SomertonThermalConductionLawParams.hpp
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1// -*- mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*-
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27#ifndef OPM_SOMERTON_THERMAL_CONDUCTION_LAW_PARAMS_HPP
28#define OPM_SOMERTON_THERMAL_CONDUCTION_LAW_PARAMS_HPP
29
30#include <cassert>
31
32namespace Opm {
33
38template <unsigned numPhases, class ScalarT>
40{
41 // do not copy!
43 {}
44
45public:
46 typedef ScalarT Scalar;
47
49 { }
50
58 Scalar fullySaturatedLambda(unsigned phaseIdx) const
59 {
60 assert(phaseIdx < numPhases);
61
62 return fullySaturatedLambda_[phaseIdx];
63 }
64
72 void setFullySaturatedLambda(unsigned phaseIdx, Scalar value)
73 {
74 assert(phaseIdx < numPhases);
75 assert(value > 0);
76
77 fullySaturatedLambda_[phaseIdx] = value;
78 }
79
85 {
86 return vacuumLambda_;
87 }
88
97 {
98 assert(value > 0);
99
100 vacuumLambda_ = value;
101 }
102
103private:
104 Scalar fullySaturatedLambda_[numPhases];
105 Scalar vacuumLambda_;
106};
107
108} // namespace Opm
109
110#endif
The default implementation of a parameter object for the Somerton thermal conduction law.
Definition: SomertonThermalConductionLawParams.hpp:40
void setFullySaturatedLambda(unsigned phaseIdx, Scalar value)
Set the "fully saturated" thermal conductivity of the porous medium [W/m^2 / (K/m)].
Definition: SomertonThermalConductionLawParams.hpp:72
Scalar fullySaturatedLambda(unsigned phaseIdx) const
Return the "fully saturated" thermal conductivity of the porous medium [W/m^2 / (K/m)].
Definition: SomertonThermalConductionLawParams.hpp:58
Scalar vacuumLambda() const
Return the thermal conductivity of the porous medium at vacuum [W/m^2 / (K/m)].
Definition: SomertonThermalConductionLawParams.hpp:84
ScalarT Scalar
Definition: SomertonThermalConductionLawParams.hpp:46
void setVacuumLambda(Scalar value)
Set the "fully saturated" thermal conductivity of the porous medium [W/m^2 / (K/m)].
Definition: SomertonThermalConductionLawParams.hpp:96
SomertonThermalConductionLawParams()
Definition: SomertonThermalConductionLawParams.hpp:48
Definition: Air_Mesitylene.hpp:34