93 const SubControlVolume& scv,
94 const VolumeVariables& volVars)
const
96 NumEqVector storage(0.0);
99 for (
int phaseIdx = 0; phaseIdx < numPhases; ++phaseIdx)
101 for (
int compIdx = 0; compIdx < numComponents; ++compIdx)
103 auto eqIdx = Indices::conti0EqIdx + compIdx;
104 storage[eqIdx] += volVars.porosity()
105 * volVars.saturation(phaseIdx)
106 * volVars.molarDensity(phaseIdx)
107 * volVars.moleFraction(phaseIdx, compIdx);
111 EnergyLocalResidual::fluidPhaseStorage(storage, scv, volVars, phaseIdx);
115 EnergyLocalResidual::solidPhaseStorage(storage, scv, volVars);
132 const Element& element,
133 const FVElementGeometry& fvGeometry,
134 const ElementVolumeVariables& elemVolVars,
135 const SubControlVolumeFace& scvf,
136 const ElementFluxVariablesCache& elemFluxVarsCache)
const
138 FluxVariables fluxVars;
139 fluxVars.init(problem, element, fvGeometry, elemVolVars, scvf, elemFluxVarsCache);
140 static constexpr auto referenceSystemFormulation = FluxVariables::MolecularDiffusionType::referenceSystemFormulation();
143 NumEqVector flux(0.0);
146 for (
int phaseIdx = 0; phaseIdx < numPhases; ++phaseIdx)
148 for (
int compIdx = 0; compIdx < numComponents; ++compIdx)
150 auto upwindTerm = [phaseIdx, compIdx](
const VolumeVariables& volVars)
151 {
return volVars.molarDensity(phaseIdx)*volVars.moleFraction(phaseIdx, compIdx)*volVars.mobility(phaseIdx); };
154 auto eqIdx = Indices::conti0EqIdx + compIdx;
155 flux[eqIdx] += fluxVars.advectiveFlux(phaseIdx, upwindTerm);
159 EnergyLocalResidual::heatConvectionFlux(flux, fluxVars, phaseIdx);
163 EnergyLocalResidual::heatConductionFlux(flux, fluxVars);
166 const auto diffusionFluxesWPhase = fluxVars.molecularDiffusionFlux(wPhaseIdx);
167 Scalar jGW = diffusionFluxesWPhase[gCompIdx];
168 Scalar jNW = diffusionFluxesWPhase[nCompIdx];
169 Scalar jWW = -(jGW+jNW);
174 jGW /= FluidSystem::molarMass(gCompIdx);
175 jNW /= FluidSystem::molarMass(nCompIdx);
176 jWW /= FluidSystem::molarMass(wCompIdx);
179 const auto diffusionFluxesGPhase = fluxVars.molecularDiffusionFlux(gPhaseIdx);
180 Scalar jWG = diffusionFluxesGPhase[wCompIdx];
181 Scalar jNG = diffusionFluxesGPhase[nCompIdx];
182 Scalar jGG = -(jWG+jNG);
187 jWG /= FluidSystem::molarMass(wCompIdx);
188 jNG /= FluidSystem::molarMass(nCompIdx);
189 jGG /= FluidSystem::molarMass(gCompIdx);
193 const Scalar jWN = 0.0;
194 const Scalar jGN = 0.0;
195 const Scalar jNN = 0.0;
197 flux[contiWEqIdx] += jWW+jWG+jWN;
198 flux[contiNEqIdx] += jNW+jNG+jNN;
199 flux[contiGEqIdx] += jGW+jGG+jGN;