mirror of
https://github.com/OPM/opm-simulators.git
synced 2025-02-25 18:55:30 -06:00
let sim_poly_fi2p_comp_ad works as the same way as sim_poly_fibo_ad.
- move time iteration to simulator class - add EclipseWriter and output Eclipse binaries. - add DeckConstPtr for polymer inflow.
This commit is contained in:
@@ -29,6 +29,8 @@
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#include <opm/autodiff/GeoProps.hpp>
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#include <opm/autodiff/BlackoilPropsAdInterface.hpp>
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#include <opm/autodiff/WellStateFullyImplicitBlackoil.hpp>
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#include <opm/polymer/fullyimplicit/FullyImplicitCompressiblePolymerSolver.hpp>
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#include <opm/polymer/fullyimplicit/utilities.hpp>
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#include <opm/core/grid.h>
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@@ -53,6 +55,11 @@
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#include <opm/core/simulator/WellState.hpp>
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#include <opm/core/transport/reorder/TransportSolverCompressibleTwophaseReorder.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/Schedule.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/ScheduleEnums.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/Well.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/WellProductionProperties.hpp>
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#include <opm/parser/eclipse/Deck/Deck.hpp>
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#include <boost/filesystem.hpp>
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#include <boost/scoped_ptr.hpp>
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#include <boost/lexical_cast.hpp>
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@@ -90,14 +97,14 @@ namespace Opm
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const BlackoilPropsAdInterface& props,
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const PolymerPropsAd& polymer_props,
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const RockCompressibility* rock_comp_props,
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WellsManager& wells_manager,
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PolymerInflowInterface& polymer_inflow,
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std::shared_ptr<EclipseState> eclipse_state,
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EclipseWriter& output_writer,
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Opm::DeckConstPtr& deck,
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NewtonIterationBlackoilInterface& linsolver,
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const double* gravity);
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SimulatorReport run(SimulatorTimer& timer,
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PolymerBlackoilState& state,
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WellState& well_state);
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PolymerBlackoilState& state);
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private:
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// Data.
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@@ -115,13 +122,13 @@ namespace Opm
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const BlackoilPropsAdInterface& props_;
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const PolymerPropsAd& polymer_props_;
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const RockCompressibility* rock_comp_props_;
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WellsManager& wells_manager_;
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const Wells* wells_;
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PolymerInflowInterface& polymer_inflow_;
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std::shared_ptr<EclipseState> eclipse_state_;
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EclipseWriter& output_writer_;
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Opm::DeckConstPtr& deck_;
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NewtonIterationBlackoilInterface& linsolver_;
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const double* gravity_;
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// Solvers
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DerivedGeology geo_;
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FullyImplicitCompressiblePolymerSolver solver_;
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// Misc. data
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std::vector<int> allcells_;
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};
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@@ -131,18 +138,19 @@ namespace Opm
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SimulatorFullyImplicitCompressiblePolymer::
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SimulatorFullyImplicitCompressiblePolymer(const parameter::ParameterGroup& param,
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const UnstructuredGrid& grid,
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const DerivedGeology& geo,
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const BlackoilPropsAdInterface& props,
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const PolymerPropsAd& polymer_props,
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const RockCompressibility* rock_comp_props,
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WellsManager& wells_manager,
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PolymerInflowInterface& polymer_inflow,
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NewtonIterationBlackoilInterface& linsolver,
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const double* gravity)
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const UnstructuredGrid& grid,
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const DerivedGeology& geo,
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const BlackoilPropsAdInterface& props,
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const PolymerPropsAd& polymer_props,
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const RockCompressibility* rock_comp_props,
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std::shared_ptr<EclipseState> eclipse_state,
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EclipseWriter& output_writer,
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Opm::DeckConstPtr& deck,
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NewtonIterationBlackoilInterface& linsolver,
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const double* gravity)
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{
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pimpl_.reset(new Impl(param, grid, geo, props, polymer_props, rock_comp_props, wells_manager, polymer_inflow, linsolver, gravity));
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pimpl_.reset(new Impl(param, grid, geo, props, polymer_props, rock_comp_props, eclipse_state, output_writer, deck, linsolver, gravity));
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}
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@@ -150,10 +158,9 @@ namespace Opm
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SimulatorReport SimulatorFullyImplicitCompressiblePolymer::run(SimulatorTimer& timer,
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PolymerBlackoilState& state,
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WellState& well_state)
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PolymerBlackoilState& state)
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{
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return pimpl_->run(timer, state, well_state);
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return pimpl_->run(timer, state);
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}
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@@ -165,27 +172,23 @@ namespace Opm
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const UnstructuredGrid& grid,
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const DerivedGeology& geo,
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const BlackoilPropsAdInterface& props,
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const PolymerPropsAd& polymer_props,
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const PolymerPropsAd& polymer_props,
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const RockCompressibility* rock_comp_props,
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WellsManager& wells_manager,
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PolymerInflowInterface& polymer_inflow,
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std::shared_ptr<EclipseState> eclipse_state,
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EclipseWriter& output_writer,
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Opm::DeckConstPtr& deck,
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NewtonIterationBlackoilInterface& linsolver,
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const double* gravity)
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: grid_(grid),
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props_(props),
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polymer_props_(polymer_props),
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rock_comp_props_(rock_comp_props),
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wells_manager_(wells_manager),
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wells_(wells_manager.c_wells()),
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polymer_inflow_(polymer_inflow),
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eclipse_state_(eclipse_state),
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output_writer_(output_writer),
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deck_(deck),
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linsolver_(linsolver),
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gravity_(gravity),
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geo_(geo),
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solver_(grid_, props_, geo_, rock_comp_props, polymer_props, *wells_manager.c_wells(), linsolver)
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/* param.getDefault("nl_pressure_residual_tolerance", 0.0),
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param.getDefault("nl_pressure_change_tolerance", 1.0),
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param.getDefault("nl_pressure_maxiter", 10),
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gravity, */
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geo_(geo)
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{
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// For output.
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output_ = param.getDefault("output", true);
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@@ -219,10 +222,9 @@ namespace Opm
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SimulatorReport SimulatorFullyImplicitCompressiblePolymer::Impl::run(SimulatorTimer& timer,
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PolymerBlackoilState& state,
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WellState& well_state)
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PolymerBlackoilState& state)
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{
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WellStateFullyImplicitBlackoil prev_well_state;
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// Initialisation.
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std::vector<double> porevol;
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if (rock_comp_props_ && rock_comp_props_->isActive()) {
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@@ -241,134 +243,146 @@ namespace Opm
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Opm::time::StopWatch step_timer;
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Opm::time::StopWatch total_timer;
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total_timer.start();
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double tot_injected[2] = { 0.0 };
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double tot_produced[2] = { 0.0 };
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Opm::Watercut watercut;
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watercut.push(0.0, 0.0, 0.0);
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std::string tstep_filename = output_dir_ + "/step_timing.txt";
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std::ofstream tstep_os(tstep_filename.c_str());
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//Main simulation loop.
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while (!timer.done()) {
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double tot_injected[2] = { 0.0 };
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double tot_produced[2] = { 0.0 };
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Opm::Watercut watercut;
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watercut.push(0.0, 0.0, 0.0);
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#if 0
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// These must be changed for three-phase.
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double init_surfvol[2] = { 0.0 };
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double inplace_surfvol[2] = { 0.0 };
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Opm::computeSaturatedVol(porevol, state.surfacevol(), init_surfvol);
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Opm::WellReport wellreport;
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#endif
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std::vector<double> fractional_flows;
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std::vector<double> well_resflows_phase;
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if (wells_) {
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well_resflows_phase.resize((wells_->number_of_phases)*(wells_->number_of_wells), 0.0);
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#if 0
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wellreport.push(props_, *wells_,
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state.pressure(), state.surfacevol(), state.saturation(),
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0.0, well_state.bhp(), well_state.perfRates());
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#endif
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}
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std::fstream tstep_os;
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if (output_) {
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std::string filename = output_dir_ + "/step_timing.param";
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tstep_os.open(filename.c_str(), std::fstream::out | std::fstream::app);
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}
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// Report timestep and (optionally) write state to disk.
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step_timer.start();
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timer.report(std::cout);
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if (output_ && (timer.currentStepNum() % output_interval_ == 0)) {
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if (output_vtk_) {
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outputStateVtk(grid_, state, timer.currentStepNum(), output_dir_);
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std::vector<double> fractional_flows;
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std::vector<double> well_resflows_phase;
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if (wells_) {
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well_resflows_phase.resize((wells_->number_of_phases)*(wells_->number_of_wells), 0.0);
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}
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outputStateMatlab(grid_, state, timer.currentStepNum(), output_dir_);
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}
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std::fstream tstep_os;
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if (output_) {
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std::string filename = output_dir_ + "/step_timing.param";
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tstep_os.open(filename.c_str(), std::fstream::out | std::fstream::app);
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}
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#endif
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// Report timestep and (optionally) write state to disk.
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SimulatorReport sreport;
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step_timer.start();
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timer.report(std::cout);
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bool well_control_passed = !check_well_controls_;
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int well_control_iteration = 0;
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do {
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WellsManager wells_manager(eclipse_state_,
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timer.currentStepNum(),
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Opm::UgGridHelpers::numCells(grid_),
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Opm::UgGridHelpers::globalCell(grid_),
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Opm::UgGridHelpers::cartDims(grid_),
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Opm::UgGridHelpers::dimensions(grid_),
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Opm::UgGridHelpers::beginCellCentroids(grid_),
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Opm::UgGridHelpers::cell2Faces(grid_),
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Opm::UgGridHelpers::beginFaceCentroids(grid_),
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props_.permeability());
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const Wells* wells = wells_manager.c_wells();
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WellStateFullyImplicitBlackoil well_state;
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well_state.init(wells, state.blackoilState());
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if (timer.currentStepNum() != 0) {
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// Transfer previous well state to current.
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well_state.partialCopy(prev_well_state, *wells, prev_well_state.numWells());
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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_, *wells, Opm::UgGridHelpers::numCells(grid_)));
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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(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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if (output_ && (timer.currentStepNum() % output_interval_ == 0)) {
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if (output_vtk_) {
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outputStateVtk(grid_, state, timer.currentStepNum(), output_dir_);
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}
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outputStateMatlab(grid_, state, timer.currentStepNum(), output_dir_);
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}
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if (output_) {
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if (timer.currentStepNum() == 0) {
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output_writer_.writeInit(timer);
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}
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output_writer_.writeTimeStep(timer, state.blackoilState(), well_state.basicWellState());
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}
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// Run solver.
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const double current_time = timer.simulationTimeElapsed();
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double stepsize = timer.currentStepLength();
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polymer_inflow_.getInflowValues(current_time, current_time + stepsize, polymer_inflow_c);
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solver_timer.start();
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std::vector<double> initial_pressure = state.pressure();
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solver_.step(timer.currentStepLength(), state, well_state, polymer_inflow_c, transport_src);
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FullyImplicitCompressiblePolymerSolver solver(grid_, props_, geo_, rock_comp_props_, polymer_props_, *wells_manager.c_wells(), linsolver_);
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solver.step(timer.currentStepLength(), state, well_state, polymer_inflow_c, transport_src);
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// Stop timer and report.
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solver_timer.stop();
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const double st = solver_timer.secsSinceStart();
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std::cout << "Fully implicit solver took: " << st << " seconds." << std::endl;
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stime += st;
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sreport.pressure_time = st;
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// Optionally, check if well controls are satisfied.
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if (check_well_controls_) {
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Opm::computePhaseFlowRatesPerWell(*wells_,
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well_state.perfRates(),
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fractional_flows,
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well_resflows_phase);
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std::cout << "Checking well conditions." << std::endl;
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// For testing we set surface := reservoir
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well_control_passed = wells_manager_.conditionsMet(well_state.bhp(), well_resflows_phase, well_resflows_phase);
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++well_control_iteration;
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if (!well_control_passed && well_control_iteration > max_well_control_iterations_) {
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OPM_THROW(std::runtime_error, "Could not satisfy well conditions in " << max_well_control_iterations_ << " tries.");
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}
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if (!well_control_passed) {
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std::cout << "Well controls not passed, solving again." << std::endl;
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} else {
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std::cout << "Well conditions met." << std::endl;
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}
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// Update pore volumes if rock is compressible.
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if (rock_comp_props_ && rock_comp_props_->isActive()) {
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initial_porevol = porevol;
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computePorevolume(grid_, props_.porosity(), *rock_comp_props_, state.pressure(), porevol);
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}
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} while (!well_control_passed);
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// Update pore volumes if rock is compressible.
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if (rock_comp_props_ && rock_comp_props_->isActive()) {
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initial_porevol = porevol;
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computePorevolume(grid_, props_.porosity(), *rock_comp_props_, state.pressure(), porevol);
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double injected[2] = { 0.0 };
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double produced[2] = { 0.0 };
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double polyinj = 0;
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double polyprod = 0;
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Opm::computeInjectedProduced(props_, polymer_props_,
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state,
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transport_src, polymer_inflow_c, timer.currentStepLength(),
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injected, produced,
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polyinj, polyprod);
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tot_injected[0] += injected[0];
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tot_injected[1] += injected[1];
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tot_produced[0] += produced[0];
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tot_produced[1] += produced[1];
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watercut.push(timer.simulationTimeElapsed() + timer.currentStepLength(),
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produced[0]/(produced[0] + produced[1]),
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tot_produced[0]/tot_porevol_init);
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std::cout.precision(5);
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const int width = 18;
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std::cout << "\nMass balance report.\n";
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std::cout << " Injected reservoir volumes: "
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<< std::setw(width) << injected[0]
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<< std::setw(width) << injected[1] << std::endl;
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std::cout << " Produced reservoir volumes: "
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<< std::setw(width) << produced[0]
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<< std::setw(width) << produced[1] << std::endl;
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std::cout << " Total inj reservoir volumes: "
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<< std::setw(width) << tot_injected[0]
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<< std::setw(width) << tot_injected[1] << std::endl;
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std::cout << " Total prod reservoir volumes: "
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<< std::setw(width) << tot_produced[0]
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<< std::setw(width) << tot_produced[1] << std::endl;
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if (output_) {
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SimulatorReport step_report;
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step_report.pressure_time = st;
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step_report.total_time = step_timer.secsSinceStart();
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step_report.reportParam(tstep_os);
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outputWaterCut(watercut, output_dir_);
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}
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++timer;
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prev_well_state = well_state;
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}
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double injected[2] = { 0.0 };
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double produced[2] = { 0.0 };
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double polyinj = 0;
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double polyprod = 0;
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Opm::computeInjectedProduced(props_, polymer_props_,
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state,
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transport_src, polymer_inflow_c, timer.currentStepLength(),
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injected, produced,
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polyinj, polyprod);
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tot_injected[0] += injected[0];
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tot_injected[1] += injected[1];
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tot_produced[0] += produced[0];
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tot_produced[1] += produced[1];
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watercut.push(timer.simulationTimeElapsed() + timer.currentStepLength(),
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produced[0]/(produced[0] + produced[1]),
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tot_produced[0]/tot_porevol_init);
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std::cout.precision(5);
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const int width = 18;
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std::cout << "\nMass balance report.\n";
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std::cout << " Injected reservoir volumes: "
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<< std::setw(width) << injected[0]
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<< std::setw(width) << injected[1] << std::endl;
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std::cout << " Produced reservoir volumes: "
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<< std::setw(width) << produced[0]
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<< std::setw(width) << produced[1] << std::endl;
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std::cout << " Total inj reservoir volumes: "
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<< std::setw(width) << tot_injected[0]
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<< std::setw(width) << tot_injected[1] << std::endl;
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std::cout << " Total prod reservoir volumes: "
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<< std::setw(width) << tot_produced[0]
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<< std::setw(width) << tot_produced[1] << std::endl;
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sreport.total_time = step_timer.secsSinceStart();
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// Write final simulation state.
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if (output_) {
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sreport.reportParam(tstep_os);
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if (output_vtk_) {
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outputStateVtk(grid_, state, timer.currentStepNum(), output_dir_);
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}
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outputStateMatlab(grid_, state, timer.currentStepNum(), output_dir_);
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outputWaterCut(watercut, output_dir_);
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tstep_os.close();
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output_writer_.writeTimeStep(timer, state.blackoilState(), prev_well_state.basicWellState());
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}
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total_timer.stop();
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SimulatorReport report;
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report.pressure_time = stime;
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report.transport_time = 0.0;
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@@ -18,11 +18,12 @@
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along with OPM. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef OPM_SIMULATORFULLYIMPLICITBLACKOIL_HEADER_INCLUDED
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#define OPM_SIMULATORFULLYIMPLICITBLACKOIL_HEADER_INCLUDED
|
||||
#ifndef OPM_SIMULATORFULLYIMPLICITCOMPRESSIBLEPOLYMER_HEADER_INCLUDED
|
||||
#define OPM_SIMULATORFULLYIMPLICITCOMPRESSIBLEPOLYMER_HEADER_INCLUDED
|
||||
|
||||
#include <boost/shared_ptr.hpp>
|
||||
#include <memory>
|
||||
#include <vector>
|
||||
#include <opm/parser/eclipse/Deck/Deck.hpp>
|
||||
|
||||
struct UnstructuredGrid;
|
||||
struct Wells;
|
||||
@@ -33,11 +34,13 @@ namespace Opm
|
||||
class BlackoilPropsAdInterface;
|
||||
class RockCompressibility;
|
||||
class DerivedGeology;
|
||||
class WellStateFullyImplicitBlackoil;
|
||||
class WellsManager;
|
||||
class EclipseWriter;
|
||||
class EclipseState;
|
||||
class NewtonIterationBlackoilInterface;
|
||||
class SimulatorTimer;
|
||||
class PolymerBlackoilState;
|
||||
class WellState;
|
||||
class PolymerPropsAd;
|
||||
class PolymerInflowInterface;
|
||||
struct SimulatorReport;
|
||||
@@ -66,8 +69,9 @@ namespace Opm
|
||||
/// \param[in] props fluid and rock properties
|
||||
/// \param[in] polymer_props polymer properties
|
||||
/// \param[in] rock_comp_props if non-null, rock compressibility properties
|
||||
/// \param[in] well_manager well manager, may manage no (null) wells
|
||||
/// \param[in] polymer_inflow polymer influx.
|
||||
/// \param[in] eclipse_state
|
||||
/// \param[in] eclipse_writer
|
||||
/// \param[in] deck
|
||||
/// \param[in] linsolver linear solver
|
||||
/// \param[in] gravity if non-null, gravity vector
|
||||
SimulatorFullyImplicitCompressiblePolymer(const parameter::ParameterGroup& param,
|
||||
@@ -76,8 +80,9 @@ namespace Opm
|
||||
const BlackoilPropsAdInterface& props,
|
||||
const PolymerPropsAd& polymer_props,
|
||||
const RockCompressibility* rock_comp_props,
|
||||
WellsManager& wells_manager,
|
||||
PolymerInflowInterface& polymer_inflow,
|
||||
std::shared_ptr<EclipseState> eclipse_state,
|
||||
EclipseWriter& eclipse_writer,
|
||||
Opm::DeckConstPtr& deck,
|
||||
NewtonIterationBlackoilInterface& linsolver,
|
||||
const double* gravity);
|
||||
|
||||
@@ -86,18 +91,16 @@ namespace Opm
|
||||
/// modify the reservoir and well states.
|
||||
/// \param[in,out] timer governs the requested reporting timesteps
|
||||
/// \param[in,out] state state of reservoir: pressure, fluxes
|
||||
/// \param[in,out] well_state state of wells: bhp, perforation rates
|
||||
/// \return simulation report, with timing data
|
||||
SimulatorReport run(SimulatorTimer& timer,
|
||||
PolymerBlackoilState& state,
|
||||
WellState& well_state);
|
||||
PolymerBlackoilState& state);
|
||||
|
||||
private:
|
||||
class Impl;
|
||||
// Using shared_ptr instead of scoped_ptr since scoped_ptr requires complete type for Impl.
|
||||
boost::shared_ptr<Impl> pimpl_;
|
||||
std::shared_ptr<Impl> pimpl_;
|
||||
};
|
||||
|
||||
} // namespace Opm
|
||||
|
||||
#endif // OPM_SIMULATORFULLYIMPLICITBLACKOIL_HEADER_INCLUDED
|
||||
#endif // OPM_SIMULATORFULLYIMPLICITCOMPRESSIBLEPOLYMER_HEADER_INCLUDED
|
||||
|
||||
Reference in New Issue
Block a user