Files
opm-common/tests/test_components.cpp
Markus Blatt 868531e414 Extrapolate for values not in domain (UniformTabulated2DFunction/liquidDensity).
Extrapolate liquidDensity for unreasonable
pressure/temperature (Brine) and in UniformTabulated2DFunction.
In the current code the interpolation actually already works if the
values are outside of the tabulated region.

With this change there is now an additional function parameter
If it is true we will interpolate for every value instead of throwing
and aborting (was the case always before).
2021-09-28 16:34:42 +02:00

139 lines
4.9 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 This test makes sure that mandated API is adhered to by all component classes
*/
#include "config.h"
#include <opm/material/densead/Evaluation.hpp>
#include <opm/material/densead/Math.hpp>
#include "checkComponent.hpp"
// include all components shipped with opm-material
#include <opm/material/components/Unit.hpp>
#include <opm/material/components/NullComponent.hpp>
#include <opm/material/components/Component.hpp>
#include <opm/material/components/Dnapl.hpp>
#include <opm/material/components/SimpleH2O.hpp>
#include <opm/material/components/Lnapl.hpp>
#include <opm/material/components/iapws/Region2.hpp>
#include <opm/material/components/iapws/Region1.hpp>
#include <opm/material/components/iapws/Common.hpp>
#include <opm/material/components/iapws/Region4.hpp>
#include <opm/material/components/H2O.hpp>
#include <opm/material/components/SimpleHuDuanH2O.hpp>
#include <opm/material/components/CO2.hpp>
#include <opm/material/components/Mesitylene.hpp>
#include <opm/material/components/TabulatedComponent.hpp>
#include <opm/material/components/Brine.hpp>
#include <opm/material/components/N2.hpp>
#include <opm/material/components/Xylene.hpp>
#include <opm/material/components/Air.hpp>
#include <opm/material/components/SimpleCO2.hpp>
#include <opm/material/common/UniformTabulated2DFunction.hpp>
namespace Opm {
namespace ComponentsTest {
#include <opm/material/components/co2tables.inc>
}}
#include <dune/common/parallel/mpihelper.hh>
template <class Scalar, class Evaluation>
void testSimpleH2O()
{
typedef Opm::H2O<Scalar> H2O;
typedef Opm::SimpleHuDuanH2O<Scalar> SimpleHuDuanH2O;
typedef Opm::MathToolbox<Evaluation> EvalToolbox;
int numT = 67;
int numP = 45;
Evaluation T = 280;
Evaluation p = 1e6;
for (int iT = 0; iT < numT; ++iT) {
p = 1e6;
T += 5;
for (int iP = 0; iP < numP; ++iP) {
p *= 1.1;
if (!EvalToolbox::isSame(H2O::liquidDensity(T,p), SimpleHuDuanH2O::liquidDensity(T,p,false), /*tolerance=*/1e-3*H2O::liquidDensity(T,p).value()))
throw std::logic_error("oops: the water density based on Hu-Duan has more then 1e-3 deviation from IAPWS'97");
if (T >= 570) // for temperature larger then 570 the viscosity based on HuDuan is too far from IAPWS.
continue;
if (!EvalToolbox::isSame(H2O::liquidViscosity(T,p), SimpleHuDuanH2O::liquidViscosity(T,p,false), /*tolerance=*/5.e-2*H2O::liquidViscosity(T,p).value())){
throw std::logic_error("oops: the water viscosity based on Hu-Duan has more then 5e-2 deviation from IAPWS'97");
}
}
}
}
template <class Scalar, class Evaluation>
void testAllComponents()
{
typedef Opm::H2O<Scalar> H2O;
checkComponent<Opm::Air<Scalar>, Evaluation>();
checkComponent<Opm::Brine<Scalar, H2O>, Evaluation>();
checkComponent<Opm::CO2<Scalar, Opm::ComponentsTest::CO2Tables>, Evaluation>();
checkComponent<Opm::DNAPL<Scalar>, Evaluation>();
checkComponent<Opm::H2O<Scalar>, Evaluation>();
checkComponent<Opm::LNAPL<Scalar>, Evaluation>();
checkComponent<Opm::Mesitylene<Scalar>, Evaluation>();
checkComponent<Opm::N2<Scalar>, Evaluation>();
checkComponent<Opm::NullComponent<Scalar>, Evaluation>();
checkComponent<Opm::SimpleCO2<Scalar>, Evaluation>();
checkComponent<Opm::SimpleH2O<Scalar>, Evaluation>();
checkComponent<Opm::TabulatedComponent<Scalar, H2O>, Evaluation>();
checkComponent<Opm::Unit<Scalar>, Evaluation>();
checkComponent<Opm::Xylene<Scalar>, Evaluation>();
}
template <class Scalar>
inline void testAll()
{
typedef Opm::DenseAd::Evaluation<Scalar, 3> Evaluation;
// ensure that all components are API-compliant
testAllComponents<Scalar, Scalar>();
testAllComponents<Scalar, Evaluation>();
testSimpleH2O<Scalar, Evaluation>();
}
int main(int argc, char **argv)
{
Dune::MPIHelper::instance(argc, argv);
testAll<double>();
testAll<float>();
return 0;
}