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https://github.com/OPM/opm-simulators.git
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adding WellModel as template class for BlackoilModelBase
the compilation and running of flow are recovered. Conflicts: opm/autodiff/BlackoilModelBase_impl.hpp
This commit is contained in:
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@ -26,6 +26,7 @@
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#include <opm/autodiff/BlackoilModelBase.hpp>
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#include <opm/core/simulator/BlackoilState.hpp>
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#include <opm/autodiff/WellStateFullyImplicitBlackoil.hpp>
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#include <opm/autodiff/StandardWells.hpp>
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#include <opm/autodiff/BlackoilModelParameters.hpp>
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namespace Opm {
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@ -40,10 +41,10 @@ namespace Opm {
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/// It uses automatic differentiation via the class AutoDiffBlock
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/// to simplify assembly of the jacobian matrix.
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template<class Grid>
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class BlackoilModel : public BlackoilModelBase<Grid, BlackoilModel<Grid> >
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class BlackoilModel : public BlackoilModelBase<Grid, BlackoilModel<Grid>, StandardWells>
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{
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public:
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typedef BlackoilModelBase<Grid, BlackoilModel<Grid> > Base;
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typedef BlackoilModelBase<Grid, BlackoilModel<Grid>, StandardWells> Base;
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/// Construct the model. It will retain references to the
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/// arguments of this functions, and they are expected to
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@ -32,7 +32,6 @@
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#include <opm/autodiff/NewtonIterationBlackoilInterface.hpp>
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#include <opm/autodiff/BlackoilModelEnums.hpp>
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#include <opm/autodiff/VFPProperties.hpp>
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#include <opm/autodiff/StandardWells.hpp>
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#include <opm/parser/eclipse/EclipseState/Grid/NNC.hpp>
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#include <array>
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@ -106,7 +105,7 @@ namespace Opm {
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/// to simplify assembly of the jacobian matrix.
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/// \tparam Grid UnstructuredGrid or CpGrid.
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/// \tparam Implementation Provides concrete state types.
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template<class Grid, class Implementation>
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template<class Grid, class Implementation, class WellModel>
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class BlackoilModelBase
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{
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public:
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@ -276,7 +275,7 @@ namespace Opm {
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const BlackoilPropsAdInterface& fluid_;
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const DerivedGeology& geo_;
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const RockCompressibility* rock_comp_props_;
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StandardWells std_wells_;
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WellModel std_wells_;
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VFPProperties vfp_properties_;
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const NewtonIterationBlackoilInterface& linsolver_;
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// For each canonical phase -> true if active
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@ -328,11 +327,11 @@ namespace Opm {
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return static_cast<const Implementation&>(*this);
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}
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/// return the StandardWells object
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StandardWells& stdWells() { return std_wells_; }
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const StandardWells& stdWells() const { return std_wells_; }
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/// return the WellModel object
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WellModel& stdWells() { return std_wells_; }
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const WellModel& stdWells() const { return std_wells_; }
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/// return the Well struct in the StandardWells
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/// return the Well struct in the WellModel
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const Wells& wells() const { return std_wells_.wells(); }
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/// return true if wells are available in the reservoir
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@ -143,8 +143,8 @@ namespace detail {
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} // namespace detail
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template <class Grid, class Implementation>
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BlackoilModelBase<Grid, Implementation>::
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template <class Grid, class Implementation, class WellModel>
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BlackoilModelBase<Grid, Implementation, WellModel>::
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BlackoilModelBase(const ModelParameters& param,
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const Grid& grid ,
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const BlackoilPropsAdInterface& fluid,
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@ -217,9 +217,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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prepareStep(const double dt,
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ReservoirState& reservoir_state,
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WellState& /* well_state */)
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@ -234,10 +234,10 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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template <class NonlinearSolverType>
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IterationReport
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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nonlinearIteration(const int iteration,
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const double dt,
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NonlinearSolverType& nonlinear_solver,
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@ -289,9 +289,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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afterStep(const double /* dt */,
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ReservoirState& /* reservoir_state */,
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WellState& /* well_state */)
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@ -303,9 +303,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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int
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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sizeNonLinear() const
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{
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return residual_.sizeNonLinear();
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@ -315,9 +315,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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int
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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linearIterationsLastSolve() const
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{
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return linsolver_.iterations();
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@ -327,9 +327,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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bool
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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terminalOutputEnabled() const
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{
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return terminal_output_;
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@ -339,9 +339,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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int
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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numPhases() const
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{
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return fluid_.numPhases();
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@ -351,9 +351,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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int
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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numMaterials() const
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{
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return material_name_.size();
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@ -363,9 +363,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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const std::string&
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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materialName(int material_index) const
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{
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assert(material_index < numMaterials());
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@ -376,9 +376,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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setThresholdPressures(const std::vector<double>& threshold_pressures)
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{
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const int num_faces = AutoDiffGrid::numFaces(grid_);
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@ -407,8 +407,9 @@ namespace detail {
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template <class Grid, class Implementation>
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BlackoilModelBase<Grid, Implementation>::ReservoirResidualQuant::ReservoirResidualQuant()
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template <class Grid, class Implementation, class WellModel>
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BlackoilModelBase<Grid, Implementation, WellModel>::
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ReservoirResidualQuant::ReservoirResidualQuant()
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: accum(2, ADB::null())
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, mflux( ADB::null())
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, b ( ADB::null())
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@ -421,9 +422,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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int
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BlackoilModelBase<Grid, Implementation>::numWellVars() const
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BlackoilModelBase<Grid, Implementation, WellModel>::numWellVars() const
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{
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// For each well, we have a bhp variable, and one flux per phase.
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const int nw = stdWells().localWellsActive() ? wells().number_of_wells : 0;
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@ -434,9 +435,10 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::makeConstantState(SolutionState& state) const
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BlackoilModelBase<Grid, Implementation, WellModel>::
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makeConstantState(SolutionState& state) const
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{
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// HACK: throw away the derivatives. this may not be the most
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// performant way to do things, but it will make the state
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@ -463,10 +465,11 @@ namespace detail {
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template <class Grid, class Implementation>
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typename BlackoilModelBase<Grid, Implementation>::SolutionState
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BlackoilModelBase<Grid, Implementation>::variableState(const ReservoirState& x,
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const WellState& xw) const
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template <class Grid, class Implementation, class WellModel>
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typename BlackoilModelBase<Grid, Implementation, WellModel>::SolutionState
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BlackoilModelBase<Grid, Implementation, WellModel>::
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variableState(const ReservoirState& x,
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const WellState& xw) const
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{
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std::vector<V> vars0 = asImpl().variableStateInitials(x, xw);
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std::vector<ADB> vars = ADB::variables(vars0);
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@ -477,10 +480,11 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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std::vector<V>
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BlackoilModelBase<Grid, Implementation>::variableStateInitials(const ReservoirState& x,
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const WellState& xw) const
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BlackoilModelBase<Grid, Implementation, WellModel>::
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variableStateInitials(const ReservoirState& x,
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const WellState& xw) const
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{
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assert(active_[ Oil ]);
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@ -499,9 +503,10 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::variableReservoirStateInitials(const ReservoirState& x, std::vector<V>& vars0) const
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BlackoilModelBase<Grid, Implementation, WellModel>::
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variableReservoirStateInitials(const ReservoirState& x, std::vector<V>& vars0) const
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{
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using namespace Opm::AutoDiffGrid;
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const int nc = numCells(grid_);
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@ -537,9 +542,10 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::variableWellStateInitials(const WellState& xw, std::vector<V>& vars0) const
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BlackoilModelBase<Grid, Implementation, WellModel>::
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variableWellStateInitials(const WellState& xw, std::vector<V>& vars0) const
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{
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// Initial well rates.
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if ( stdWells().localWellsActive() )
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@ -571,9 +577,10 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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std::vector<int>
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BlackoilModelBase<Grid, Implementation>::variableStateIndices() const
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BlackoilModelBase<Grid, Implementation, WellModel>::
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variableStateIndices() const
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{
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assert(active_[Oil]);
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std::vector<int> indices(5, -1);
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@ -594,9 +601,10 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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std::vector<int>
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BlackoilModelBase<Grid, Implementation>::variableWellStateIndices() const
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BlackoilModelBase<Grid, Implementation, WellModel>::
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variableWellStateIndices() const
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{
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// Black oil model standard is 5 equation.
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// For the pure well solve, only the well equations are picked.
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@ -612,11 +620,12 @@ namespace detail {
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template <class Grid, class Implementation>
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typename BlackoilModelBase<Grid, Implementation>::SolutionState
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BlackoilModelBase<Grid, Implementation>::variableStateExtractVars(const ReservoirState& x,
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const std::vector<int>& indices,
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std::vector<ADB>& vars) const
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template <class Grid, class Implementation, class WellModel>
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typename BlackoilModelBase<Grid, Implementation, WellModel>::SolutionState
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BlackoilModelBase<Grid, Implementation, WellModel>::
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variableStateExtractVars(const ReservoirState& x,
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const std::vector<int>& indices,
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std::vector<ADB>& vars) const
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{
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//using namespace Opm::AutoDiffGrid;
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const int nc = Opm::AutoDiffGrid::numCells(grid_);
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@ -684,11 +693,12 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::variableStateExtractWellsVars(const std::vector<int>& indices,
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std::vector<ADB>& vars,
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SolutionState& state) const
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BlackoilModelBase<Grid, Implementation, WellModel>::
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variableStateExtractWellsVars(const std::vector<int>& indices,
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std::vector<ADB>& vars,
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SolutionState& state) const
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{
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// Qs.
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state.qs = std::move(vars[indices[Qs]]);
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@ -701,10 +711,11 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::computeAccum(const SolutionState& state,
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const int aix )
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BlackoilModelBase<Grid, Implementation, WellModel>::
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computeAccum(const SolutionState& state,
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const int aix )
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{
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const Opm::PhaseUsage& pu = fluid_.phaseUsage();
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@ -763,9 +774,10 @@ namespace detail {
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template <class Grid, class Implementation>
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void BlackoilModelBase<Grid, Implementation>::computeWellConnectionPressures(const SolutionState& state,
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const WellState& xw)
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template <class Grid, class Implementation, class WellModel>
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void BlackoilModelBase<Grid, Implementation, WellModel>::
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computeWellConnectionPressures(const SolutionState& state,
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const WellState& xw)
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{
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if( ! localWellsActive() ) return ;
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@ -780,8 +792,8 @@ namespace detail {
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asImpl().stdWells().computePropertiesForWellConnectionPressures(state, xw, fluid_, active_, phaseCondition_, b_perf, rsmax_perf, rvmax_perf, surf_dens_perf);
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// Extract well connection depths.
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const StandardWells::Vector depth = cellCentroidsZToEigen(grid_);
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const StandardWells::Vector pdepth = subset(depth, asImpl().stdWells().wellOps().well_cells);
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const typename WellModel::Vector depth = cellCentroidsZToEigen(grid_);
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const typename WellModel::Vector pdepth = subset(depth, asImpl().stdWells().wellOps().well_cells);
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const int nperf = wells().well_connpos[wells().number_of_wells];
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const std::vector<double> depth_perf(pdepth.data(), pdepth.data() + nperf);
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@ -796,9 +808,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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assemble(const ReservoirState& reservoir_state,
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WellState& well_state,
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const bool initial_assembly)
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@ -874,9 +886,9 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::
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BlackoilModelBase<Grid, Implementation, WellModel>::
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assembleMassBalanceEq(const SolutionState& state)
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{
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// Compute b_p and the accumulation term b_p*s_p for each phase,
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@ -942,9 +954,10 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::updateEquationsScaling() {
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BlackoilModelBase<Grid, Implementation, WellModel>::
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updateEquationsScaling() {
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ADB::V B;
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const Opm::PhaseUsage& pu = fluid_.phaseUsage();
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for ( int idx=0; idx<MaxNumPhases; ++idx )
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@ -975,11 +988,12 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::addWellContributionToMassBalanceEq(const std::vector<ADB>& cq_s,
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const SolutionState&,
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const WellState&)
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BlackoilModelBase<Grid, Implementation, WellModel>::
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addWellContributionToMassBalanceEq(const std::vector<ADB>& cq_s,
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const SolutionState&,
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const WellState&)
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{
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if ( !asImpl().localWellsActive() )
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{
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@ -1001,11 +1015,12 @@ namespace detail {
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template <class Grid, class Implementation>
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation>::extractWellPerfProperties(const SolutionState&,
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std::vector<ADB>& mob_perfcells,
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std::vector<ADB>& b_perfcells) const
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BlackoilModelBase<Grid, Implementation, WellModel>::
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extractWellPerfProperties(const SolutionState&,
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std::vector<ADB>& mob_perfcells,
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std::vector<ADB>& b_perfcells) const
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{
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// If we have wells, extract the mobilities and b-factors for
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// the well-perforated cells.
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@ -1029,9 +1044,11 @@ namespace detail {
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template <class Grid, class Implementation>
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void BlackoilModelBase<Grid, Implementation>::addWellFluxEq(const std::vector<ADB>& cq_s,
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const SolutionState& state)
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template <class Grid, class Implementation, class WellModel>
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void
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BlackoilModelBase<Grid, Implementation, WellModel>::
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addWellFluxEq(const std::vector<ADB>& cq_s,
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const SolutionState& state)
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{
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if( !asImpl().localWellsActive() )
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{
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||||
@ -1055,8 +1072,9 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
bool BlackoilModelBase<Grid, Implementation>::isVFPActive() const
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
bool BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
isVFPActive() const
|
||||
{
|
||||
if( ! localWellsActive() ) {
|
||||
return false;
|
||||
@ -1089,11 +1107,12 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
bool BlackoilModelBase<Grid, Implementation>::solveWellEq(const std::vector<ADB>& mob_perfcells,
|
||||
const std::vector<ADB>& b_perfcells,
|
||||
SolutionState& state,
|
||||
WellState& well_state)
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
bool BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
solveWellEq(const std::vector<ADB>& mob_perfcells,
|
||||
const std::vector<ADB>& b_perfcells,
|
||||
SolutionState& state,
|
||||
WellState& well_state)
|
||||
{
|
||||
V aliveWells;
|
||||
const int np = wells().number_of_phases;
|
||||
@ -1196,10 +1215,11 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
void BlackoilModelBase<Grid, Implementation>::addWellControlEq(const SolutionState& state,
|
||||
const WellState& xw,
|
||||
const V& aliveWells)
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
void BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
addWellControlEq(const SolutionState& state,
|
||||
const WellState& xw,
|
||||
const V& aliveWells)
|
||||
{
|
||||
if( ! localWellsActive() ) return;
|
||||
|
||||
@ -1362,8 +1382,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
V BlackoilModelBase<Grid, Implementation>::solveJacobianSystem() const
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
V
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
solveJacobianSystem() const
|
||||
{
|
||||
return linsolver_.computeNewtonIncrement(residual_);
|
||||
}
|
||||
@ -1473,10 +1495,12 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
void BlackoilModelBase<Grid, Implementation>::updateState(const V& dx,
|
||||
ReservoirState& reservoir_state,
|
||||
WellState& well_state)
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
void
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
updateState(const V& dx,
|
||||
ReservoirState& reservoir_state,
|
||||
WellState& well_state)
|
||||
{
|
||||
using namespace Opm::AutoDiffGrid;
|
||||
const int np = fluid_.numPhases();
|
||||
@ -1800,9 +1824,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
std::vector<ADB>
|
||||
BlackoilModelBase<Grid, Implementation>::computeRelPerm(const SolutionState& state) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
computeRelPerm(const SolutionState& state) const
|
||||
{
|
||||
using namespace Opm::AutoDiffGrid;
|
||||
const int nc = numCells(grid_);
|
||||
@ -1829,9 +1854,9 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
std::vector<ADB>
|
||||
BlackoilModelBase<Grid, Implementation>::
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
computePressures(const ADB& po,
|
||||
const ADB& sw,
|
||||
const ADB& so,
|
||||
@ -1866,12 +1891,13 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
V
|
||||
BlackoilModelBase<Grid, Implementation>::computeGasPressure(const V& po,
|
||||
const V& sw,
|
||||
const V& so,
|
||||
const V& sg) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
computeGasPressure(const V& po,
|
||||
const V& sw,
|
||||
const V& so,
|
||||
const V& sg) const
|
||||
{
|
||||
assert (active_[Gas]);
|
||||
std::vector<ADB> cp = fluid_.capPress(ADB::constant(sw),
|
||||
@ -1883,15 +1909,16 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
void
|
||||
BlackoilModelBase<Grid, Implementation>::computeMassFlux(const int actph ,
|
||||
const V& transi,
|
||||
const ADB& kr ,
|
||||
const ADB& mu ,
|
||||
const ADB& rho ,
|
||||
const ADB& phasePressure,
|
||||
const SolutionState& state)
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
computeMassFlux(const int actph ,
|
||||
const V& transi,
|
||||
const ADB& kr ,
|
||||
const ADB& mu ,
|
||||
const ADB& rho ,
|
||||
const ADB& phasePressure,
|
||||
const SolutionState& state)
|
||||
{
|
||||
// Compute and store mobilities.
|
||||
const ADB tr_mult = transMult(state.pressure);
|
||||
@ -1916,9 +1943,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
void
|
||||
BlackoilModelBase<Grid, Implementation>::applyThresholdPressures(ADB& dp)
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
applyThresholdPressures(ADB& dp)
|
||||
{
|
||||
// We support reversible threshold pressures only.
|
||||
// Method: if the potential difference is lower (in absolute
|
||||
@ -1948,9 +1976,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
std::vector<double>
|
||||
BlackoilModelBase<Grid, Implementation>::computeResidualNorms() const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
computeResidualNorms() const
|
||||
{
|
||||
std::vector<double> residualNorms;
|
||||
|
||||
@ -1988,9 +2017,9 @@ namespace detail {
|
||||
}
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
double
|
||||
BlackoilModelBase<Grid, Implementation>::
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
relativeChange(const SimulationDataContainer& previous,
|
||||
const SimulationDataContainer& current ) const
|
||||
{
|
||||
@ -2029,16 +2058,17 @@ namespace detail {
|
||||
}
|
||||
}
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
double
|
||||
BlackoilModelBase<Grid, Implementation>::convergenceReduction(const Eigen::Array<double, Eigen::Dynamic, Eigen::Dynamic>& B,
|
||||
const Eigen::Array<double, Eigen::Dynamic, Eigen::Dynamic>& tempV,
|
||||
const Eigen::Array<double, Eigen::Dynamic, Eigen::Dynamic>& R,
|
||||
std::vector<double>& R_sum,
|
||||
std::vector<double>& maxCoeff,
|
||||
std::vector<double>& B_avg,
|
||||
std::vector<double>& maxNormWell,
|
||||
int nc) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
convergenceReduction(const Eigen::Array<double, Eigen::Dynamic, Eigen::Dynamic>& B,
|
||||
const Eigen::Array<double, Eigen::Dynamic, Eigen::Dynamic>& tempV,
|
||||
const Eigen::Array<double, Eigen::Dynamic, Eigen::Dynamic>& R,
|
||||
std::vector<double>& R_sum,
|
||||
std::vector<double>& maxCoeff,
|
||||
std::vector<double>& B_avg,
|
||||
std::vector<double>& maxNormWell,
|
||||
int nc) const
|
||||
{
|
||||
const int np = asImpl().numPhases();
|
||||
const int nm = asImpl().numMaterials();
|
||||
@ -2115,9 +2145,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
bool
|
||||
BlackoilModelBase<Grid, Implementation>::getConvergence(const double dt, const int iteration)
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
getConvergence(const double dt, const int iteration)
|
||||
{
|
||||
const double tol_mb = param_.tolerance_mb_;
|
||||
const double tol_cnv = param_.tolerance_cnv_;
|
||||
@ -2239,9 +2270,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
bool
|
||||
BlackoilModelBase<Grid, Implementation>::getWellConvergence(const int iteration)
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
getWellConvergence(const int iteration)
|
||||
{
|
||||
const double tol_wells = param_.tolerance_wells_;
|
||||
|
||||
@ -2318,14 +2350,15 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
ADB
|
||||
BlackoilModelBase<Grid, Implementation>::fluidViscosity(const int phase,
|
||||
const ADB& p ,
|
||||
const ADB& temp ,
|
||||
const ADB& rs ,
|
||||
const ADB& rv ,
|
||||
const std::vector<PhasePresence>& cond) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
fluidViscosity(const int phase,
|
||||
const ADB& p ,
|
||||
const ADB& temp ,
|
||||
const ADB& rs ,
|
||||
const ADB& rv ,
|
||||
const std::vector<PhasePresence>& cond) const
|
||||
{
|
||||
switch (phase) {
|
||||
case Water:
|
||||
@ -2343,14 +2376,15 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
ADB
|
||||
BlackoilModelBase<Grid, Implementation>::fluidReciprocFVF(const int phase,
|
||||
const ADB& p ,
|
||||
const ADB& temp ,
|
||||
const ADB& rs ,
|
||||
const ADB& rv ,
|
||||
const std::vector<PhasePresence>& cond) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
fluidReciprocFVF(const int phase,
|
||||
const ADB& p ,
|
||||
const ADB& temp ,
|
||||
const ADB& rs ,
|
||||
const ADB& rv ,
|
||||
const std::vector<PhasePresence>& cond) const
|
||||
{
|
||||
switch (phase) {
|
||||
case Water:
|
||||
@ -2368,12 +2402,13 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
ADB
|
||||
BlackoilModelBase<Grid, Implementation>::fluidDensity(const int phase,
|
||||
const ADB& b,
|
||||
const ADB& rs,
|
||||
const ADB& rv) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
fluidDensity(const int phase,
|
||||
const ADB& b,
|
||||
const ADB& rs,
|
||||
const ADB& rv) const
|
||||
{
|
||||
const V& rhos = fluid_.surfaceDensity(phase, cells_);
|
||||
const Opm::PhaseUsage& pu = fluid_.phaseUsage();
|
||||
@ -2391,11 +2426,12 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
V
|
||||
BlackoilModelBase<Grid, Implementation>::fluidRsSat(const V& p,
|
||||
const V& satOil,
|
||||
const std::vector<int>& cells) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
fluidRsSat(const V& p,
|
||||
const V& satOil,
|
||||
const std::vector<int>& cells) const
|
||||
{
|
||||
return fluid_.rsSat(ADB::constant(p), ADB::constant(satOil), cells).value();
|
||||
}
|
||||
@ -2404,11 +2440,12 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
ADB
|
||||
BlackoilModelBase<Grid, Implementation>::fluidRsSat(const ADB& p,
|
||||
const ADB& satOil,
|
||||
const std::vector<int>& cells) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
fluidRsSat(const ADB& p,
|
||||
const ADB& satOil,
|
||||
const std::vector<int>& cells) const
|
||||
{
|
||||
return fluid_.rsSat(p, satOil, cells);
|
||||
}
|
||||
@ -2417,11 +2454,12 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
V
|
||||
BlackoilModelBase<Grid, Implementation>::fluidRvSat(const V& p,
|
||||
const V& satOil,
|
||||
const std::vector<int>& cells) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
fluidRvSat(const V& p,
|
||||
const V& satOil,
|
||||
const std::vector<int>& cells) const
|
||||
{
|
||||
return fluid_.rvSat(ADB::constant(p), ADB::constant(satOil), cells).value();
|
||||
}
|
||||
@ -2430,11 +2468,12 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
ADB
|
||||
BlackoilModelBase<Grid, Implementation>::fluidRvSat(const ADB& p,
|
||||
const ADB& satOil,
|
||||
const std::vector<int>& cells) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
fluidRvSat(const ADB& p,
|
||||
const ADB& satOil,
|
||||
const std::vector<int>& cells) const
|
||||
{
|
||||
return fluid_.rvSat(p, satOil, cells);
|
||||
}
|
||||
@ -2443,9 +2482,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
ADB
|
||||
BlackoilModelBase<Grid, Implementation>::poroMult(const ADB& p) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
poroMult(const ADB& p) const
|
||||
{
|
||||
const int n = p.size();
|
||||
if (rock_comp_props_ && rock_comp_props_->isActive()) {
|
||||
@ -2473,9 +2513,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
ADB
|
||||
BlackoilModelBase<Grid, Implementation>::transMult(const ADB& p) const
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
transMult(const ADB& p) const
|
||||
{
|
||||
const int n = p.size();
|
||||
if (rock_comp_props_ && rock_comp_props_->isActive()) {
|
||||
@ -2503,9 +2544,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
void
|
||||
BlackoilModelBase<Grid, Implementation>::classifyCondition(const ReservoirState& state)
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
classifyCondition(const ReservoirState& state)
|
||||
{
|
||||
using namespace Opm::AutoDiffGrid;
|
||||
const int nc = numCells(grid_);
|
||||
@ -2543,9 +2585,10 @@ namespace detail {
|
||||
|
||||
|
||||
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
void
|
||||
BlackoilModelBase<Grid, Implementation>::updatePrimalVariableFromState(const ReservoirState& state)
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
updatePrimalVariableFromState(const ReservoirState& state)
|
||||
{
|
||||
using namespace Opm::AutoDiffGrid;
|
||||
const int nc = numCells(grid_);
|
||||
@ -2593,9 +2636,10 @@ namespace detail {
|
||||
|
||||
|
||||
/// Update the phaseCondition_ member based on the primalVariable_ member.
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
void
|
||||
BlackoilModelBase<Grid, Implementation>::updatePhaseCondFromPrimalVariable()
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
updatePhaseCondFromPrimalVariable()
|
||||
{
|
||||
if (! active_[Gas]) {
|
||||
OPM_THROW(std::logic_error, "updatePhaseCondFromPrimarVariable() logic requires active gas phase.");
|
||||
@ -2633,10 +2677,11 @@ namespace detail {
|
||||
|
||||
// TODO: only kept for now due to flow_multisegment
|
||||
// will be removed soon
|
||||
template <class Grid, class Implementation>
|
||||
template <class Grid, class Implementation, class WellModel>
|
||||
void
|
||||
BlackoilModelBase<Grid, Implementation>::updateWellState(const V& dwells,
|
||||
WellState& well_state)
|
||||
BlackoilModelBase<Grid, Implementation, WellModel>::
|
||||
updateWellState(const V& dwells,
|
||||
WellState& well_state)
|
||||
{
|
||||
const double gravity = detail::getGravity(geo_.gravity(), UgGridHelpers::dimensions(grid_));
|
||||
asImpl().stdWells().updateWellState(dwells, gravity, dpMaxRel(), fluid_.phaseUsage(),
|
||||
|
Loading…
Reference in New Issue
Block a user