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move Co2PtFlashProblem parameters to TypeTag-free parameter system
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@ -144,44 +144,18 @@ struct EnableEnergy<TypeTag, TTag::CO2PTBaseProblem> {
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namespace Opm::Parameters {
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template <class TypeTag, class MyTypeTag>
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struct Temperature { using type = Properties::UndefinedProperty; };
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template <class TypeTag, class MyTypeTag>
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struct SimulationName { using type = Properties::UndefinedProperty; };
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template <class TypeTag, class MyTypeTag>
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struct EpisodeLength { using type = Properties::UndefinedProperty;};
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template <class TypeTag, class MyTypeTag>
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struct Initialpressure { using type = Properties::UndefinedProperty;};
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// this is kinds of telling the report step length
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template <class TypeTag>
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struct EpisodeLength<TypeTag, Properties::TTag::CO2PTBaseProblem>
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{
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using type = GetPropType<TypeTag, Properties::Scalar>;
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static constexpr type value = 0.1 * 60. * 60.;
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};
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template<class Scalar>
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struct EpisodeLength { static constexpr Scalar value = 0.1 * 60. * 60.; };
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template <class TypeTag>
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struct Initialpressure<TypeTag, Properties::TTag::CO2PTBaseProblem>
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{
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using type = GetPropType<TypeTag, Properties::Scalar>;
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static constexpr type value = 75.e5;
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};
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template<class Scalar>
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struct Initialpressure { static constexpr Scalar value = 75e5; };
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template <class TypeTag>
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struct SimulationName<TypeTag, Properties::TTag::CO2PTBaseProblem>
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{ static constexpr auto value = "co2_ptflash"; };
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struct SimulationName { static constexpr auto value = "co2_ptflash"; };
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// set the defaults for the problem specific properties
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template <class TypeTag>
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struct Temperature<TypeTag, Properties::TTag::CO2PTBaseProblem>
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{
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using type = GetPropType<TypeTag, Properties::Scalar>;
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static constexpr type value = 423.25; // TODO
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};
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template<class Scalar>
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struct Temperature { static constexpr Scalar value = 423.25; };
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} // namespace Opm::Parameters
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@ -237,7 +211,7 @@ public:
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explicit CO2PTProblem(Simulator& simulator)
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: ParentType(simulator)
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{
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const Scalar epi_len = Parameters::get<TypeTag, Parameters::EpisodeLength>();
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const Scalar epi_len = Parameters::Get<Parameters::EpisodeLength<Scalar>>();
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simulator.setEpisodeLength(epi_len);
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FluidSystem::init();
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using CompParm = typename FluidSystem::ComponentParam;
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@ -255,7 +229,7 @@ public:
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void initPetrophysics()
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{
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temperature_ = Parameters::get<TypeTag, Parameters::Temperature>();
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temperature_ = Parameters::Get<Parameters::Temperature<Scalar>>();
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K_ = this->toDimMatrix_(9.869232667160131e-14);
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porosity_ = 0.1;
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@ -292,13 +266,13 @@ public:
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{
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ParentType::registerParameters();
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Parameters::registerParam<TypeTag, Parameters::Temperature>
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Parameters::Register<Parameters::Temperature<Scalar>>
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("The temperature [K] in the reservoir");
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Parameters::registerParam<TypeTag, Parameters::Initialpressure>
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Parameters::Register<Parameters::Initialpressure<Scalar>>
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("The initial pressure [Pa s] in the reservoir");
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Parameters::registerParam<TypeTag, Parameters::SimulationName>
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Parameters::Register<Parameters::SimulationName>
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("The name of the simulation used for the output files");
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Parameters::registerParam<TypeTag, Parameters::EpisodeLength>
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Parameters::Register<Parameters::EpisodeLength<Scalar>>
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("Time interval [s] for episode length");
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Parameters::SetDefault<Parameters::CellsX>(30);
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@ -336,7 +310,7 @@ public:
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std::string name() const
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{
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std::ostringstream oss;
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oss << Parameters::get<TypeTag, Parameters::SimulationName>();
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oss << Parameters::Get<Parameters::SimulationName>();
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return oss.str();
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}
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@ -345,7 +319,7 @@ public:
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// the old one.
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void endEpisode()
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{
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Scalar epi_len = Parameters::get<TypeTag, Parameters::EpisodeLength>();
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Scalar epi_len = Parameters::Get<Parameters::EpisodeLength<Scalar>>();
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this->simulator().startNextEpisode(epi_len);
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}
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@ -487,7 +461,7 @@ private:
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sat[0] = 1.0;
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sat[1] = 1.0 - sat[0];
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Scalar p0 = Parameters::get<TypeTag, Parameters::Initialpressure>();
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Scalar p0 = Parameters::Get<Parameters::Initialpressure<Scalar>>();
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//\Note, for an AD variable, if we multiply it with 2, the derivative will also be scalced with 2,
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//\Note, so we should not do it.
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