax_;
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bool projectSaturations_;
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bool projectSaturations_;
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@ -493,10 +493,8 @@ public:
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*
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*
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* \return true Iff the interpretation of one of the switching variables was changed
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* \return true Iff the interpretation of one of the switching variables was changed
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*/
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*/
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bool adaptPrimaryVariables(const Problem& problem, unsigned globalDofIdx, Scalar eps = 0.0)
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bool adaptPrimaryVariables(const Problem& problem, unsigned globalDofIdx, Scalar swMaximum, Scalar thresholdWaterFilledCell, Scalar eps = 0.0)
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{
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{
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static const Scalar thresholdWaterFilledCell = 1.0 - eps;
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// this function accesses quite a few black-oil specific low-level functions
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// this function accesses quite a few black-oil specific low-level functions
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// directly for better performance (instead of going the canonical way through
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// directly for better performance (instead of going the canonical way through
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// the IntensiveQuantities). The reason is that most intensive quantities are not
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// the IntensiveQuantities). The reason is that most intensive quantities are not
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@ -546,16 +544,17 @@ public:
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// keep track if any meaning has changed
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// keep track if any meaning has changed
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bool changed = false;
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bool changed = false;
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// special case cells with almost only water
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// Special case for cells with almost only water
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// use both saturations (if the phase is enabled)
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// for these cells both saturations (if the phase is enabled) is used
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// if dissolved gas in water is enabled we shouldn't enter
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// to avoid singular systems.
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// If dissolved gas in water is enabled we shouldn't enter
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// here but instead switch to Rsw as primary variable
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// here but instead switch to Rsw as primary variable
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// as sw >= 1.0 -> gas <= 0 (i.e. gas phase disappears)
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// as sw >= 1.0 -> gas <= 0 (i.e. gas phase disappears)
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if (sw >= thresholdWaterFilledCell && !FluidSystem::enableDissolvedGasInWater()) {
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if (sw >= thresholdWaterFilledCell && !FluidSystem::enableDissolvedGasInWater()) {
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// make sure water saturations does not exceed 1.0
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// make sure water saturations does not exceed sw_maximum. Default to 1.0
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if constexpr (waterEnabled) {
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if constexpr (waterEnabled) {
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(*this)[Indices::waterSwitchIdx] = 1.0;
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(*this)[Indices::waterSwitchIdx] = std::min(swMaximum, sw);
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assert(primaryVarsMeaningWater() == WaterMeaning::Sw);
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assert(primaryVarsMeaningWater() == WaterMeaning::Sw);
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}
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}
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// the hydrocarbon gas saturation is set to 0.0
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// the hydrocarbon gas saturation is set to 0.0
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