3.4
DUNE for Multi-{Phase, Component, Scale, Physics, ...} flow and transport in porous media
diffusivitymillingtonquirk.hh
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24#ifndef DUMUX_MATERIAL_DIFFUSIVITY_MILLINGTON_QUIRK_HH
25#define DUMUX_MATERIAL_DIFFUSIVITY_MILLINGTON_QUIRK_HH
26
27#include <cmath>
28#include <algorithm>
29
30namespace Dumux {
31
50template<class Scalar>
52{
53public:
62 template<class VolumeVariables>
63 static Scalar effectiveDiffusionCoefficient(const VolumeVariables& volVars,
64 const int phaseIdx,
65 const int compIdxI,
66 const int compIdxJ)
67 {
68 // instead of D_eff,pm = phi * Sw * 1/phi^2 * (phi * Sw)^(7/3) * D
69 // we calculate the more efficient
70 // D_eff,pm = phi * Sw^3 * cubicroot(phi * Sw) * D
71
72 using std::cbrt;
73 using std::max;
74 const Scalar diffCoeff = volVars.diffusionCoefficient(phaseIdx, compIdxI, compIdxJ);
75 const Scalar porosity = volVars.porosity();
76 const Scalar sat = max<Scalar>(volVars.saturation(phaseIdx), 0.0);
77 return porosity * (sat*sat*sat) * cbrt(porosity * sat) * diffCoeff;
78 }
79
80};
81}
82#endif
Definition: adapt.hh:29
std::string porosity() noexcept
I/O name of porosity.
Definition: name.hh:139
Relation for the saturation-dependent effective diffusion coefficient.
Definition: diffusivitymillingtonquirk.hh:52
static Scalar effectiveDiffusionCoefficient(const VolumeVariables &volVars, const int phaseIdx, const int compIdxI, const int compIdxJ)
Returns the effective diffusion coefficient after Millington Quirk.
Definition: diffusivitymillingtonquirk.hh:63