mirror of
https://github.com/OPM/opm-simulators.git
synced 2025-02-25 18:55:30 -06:00
fully implicit simulators: various cleanups
these are mostly stylistic: the function bodies of most new methods have been moved to the _impl.hpp file and the Simulator classes are now templated on the grid type, so it should be not too hard to switch them to Dune::CpGrid.
This commit is contained in:
@@ -268,7 +268,8 @@ try
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std::vector<double> threshold_pressures = thresholdPressures(eclipseState, *grid->c_grid());
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SimulatorFullyImplicitBlackoilPolymer simulator(param,
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SimulatorFullyImplicitBlackoilPolymer<UnstructuredGrid>
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simulator(param,
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*grid->c_grid(),
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geology,
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*new_props,
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@@ -224,7 +224,7 @@ try
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SimulatorReport fullReport;
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// Create and run simulator.
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Opm::DerivedGeology geology(*grid->c_grid(), *new_props, eclipseState, grav);
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SimulatorFullyImplicitCompressiblePolymer
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SimulatorFullyImplicitCompressiblePolymer<UnstructuredGrid>
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simulator(param,
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*grid->c_grid(),
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geology,
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@@ -255,9 +255,15 @@ namespace {
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return it;
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}
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int FullyImplicitCompressiblePolymerSolver::newtonIterations() const
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{
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return newtonIterations_;
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}
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int FullyImplicitCompressiblePolymerSolver::linearIterations() const
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{
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return linearIterations_;
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}
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FullyImplicitCompressiblePolymerSolver::ReservoirResidualQuant::ReservoirResidualQuant()
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: accum(2, ADB::null())
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@@ -85,10 +85,8 @@ namespace Opm {
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PolymerBlackoilState& state ,
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WellStateFullyImplicitBlackoilPolymer& wstate);
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int newtonIterations() const
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{ return newtonIterations_; }
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int linearIterations() const
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{ return linearIterations_; }
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int newtonIterations() const;
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int linearIterations() const;
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private:
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typedef AutoDiffBlock<double> ADB;
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@@ -78,32 +78,35 @@
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namespace Opm
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{
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template <class GridT>
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class SimulatorFullyImplicitBlackoilPolymer;
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template<>
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struct SimulatorTraits<SimulatorFullyImplicitBlackoilPolymer>
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template<class GridT>
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struct SimulatorTraits<SimulatorFullyImplicitBlackoilPolymer<GridT> >
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{
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typedef WellStateFullyImplicitBlackoilPolymer WellState;
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typedef PolymerBlackoilState ReservoirState;
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typedef BlackoilOutputWriter OutputWriter;
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typedef UnstructuredGrid Grid;
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typedef GridT Grid;
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typedef BlackoilPolymerModel<Grid> Model;
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typedef NewtonSolver<Model> Solver;
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};
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/// Class collecting all necessary components for a blackoil simulation with polymer
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/// injection.
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template <class GridT>
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class SimulatorFullyImplicitBlackoilPolymer
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: public SimulatorBase<SimulatorFullyImplicitBlackoilPolymer >
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: public SimulatorBase<SimulatorFullyImplicitBlackoilPolymer<GridT> >
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{
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typedef SimulatorFullyImplicitBlackoilPolymer ThisType;
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typedef SimulatorFullyImplicitBlackoilPolymer<GridT> ThisType;
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typedef SimulatorBase<ThisType> BaseType;
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typedef SimulatorTraits<ThisType> Traits;
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typedef typename Traits::Solver Solver;
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public:
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SimulatorFullyImplicitBlackoilPolymer(const parameter::ParameterGroup& param,
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const typename BaseType::Grid& grid,
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const GridT& grid,
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const DerivedGeology& geo,
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BlackoilPropsAdInterface& props,
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const PolymerPropsAd& polymer_props,
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@@ -118,58 +121,12 @@ namespace Opm
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Opm::DeckConstPtr& deck,
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const std::vector<double>& threshold_pressures_by_face);
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std::shared_ptr<Solver> createSolver(const Wells* wells)
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{
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typedef typename Traits::Model Model;
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typedef typename Model::ModelParameters ModelParams;
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ModelParams modelParams( param_ );
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typedef NewtonSolver<Model> Solver;
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auto model = std::make_shared<Model>(modelParams,
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BaseType::grid_,
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BaseType::props_,
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BaseType::geo_,
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BaseType::rock_comp_props_,
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polymer_props_,
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wells,
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BaseType::solver_,
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BaseType::has_disgas_,
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BaseType::has_vapoil_,
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has_polymer_,
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BaseType::terminal_output_);
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if (!threshold_pressures_by_face_.empty()) {
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model->setThresholdPressures(threshold_pressures_by_face_);
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}
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typedef typename Solver::SolverParameters SolverParams;
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SolverParams solverParams( param_ );
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return std::make_shared<Solver>(solverParams, model);
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}
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std::shared_ptr<Solver> createSolver(const Wells* wells);
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void handleAdditionalWellInflow(SimulatorTimer& timer,
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WellsManager& wells_manager,
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typename BaseType::WellState& well_state,
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const Wells* wells)
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{
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// compute polymer inflow
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std::unique_ptr<PolymerInflowInterface> polymer_inflow_ptr;
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if (deck_->hasKeyword("WPOLYMER")) {
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if (wells_manager.c_wells() == 0) {
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OPM_THROW(std::runtime_error, "Cannot control polymer injection via WPOLYMER without wells.");
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}
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polymer_inflow_ptr.reset(new PolymerInflowFromDeck(deck_, BaseType::eclipse_state_, *wells, Opm::UgGridHelpers::numCells(BaseType::grid_), timer.currentStepNum()));
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} else {
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polymer_inflow_ptr.reset(new PolymerInflowBasic(0.0*Opm::unit::day,
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1.0*Opm::unit::day,
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0.0));
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}
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std::vector<double> polymer_inflow_c(Opm::UgGridHelpers::numCells(BaseType::grid_));
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polymer_inflow_ptr->getInflowValues(timer.simulationTimeElapsed(),
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timer.simulationTimeElapsed() + timer.currentStepLength(),
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polymer_inflow_c);
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well_state.polymerInflow() = polymer_inflow_c;
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}
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const Wells* wells);
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private:
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const PolymerPropsAd& polymer_props_;
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@@ -21,9 +21,10 @@
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namespace Opm
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{
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SimulatorFullyImplicitBlackoilPolymer::
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template <class GridT>
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SimulatorFullyImplicitBlackoilPolymer<GridT>::
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SimulatorFullyImplicitBlackoilPolymer(const parameter::ParameterGroup& param,
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const Grid& grid,
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const GridT& grid,
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const DerivedGeology& geo,
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BlackoilPropsAdInterface& props,
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const PolymerPropsAd& polymer_props,
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@@ -54,4 +55,63 @@ namespace Opm
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, deck_(deck)
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{
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}
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template <class GridT>
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auto SimulatorFullyImplicitBlackoilPolymer<GridT>::
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createSolver(const Wells* wells)
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-> std::shared_ptr<Solver>
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{
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typedef typename Traits::Model Model;
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typedef typename Model::ModelParameters ModelParams;
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ModelParams modelParams( BaseType::param_ );
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typedef NewtonSolver<Model> Solver;
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auto model = std::make_shared<Model>(modelParams,
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BaseType::grid_,
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BaseType::props_,
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BaseType::geo_,
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BaseType::rock_comp_props_,
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polymer_props_,
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wells,
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BaseType::solver_,
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BaseType::has_disgas_,
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BaseType::has_vapoil_,
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has_polymer_,
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BaseType::terminal_output_);
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if (!BaseType::threshold_pressures_by_face_.empty()) {
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model->setThresholdPressures(BaseType::threshold_pressures_by_face_);
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}
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typedef typename Solver::SolverParameters SolverParams;
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SolverParams solverParams( BaseType::param_ );
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return std::make_shared<Solver>(solverParams, model);
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}
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template <class GridT>
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void SimulatorFullyImplicitBlackoilPolymer<GridT>::
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handleAdditionalWellInflow(SimulatorTimer& timer,
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WellsManager& wells_manager,
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typename BaseType::WellState& well_state,
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const Wells* wells)
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{
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// compute polymer inflow
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std::unique_ptr<PolymerInflowInterface> polymer_inflow_ptr;
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if (deck_->hasKeyword("WPOLYMER")) {
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if (wells_manager.c_wells() == 0) {
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OPM_THROW(std::runtime_error, "Cannot control polymer injection via WPOLYMER without wells.");
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}
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polymer_inflow_ptr.reset(new PolymerInflowFromDeck(deck_, BaseType::eclipse_state_, *wells, Opm::UgGridHelpers::numCells(BaseType::grid_), timer.currentStepNum()));
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} else {
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polymer_inflow_ptr.reset(new PolymerInflowBasic(0.0*Opm::unit::day,
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1.0*Opm::unit::day,
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0.0));
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}
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std::vector<double> polymer_inflow_c(Opm::UgGridHelpers::numCells(BaseType::grid_));
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polymer_inflow_ptr->getInflowValues(timer.simulationTimeElapsed(),
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timer.simulationTimeElapsed() + timer.currentStepLength(),
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polymer_inflow_c);
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well_state.polymerInflow() = polymer_inflow_c;
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}
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} // namespace Opm
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@@ -68,29 +68,32 @@
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namespace Opm
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{
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template <class GridT>
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class SimulatorFullyImplicitCompressiblePolymer;
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template <>
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struct SimulatorTraits<SimulatorFullyImplicitCompressiblePolymer>
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template <class GridT>
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struct SimulatorTraits<SimulatorFullyImplicitCompressiblePolymer<GridT> >
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{
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typedef PolymerBlackoilState ReservoirState;
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typedef WellStateFullyImplicitBlackoilPolymer WellState;
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typedef BlackoilOutputWriter OutputWriter;
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typedef UnstructuredGrid Grid;
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typedef GridT Grid;
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typedef FullyImplicitCompressiblePolymerSolver Solver;
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};
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/// Class collecting all necessary components for a two-phase simulation.
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template <class GridT>
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class SimulatorFullyImplicitCompressiblePolymer
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: public SimulatorBase<SimulatorFullyImplicitCompressiblePolymer>
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: public SimulatorBase<SimulatorFullyImplicitCompressiblePolymer<GridT> >
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{
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typedef SimulatorFullyImplicitCompressiblePolymer ThisType;
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typedef SimulatorBase<ThisType> BaseType;
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typedef typename BaseType::Solver Solver;
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public:
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/// Initialise from parameters and objects to observe.
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SimulatorFullyImplicitCompressiblePolymer(const parameter::ParameterGroup& param,
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const UnstructuredGrid& grid,
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const GridT& grid,
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const DerivedGeology& geo,
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BlackoilPropsAdInterface& props,
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const PolymerPropsAd& polymer_props,
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@@ -101,42 +104,12 @@ namespace Opm
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NewtonIterationBlackoilInterface& linsolver,
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const double* gravity);
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std::shared_ptr<Solver> createSolver(const Wells* wells)
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{
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return std::make_shared<Solver>(BaseType::grid_,
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BaseType::props_,
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BaseType::geo_,
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BaseType::rock_comp_props_,
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polymer_props_,
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*wells,
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BaseType::solver_);
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}
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std::shared_ptr<Solver> createSolver(const Wells* wells);
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void handleAdditionalWellInflow(SimulatorTimer& timer,
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WellsManager& wells_manager,
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typename BaseType::WellState& well_state,
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const Wells* wells)
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{
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// compute polymer inflow
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std::unique_ptr<PolymerInflowInterface> polymer_inflow_ptr;
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if (deck_->hasKeyword("WPOLYMER")) {
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if (wells_manager.c_wells() == 0) {
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OPM_THROW(std::runtime_error, "Cannot control polymer injection via WPOLYMER without wells.");
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}
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polymer_inflow_ptr.reset(new PolymerInflowFromDeck(deck_, BaseType::eclipse_state_, *wells, Opm::UgGridHelpers::numCells(BaseType::grid_), timer.currentStepNum()));
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} else {
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polymer_inflow_ptr.reset(new PolymerInflowBasic(0.0*Opm::unit::day,
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1.0*Opm::unit::day,
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0.0));
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}
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std::vector<double> polymer_inflow_c(Opm::UgGridHelpers::numCells(BaseType::grid_));
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polymer_inflow_ptr->getInflowValues(timer.simulationTimeElapsed(),
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timer.simulationTimeElapsed() + timer.currentStepLength(),
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polymer_inflow_c);
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well_state.polymerInflow() = polymer_inflow_c;
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}
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const Wells* wells);
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private:
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Opm::DeckConstPtr deck_;
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const PolymerPropsAd& polymer_props_;
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@@ -24,9 +24,10 @@ namespace Opm
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{
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/// Class collecting all necessary components for a two-phase simulation.
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SimulatorFullyImplicitCompressiblePolymer::
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template <class GridT>
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SimulatorFullyImplicitCompressiblePolymer<GridT>::
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SimulatorFullyImplicitCompressiblePolymer(const parameter::ParameterGroup& param,
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const UnstructuredGrid& grid,
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const GridT& grid,
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const DerivedGeology& geo,
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BlackoilPropsAdInterface& props,
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const PolymerPropsAd& polymer_props,
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@@ -54,6 +55,47 @@ SimulatorFullyImplicitCompressiblePolymer(const parameter::ParameterGroup& param
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{
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}
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template <class GridT>
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auto SimulatorFullyImplicitCompressiblePolymer<GridT>::
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createSolver(const Wells* wells)
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-> std::shared_ptr<Solver>
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{
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return std::make_shared<Solver>(BaseType::grid_,
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BaseType::props_,
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BaseType::geo_,
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BaseType::rock_comp_props_,
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polymer_props_,
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*wells,
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BaseType::solver_);
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}
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template <class GridT>
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void SimulatorFullyImplicitCompressiblePolymer<GridT>::
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handleAdditionalWellInflow(SimulatorTimer& timer,
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WellsManager& wells_manager,
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typename BaseType::WellState& well_state,
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const Wells* wells)
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{
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// compute polymer inflow
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std::unique_ptr<PolymerInflowInterface> polymer_inflow_ptr;
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if (deck_->hasKeyword("WPOLYMER")) {
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if (wells_manager.c_wells() == 0) {
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OPM_THROW(std::runtime_error, "Cannot control polymer injection via WPOLYMER without wells.");
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}
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polymer_inflow_ptr.reset(new PolymerInflowFromDeck(deck_, BaseType::eclipse_state_, *wells, Opm::UgGridHelpers::numCells(BaseType::grid_), timer.currentStepNum()));
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} else {
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polymer_inflow_ptr.reset(new PolymerInflowBasic(0.0*Opm::unit::day,
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1.0*Opm::unit::day,
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0.0));
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}
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std::vector<double> polymer_inflow_c(Opm::UgGridHelpers::numCells(BaseType::grid_));
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polymer_inflow_ptr->getInflowValues(timer.simulationTimeElapsed(),
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timer.simulationTimeElapsed() + timer.currentStepLength(),
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polymer_inflow_c);
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well_state.polymerInflow() = polymer_inflow_c;
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}
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} // namespace Opm
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#endif // OPM_SIMULATORFULLYIMPLICITCOMPRESSIBLEPOLYMER_HEADER_INCLUDED
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