72 static Scalar
flux(
const Problem& problem,
73 const Element& element,
74 const FVElementGeometry& fvGeometry,
75 const ElementVolumeVariables& elemVolVars,
76 const SubControlVolumeFace& scvf,
78 const ElementFluxVariablesCache& elemFluxVarsCache)
81 const auto& insideScv = fvGeometry.scv(scvf.insideScvIdx());
82 const auto& outsideScv = fvGeometry.scv(scvf.outsideScvIdx());
83 const auto& insideVolVars = elemVolVars[insideScv];
84 const auto& outsideVolVars = elemVolVars[outsideScv];
85 const auto computeLambda = [&](
const auto& v){
86 if constexpr (numEnergyEq == 1)
87 return v.effectiveThermalConductivity();
88 else if constexpr (numEnergyEqFluid == 1)
89 return (phaseIdx != sPhaseIdx)
90 ? v.effectiveFluidThermalConductivity()
91 : v.effectiveSolidThermalConductivity();
93 return v.effectivePhaseThermalConductivity(phaseIdx);
96 auto insideLambda = computeLambda(insideVolVars);
97 auto outsideLambda = computeLambda(outsideVolVars);
100 insideLambda *= insideVolVars.extrusionFactor();
101 outsideLambda *= outsideVolVars.extrusionFactor();
104 const auto lambda = problem.spatialParams().harmonicMean(insideLambda, outsideLambda, scvf.unitOuterNormal());
107 const auto& fluxVarsCache = elemFluxVarsCache[scvf];
109 Dune::FieldVector<Scalar, GridView::dimensionworld> gradTemp(0.0);
110 for (
auto&& scv : scvs(fvGeometry))
113 if (phaseIdx < numEnergyEqFluid)
114 gradTemp.axpy(elemVolVars[scv].temperatureFluid(phaseIdx), fluxVarsCache.gradN(scv.indexInElement()));
116 gradTemp.axpy(elemVolVars[scv].temperatureSolid(), fluxVarsCache.gradN(scv.indexInElement()));
120 return -1.0*
vtmv(scvf.unitOuterNormal(), lambda, gradTemp)*Extrusion::area(scvf);