mirror of
https://github.com/OPM/opm-simulators.git
synced 2025-02-25 18:55:30 -06:00
Merge remote-tracking branch 'opm/master' into fim
Conflicts: cmake/Modules/Findopm-autodiff.cmake
This commit is contained in:
@@ -35,9 +35,14 @@ namespace Opm
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public:
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void init(const UnstructuredGrid& g, int num_phases)
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{
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state_blackoil_.init(g, num_phases);
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concentration_.resize(g.number_of_cells, 0.0);
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cmax_.resize(g.number_of_cells, 0.0);
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this->init(g.number_of_cells, g.number_of_faces, num_phases);
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}
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void init(int number_of_cells, int number_of_faces, int num_phases)
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{
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state_blackoil_.init(number_of_cells, number_of_faces, num_phases);
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concentration_.resize(number_of_cells, 0.0);
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cmax_.resize(number_of_cells, 0.0);
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}
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int numPhases() const
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{
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@@ -18,8 +18,8 @@
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*/
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#include <opm/polymer/PolymerInflow.hpp>
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#include <opm/core/io/eclipse/EclipseGridParser.hpp>
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#include <opm/core/wells.h>
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#include <opm/parser/eclipse/Deck/Deck.hpp>
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#include <map>
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namespace Opm
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@@ -60,19 +60,19 @@ namespace Opm
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/// Constructor.
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/// @param[in] deck Input deck expected to contain WPOLYMER.
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PolymerInflowFromDeck::PolymerInflowFromDeck(const EclipseGridParser& deck,
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PolymerInflowFromDeck::PolymerInflowFromDeck(Opm::DeckConstPtr deck,
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const Wells& wells,
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const int num_cells)
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: sparse_inflow_(num_cells)
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{
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if (!deck.hasField("WPOLYMER")) {
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if (!deck->hasKeyword("WPOLYMER")) {
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OPM_MESSAGE("PolymerInflowFromDeck initialized without WPOLYMER in current epoch.");
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return;
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}
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// Extract concentrations and put into cell->concentration map.
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const std::vector<WpolymerLine>& wpl = deck.getWPOLYMER().wpolymer_;
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const int num_wpl = wpl.size();
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Opm::DeckKeywordConstPtr wpolymerKeyword = deck->getKeyword("WPOLYMER");
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const int num_wpl = wpolymerKeyword->size();
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std::map<int, double> perfcell_conc;
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for (int i = 0; i < num_wpl; ++i) {
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// Only use well name and polymer concentration.
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@@ -80,16 +80,19 @@ namespace Opm
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// names.
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int wix = 0;
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for (; wix < wells.number_of_wells; ++wix) {
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if (wpl[i].well_ == wells.name[wix]) {
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if (wpolymerKeyword->getRecord(i)->getItem("WELL")->getString(0) == wells.name[wix]) {
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break;
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}
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}
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if (wix == wells.number_of_wells) {
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OPM_THROW(std::runtime_error, "Could not find a match for well " << wpl[i].well_ << " from WPOLYMER.");
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OPM_THROW(std::runtime_error, "Could not find a match for well "
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<< wpolymerKeyword->getRecord(i)->getItem("WELL")->getString(0)
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<< " from WPOLYMER.");
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}
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for (int j = wells.well_connpos[wix]; j < wells.well_connpos[wix+1]; ++j) {
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const int perf_cell = wells.well_cells[j];
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perfcell_conc[perf_cell] = wpl[i].polymer_concentration_;
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perfcell_conc[perf_cell] =
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wpolymerKeyword->getRecord(i)->getItem("POLYMER_CONCENTRATION")->getSIDouble(0);
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}
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}
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@@ -21,17 +21,13 @@
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#define OPM_POLYMERINFLOW_HEADER_INCLUDED
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#include <opm/core/utility/SparseVector.hpp>
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#include <opm/parser/eclipse/Deck/Deck.hpp>
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#include <vector>
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struct Wells;
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namespace Opm
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{
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class EclipseGridParser;
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/// @brief Interface for classes encapsulating polymer inflow information.
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class PolymerInflowInterface
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{
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@@ -90,7 +86,7 @@ namespace Opm
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/// \param[in] deck Input deck expected to contain WPOLYMER.
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/// \param[in] wells Wells structure.
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/// \param[in] num_cells Number of cells in grid.
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PolymerInflowFromDeck(const EclipseGridParser& deck,
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PolymerInflowFromDeck(Opm::DeckConstPtr deck,
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const Wells& wells,
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const int num_cells);
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@@ -21,6 +21,8 @@
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#include <cmath>
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#include <vector>
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#include <opm/core/utility/linearInterpolation.hpp>
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#include <opm/core/utility/ErrorMacros.hpp>
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#include <opm/core/utility/Exceptions.hpp>
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namespace Opm
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{
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@@ -58,6 +60,25 @@ namespace Opm
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{
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return ads_index_;
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}
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const std::vector<double>&
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PolymerProperties::shearWaterVelocity() const
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{
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return water_vel_vals_;
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}
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double
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PolymerProperties::shearVrf(const double velocity) const
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{
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return Opm::linearInterpolation(water_vel_vals_, shear_vrf_vals_, velocity);
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}
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double
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PolymerProperties::shearVrfWithDer(const double velocity, double& der) const
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{
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der = Opm::linearInterpolationDerivative(water_vel_vals_, shear_vrf_vals_, velocity);
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return Opm::linearInterpolation(water_vel_vals_, shear_vrf_vals_, velocity);
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}
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double PolymerProperties::viscMult(double c) const
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{
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@@ -20,10 +20,11 @@
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#ifndef OPM_POLYMERPROPERTIES_HEADER_INCLUDED
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#define OPM_POLYMERPROPERTIES_HEADER_INCLUDED
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#include <opm/parser/eclipse/Deck/Deck.hpp>
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#include <opm/parser/eclipse/EclipseState/EclipseState.hpp>
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#include <cmath>
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#include <vector>
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#include <opm/core/io/eclipse/EclipseGridParser.hpp>
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namespace Opm
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@@ -49,6 +50,8 @@ namespace Opm
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/// \param[in] visc_mult_vals Array of effective vicosity multiplier
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/// \param[in] c_vals_ads Array of concentration for adsorption values
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/// \param[in] ads_vals Array of adsorption values
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/// \param[in] water_vel_vals_ Array of water phase velocity for shear
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/// \param[in] shear_vrf_vals_ Array of viscosity reduction factor
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PolymerProperties(double c_max,
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double mix_param,
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double rock_density,
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@@ -59,7 +62,9 @@ namespace Opm
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const std::vector<double>& c_vals_visc,
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const std::vector<double>& visc_mult_vals,
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const std::vector<double>& c_vals_ads,
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const std::vector<double>& ads_vals
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const std::vector<double>& ads_vals,
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const std::vector<double>& water_vel_vals,
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const std::vector<double>& shear_vrf_vals
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)
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: c_max_(c_max),
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mix_param_(mix_param),
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@@ -71,13 +76,15 @@ namespace Opm
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c_vals_visc_(c_vals_visc),
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visc_mult_vals_(visc_mult_vals),
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c_vals_ads_(c_vals_ads),
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ads_vals_(ads_vals)
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ads_vals_(ads_vals),
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water_vel_vals_(water_vel_vals),
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shear_vrf_vals_(shear_vrf_vals)
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{
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}
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PolymerProperties(const EclipseGridParser& gridparser)
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PolymerProperties(Opm::EclipseStateConstPtr eclipseState)
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{
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readFromDeck(gridparser);
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readFromDeck(eclipseState);
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}
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void set(double c_max,
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@@ -90,7 +97,9 @@ namespace Opm
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const std::vector<double>& c_vals_visc,
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const std::vector<double>& visc_mult_vals,
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const std::vector<double>& c_vals_ads,
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const std::vector<double>& ads_vals
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const std::vector<double>& ads_vals,
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const std::vector<double>& water_vel_vals,
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const std::vector<double>& shear_vrf_vals
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)
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{
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c_max_ = c_max;
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@@ -104,36 +113,52 @@ namespace Opm
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c_vals_ads_ = c_vals_ads;
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ads_vals_ = ads_vals;
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ads_index_ = ads_index;
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water_vel_vals_ = water_vel_vals;
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shear_vrf_vals_ = shear_vrf_vals;
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}
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void readFromDeck(const EclipseGridParser& gridparser)
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void readFromDeck(Opm::EclipseStateConstPtr eclipseState)
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{
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// We assume NTMISC=1
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const std::vector<double>& plymax = gridparser.getPLYMAX().plymax_;
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c_max_ = plymax[0];
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const std::vector<double>& tlmixpar = gridparser.getTLMIXPAR().tlmixpar_;
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mix_param_ = tlmixpar[0];
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const auto& plymaxTable = eclipseState->getPlymaxTables()[0];
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const auto& tlmixparTable = eclipseState->getTlmixparTables()[0];
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// We also assume that each table has exactly one row...
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assert(plymaxTable.numRows() == 1);
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assert(tlmixparTable.numRows() == 1);
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c_max_ = plymaxTable.getPolymerConcentrationColumn()[0];
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mix_param_ = tlmixparTable.getViscosityParameterColumn()[0];
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// We assume NTSFUN=1
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const std::vector<double>& plyrock = gridparser.getPLYROCK().plyrock_;
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assert(plyrock.size() == 5);
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dead_pore_vol_ = plyrock[0];
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res_factor_ = plyrock[1];
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rock_density_ = plyrock[2];
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ads_index_ = static_cast<AdsorptionBehaviour>(plyrock[3]);
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c_max_ads_ = plyrock[4];
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const auto& plyrockTable = eclipseState->getPlyrockTables()[0];
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// We also assume that each table has exactly one row...
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assert(plyrockTable.numRows() == 1);
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dead_pore_vol_ = plyrockTable.getDeadPoreVolumeColumn()[0];
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res_factor_ = plyrockTable.getResidualResistanceFactorColumn()[0];
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rock_density_ = plyrockTable.getRockDensityFactorColumn()[0];
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ads_index_ = static_cast<AdsorptionBehaviour>(plyrockTable.getAdsorbtionIndexColumn()[0]);
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c_max_ads_ = plyrockTable.getMaxAdsorbtionColumn()[0];
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// We assume NTPVT=1
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const PLYVISC& plyvisc = gridparser.getPLYVISC();
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c_vals_visc_ = plyvisc.concentration_;
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visc_mult_vals_ = plyvisc.factor_;
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const auto& plyviscTable = eclipseState->getPlyviscTables()[0];
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// We also assume that each table has exactly one row...
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assert(plyviscTable.numRows() == 1);
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c_vals_visc_[0] = plyviscTable.getPolymerConcentrationColumn()[0];
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visc_mult_vals_[0] = plyviscTable.getViscosityMultiplierColumn()[0];
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// We assume NTSFUN=1
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const PLYADS& plyads = gridparser.getPLYADS();
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c_vals_ads_ = plyads.local_concentration_;
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ads_vals_ = plyads.adsorbed_concentration_;
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const auto& plyadsTable = eclipseState->getPlyadsTables()[0];
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// We also assume that each table has exactly one row...
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assert(plyadsTable.numRows() == 1);
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c_vals_ads_[0] = plyadsTable.getPolymerConcentrationColumn()[0];
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ads_vals_[0] = plyadsTable.getAdsorbedPolymerColumn()[0];
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}
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double cMax() const;
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@@ -149,6 +174,12 @@ namespace Opm
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double cMaxAds() const;
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int adsIndex() const;
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const std::vector<double>& shearWaterVelocity() const;
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double shearVrf(const double velocity) const;
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double shearVrfWithDer(const double velocity, double& der) const;
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double viscMult(double c) const;
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@@ -259,6 +290,8 @@ namespace Opm
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std::vector<double> visc_mult_vals_;
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std::vector<double> c_vals_ads_;
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std::vector<double> ads_vals_;
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std::vector<double> water_vel_vals_;
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std::vector<double> shear_vrf_vals_;
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void simpleAdsorptionBoth(double c, double& c_ads,
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double& dc_ads_dc, bool if_with_der) const;
|
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void adsorptionBoth(double c, double cmax,
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|
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@@ -34,9 +34,14 @@ namespace Opm
|
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public:
|
||||
void init(const UnstructuredGrid& g, int num_phases)
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{
|
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state2p_.init(g, num_phases);
|
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concentration_.resize(g.number_of_cells, 0.0);
|
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cmax_.resize(g.number_of_cells, 0.0);
|
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this->init(g.number_of_cells, g.number_of_faces, num_phases);
|
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}
|
||||
|
||||
void init(int number_of_cells, int number_of_faces, int num_phases)
|
||||
{
|
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state2p_.init(number_of_cells, number_of_faces, num_phases);
|
||||
concentration_.resize(number_of_cells, 0.0);
|
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cmax_.resize(number_of_cells, 0.0);
|
||||
}
|
||||
|
||||
enum ExtremalSat { MinSat = TwophaseState::MinSat, MaxSat = TwophaseState::MaxSat };
|
||||
|
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@@ -126,8 +126,6 @@ namespace Opm
|
||||
WellsManager& wells_manager_;
|
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const Wells* wells_;
|
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const PolymerInflowInterface& polymer_inflow_;
|
||||
const std::vector<double>& src_;
|
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const FlowBoundaryConditions* bcs_;
|
||||
const double* gravity_;
|
||||
// Solvers
|
||||
CompressibleTpfaPolymer psolver_;
|
||||
@@ -190,8 +188,6 @@ namespace Opm
|
||||
wells_manager_(wells_manager),
|
||||
wells_(wells_manager.c_wells()),
|
||||
polymer_inflow_(polymer_inflow),
|
||||
src_(src),
|
||||
bcs_(bcs),
|
||||
gravity_(gravity),
|
||||
psolver_(grid, props, rock_comp_props, poly_props, linsolver,
|
||||
param.getDefault("nl_pressure_residual_tolerance", 0.0),
|
||||
@@ -388,7 +384,7 @@ namespace Opm
|
||||
Opm::computeTransportSource(props_, wells_, well_state, transport_src);
|
||||
|
||||
// Find inflow rate.
|
||||
const double current_time = timer.currentTime();
|
||||
const double current_time = timer.simulationTimeElapsed();
|
||||
double stepsize = timer.currentStepLength();
|
||||
polymer_inflow_.getInflowValues(current_time, current_time + stepsize, polymer_inflow_c);
|
||||
|
||||
@@ -488,12 +484,12 @@ namespace Opm
|
||||
<< std::endl;
|
||||
std::cout.precision(8);
|
||||
|
||||
watercut.push(timer.currentTime() + timer.currentStepLength(),
|
||||
watercut.push(timer.simulationTimeElapsed() + timer.currentStepLength(),
|
||||
produced[0]/(produced[0] + produced[1]),
|
||||
tot_produced[0]/tot_porevol_init);
|
||||
if (wells_) {
|
||||
wellreport.push(props_, *wells_, state.pressure(), state.surfacevol(),
|
||||
state.saturation(), timer.currentTime() + timer.currentStepLength(),
|
||||
state.saturation(), timer.simulationTimeElapsed() + timer.currentStepLength(),
|
||||
well_state.bhp(), well_state.perfRates());
|
||||
}
|
||||
}
|
||||
|
||||
@@ -39,7 +39,7 @@ namespace Opm
|
||||
class SimulatorTimer;
|
||||
class PolymerBlackoilState;
|
||||
class WellState;
|
||||
class SimulatorReport;
|
||||
struct SimulatorReport;
|
||||
|
||||
/// Class collecting all necessary components for a two-phase simulation.
|
||||
class SimulatorCompressiblePolymer
|
||||
|
||||
@@ -140,7 +140,6 @@ namespace Opm
|
||||
const PolymerInflowInterface& polymer_inflow_;
|
||||
const std::vector<double>& src_;
|
||||
const FlowBoundaryConditions* bcs_;
|
||||
const double* gravity_;
|
||||
// Solvers
|
||||
IncompTpfaPolymer psolver_;
|
||||
TransportSolverTwophasePolymer tsolver_;
|
||||
@@ -204,7 +203,6 @@ namespace Opm
|
||||
polymer_inflow_(polymer_inflow),
|
||||
src_(src),
|
||||
bcs_(bcs),
|
||||
gravity_(gravity),
|
||||
psolver_(grid, props, rock_comp_props, poly_props, linsolver,
|
||||
param.getDefault("nl_pressure_residual_tolerance", 0.0),
|
||||
param.getDefault("nl_pressure_change_tolerance", 1.0),
|
||||
@@ -411,7 +409,7 @@ namespace Opm
|
||||
wells_, well_state.perfRates(), transport_src);
|
||||
|
||||
// Find inflow rate.
|
||||
const double current_time = timer.currentTime();
|
||||
const double current_time = timer.simulationTimeElapsed();
|
||||
double stepsize = timer.currentStepLength();
|
||||
polymer_inflow_.getInflowValues(current_time, current_time + stepsize, polymer_inflow_c);
|
||||
|
||||
@@ -498,12 +496,12 @@ namespace Opm
|
||||
<< std::endl;
|
||||
std::cout.precision(8);
|
||||
|
||||
watercut.push(timer.currentTime() + timer.currentStepLength(),
|
||||
watercut.push(timer.simulationTimeElapsed() + timer.currentStepLength(),
|
||||
produced[0]/(produced[0] + produced[1]),
|
||||
tot_produced[0]/tot_porevol_init);
|
||||
if (wells_) {
|
||||
wellreport.push(props_, *wells_, state.saturation(),
|
||||
timer.currentTime() + timer.currentStepLength(),
|
||||
timer.simulationTimeElapsed() + timer.currentStepLength(),
|
||||
well_state.bhp(), well_state.perfRates());
|
||||
}
|
||||
}
|
||||
@@ -621,7 +619,7 @@ namespace Opm
|
||||
Opm::estimateCellVelocity(grid, state.faceflux(), cell_velocity);
|
||||
dm["velocity"] = &cell_velocity;
|
||||
|
||||
writeECLData(grid, dm, simtimer.currentStepNum(), simtimer.currentTime(), simtimer.currentDateTime(),
|
||||
writeECLData(grid, dm, simtimer.currentStepNum(), simtimer.simulationTimeElapsed(), simtimer.currentDateTime(),
|
||||
output_dir, "polymer_ecl");
|
||||
#else
|
||||
OPM_THROW(std::runtime_error, "Cannot call outputStateBinary() without ert library support. Reconfigure with --with-ert and recompile.");
|
||||
|
||||
@@ -39,7 +39,7 @@ namespace Opm
|
||||
class SimulatorTimer;
|
||||
class PolymerState;
|
||||
class WellState;
|
||||
class SimulatorReport;
|
||||
struct SimulatorReport;
|
||||
|
||||
/// Class collecting all necessary components for a two-phase simulation.
|
||||
class SimulatorPolymer
|
||||
|
||||
@@ -1259,7 +1259,7 @@ namespace Opm
|
||||
assert(np == 2);
|
||||
const int dim = grid_.dimensions;
|
||||
density_.resize(nc*np);
|
||||
props_.density(grid_.number_of_cells, &A_[0], &density_[0]);
|
||||
props_.density(grid_.number_of_cells, &A_[0], grid_.global_cell, &density_[0]);
|
||||
std::fill(gravflux_.begin(), gravflux_.end(), 0.0);
|
||||
for (int f = 0; f < nf; ++f) {
|
||||
const int* c = &grid_.face_cells[2*f];
|
||||
|
||||
@@ -929,7 +929,7 @@ namespace Opm
|
||||
tmp_x[1]=x[1];
|
||||
}
|
||||
res_eq.computeJacobiRes(tmp_x, dres_s_dsdc, dres_c_dsdc);
|
||||
double dFx_dx,dFx_dy,dFy_dx,dFy_dy;
|
||||
double dFx_dx(0),dFx_dy(0),dFy_dx(0),dFy_dy(0);
|
||||
double det = dFx_dx*dFy_dy - dFy_dx*dFx_dy;
|
||||
if(use_sc){
|
||||
dFx_dx=(dres_s_dsdc[0]-tmp_x[1]*dres_s_dsdc[1]/tmp_x[0]);
|
||||
|
||||
Reference in New Issue
Block a user