opm-simulators/ebos/ebos.hh
2019-09-19 11:14:36 +02:00

156 lines
6.0 KiB
C++

// -*- mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*-
// vi: set et ts=4 sw=4 sts=4:
/*
This file is part of the Open Porous Media project (OPM).
OPM is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 2 of the License, or
(at your option) any later version.
OPM is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with OPM. If not, see <http://www.gnu.org/licenses/>.
Consult the COPYING file in the top-level source directory of this
module for the precise wording of the license and the list of
copyright holders.
*/
/*!
* \file
*
* \brief The common settings for all ebos variants.
*/
#ifndef EBOS_HH
#define EBOS_HH
#include "eclproblem.hh"
#include <opm/simulators/wells/BlackoilWellModel.hpp>
#include <opm/simulators/aquifers/BlackoilAquiferModel.hpp>
#include <opm/simulators/linalg/ISTLSolverEbos.hpp>
#include <opm/models/utils/start.hh>
namespace Opm {
template <class TypeTag>
class EbosProblem;
}
BEGIN_PROPERTIES
NEW_TYPE_TAG(EbosTypeTag, INHERITS_FROM(BlackOilModel, EclBaseProblem, FlowModelParameters));
// Set the problem class
SET_TYPE_PROP(EbosTypeTag, Problem, Opm::EbosProblem<TypeTag>);
// Enable experimental features for ebos: ebos is the research simulator of the OPM
// project. If you're looking for a more stable "production quality" simulator, consider
// using `flow`
SET_BOOL_PROP(EbosTypeTag, EnableExperiments, true);
// use flow's well model for now
SET_TYPE_PROP(EbosTypeTag, EclWellModel, Opm::BlackoilWellModel<TypeTag>);
// currently, ebos uses the non-multisegment well model by default to avoid
// regressions. the --use-multisegment-well=true|false command line parameter is still
// available in ebos, but hidden from view.
SET_BOOL_PROP(EbosTypeTag, UseMultisegmentWell, false);
// set some properties that are only required by the well model
SET_BOOL_PROP(EbosTypeTag, MatrixAddWellContributions, true);
SET_BOOL_PROP(EbosTypeTag, EnableTerminalOutput, false);
// flow's well model only works with surface volumes
SET_BOOL_PROP(EbosTypeTag, BlackoilConserveSurfaceVolume, true);
// the values for the residual are for the whole cell instead of for a cubic meter of the cell
SET_BOOL_PROP(EbosTypeTag, UseVolumetricResidual, false);
// by default use flow's aquifer model for now
SET_TYPE_PROP(EbosTypeTag, EclAquiferModel, Opm::BlackoilAquiferModel<TypeTag>);
// use flow's linear solver backend for now
SET_TAG_PROP(EbosTypeTag, LinearSolverSplice, FlowIstlSolver);
// the default for the allowed volumetric error for oil per second
SET_SCALAR_PROP(EbosTypeTag, NewtonTolerance, 1e-1);
// set fraction of the pore volume where the volumetric residual may be violated during
// strict Newton iterations
SET_SCALAR_PROP(EbosTypeTag, EclNewtonRelaxedVolumeFraction, 0.05);
// the maximum volumetric error of a cell in the relaxed region
SET_SCALAR_PROP(EbosTypeTag, EclNewtonRelaxedTolerance, 1e6*GET_PROP_VALUE(TypeTag, NewtonTolerance));
// the tolerated amount of "incorrect" amount of oil per time step for the complete
// reservoir. this is scaled by the pore volume of the reservoir, i.e., larger reservoirs
// will tolerate larger residuals.
SET_SCALAR_PROP(EbosTypeTag, EclNewtonSumTolerance, 1e-5);
// make all Newton iterations strict, i.e., the volumetric Newton tolerance must be
// always be upheld in the majority of the spatial domain. In this context, "majority"
// means 1 - EclNewtonRelaxedVolumeFraction.
SET_INT_PROP(EbosTypeTag, EclNewtonStrictIterations, 100);
// set the maximum number of Newton iterations to 8 so that we fail quickly (albeit
// relatively often)
SET_INT_PROP(EbosTypeTag, NewtonMaxIterations, 8);
// if openMP is available, set the default the number of threads per process for the main
// simulation to 2 (instead of grabbing everything that is available).
#if _OPENMP
SET_INT_PROP(EbosTypeTag, ThreadsPerProcess, 2);
#endif
// By default, ebos accepts the result of the time integration unconditionally if the
// smallest time step size is reached.
SET_BOOL_PROP(EbosTypeTag, ContinueOnConvergenceError, true);
END_PROPERTIES
namespace Opm {
template <class TypeTag>
class EbosProblem : public EclProblem<TypeTag>
{
typedef EclProblem<TypeTag> ParentType;
public:
static void registerParameters()
{
ParentType::registerParameters();
Opm::BlackoilModelParametersEbos<TypeTag>::registerParameters();
EWOMS_REGISTER_PARAM(TypeTag, bool, EnableTerminalOutput, "Do *NOT* use!");
EWOMS_HIDE_PARAM(TypeTag, DbhpMaxRel);
EWOMS_HIDE_PARAM(TypeTag, DwellFractionMax);
EWOMS_HIDE_PARAM(TypeTag, MaxResidualAllowed);
EWOMS_HIDE_PARAM(TypeTag, ToleranceMb);
EWOMS_HIDE_PARAM(TypeTag, ToleranceCnv);
EWOMS_HIDE_PARAM(TypeTag, ToleranceCnvRelaxed);
EWOMS_HIDE_PARAM(TypeTag, ToleranceWells);
EWOMS_HIDE_PARAM(TypeTag, ToleranceWellControl);
EWOMS_HIDE_PARAM(TypeTag, MaxWelleqIter);
EWOMS_HIDE_PARAM(TypeTag, UseMultisegmentWell);
EWOMS_HIDE_PARAM(TypeTag, TolerancePressureMsWells);
EWOMS_HIDE_PARAM(TypeTag, MaxPressureChangeMsWells);
EWOMS_HIDE_PARAM(TypeTag, UseInnerIterationsMsWells);
EWOMS_HIDE_PARAM(TypeTag, MaxInnerIterMsWells);
EWOMS_HIDE_PARAM(TypeTag, MaxSinglePrecisionDays);
EWOMS_HIDE_PARAM(TypeTag, MaxStrictIter);
EWOMS_HIDE_PARAM(TypeTag, SolveWelleqInitially);
EWOMS_HIDE_PARAM(TypeTag, UpdateEquationsScaling);
EWOMS_HIDE_PARAM(TypeTag, UseUpdateStabilization);
EWOMS_HIDE_PARAM(TypeTag, MatrixAddWellContributions);
EWOMS_HIDE_PARAM(TypeTag, EnableTerminalOutput);
}
// inherit the constructors
using ParentType::EclProblem;
};
}
#endif // EBOS_HH