99 static CellCenterPrimaryVariables
flux(
const Problem& problem,
100 const Element& element,
101 const FVElementGeometry& fvGeometry,
102 const ElementVolumeVariables& elemVolVars,
103 const SubControlVolumeFace& scvf)
107 CellCenterPrimaryVariables componentFlux(0.0);
108 ReducedComponentVector moleFracInside(0.0);
109 ReducedComponentVector moleFracOutside(0.0);
110 ReducedComponentVector reducedFlux(0.0);
111 ReducedComponentMatrix reducedDiffusionMatrixInside(0.0);
112 ReducedComponentMatrix reducedDiffusionMatrixOutside(0.0);
115 const auto& insideVolVars = elemVolVars[scvf.insideScvIdx()];
116 const auto& outsideVolVars = elemVolVars[scvf.outsideScvIdx()];
117 const auto rhoInside = insideVolVars.density();
118 const auto rhoOutside = outsideVolVars.density();
121 for(
int compIdx = 0; compIdx < numComponents; ++compIdx)
123 if(compIdx == FluidSystem::getMainComponent(0))
127 const auto eqIdx = Indices::conti0EqIdx + compIdx;
130 const auto bcTypes = problem.boundaryTypes(element, scvf);
131 if((bcTypes.isOutflow(eqIdx)) || (bcTypes.isSymmetry()))
132 return componentFlux;
137 for (
int compIdx = 0; compIdx < numComponents-1; compIdx++)
140 const auto xInside = insideVolVars.moleFraction(compIdx);
142 const auto xOutside = outsideVolVars.moleFraction(compIdx);
144 moleFracInside[compIdx] = xInside;
145 moleFracOutside[compIdx] = xOutside;
149 reducedDiffusionMatrixInside = setupMSMatrix_(problem, fvGeometry, insideVolVars, scvf);
151 reducedDiffusionMatrixOutside = setupMSMatrix_(problem, fvGeometry, outsideVolVars, scvf);
153 const auto insideScvIdx = scvf.insideScvIdx();
154 const auto& insideScv = fvGeometry.scv(insideScvIdx);
155 const auto outsideScvIdx = scvf.outsideScvIdx();
156 const auto& outsideScv = fvGeometry.scv(outsideScvIdx);
158 const Scalar insideDistance = (insideScv.dofPosition() - scvf.ipGlobal()).two_norm();
160 const Scalar omegai = calculateOmega_(insideDistance, insideVolVars.extrusionFactor());
165 moleFracOutside -= moleFracInside;
166 reducedDiffusionMatrixInside.solve(reducedFlux, moleFracOutside);
167 reducedFlux *= omegai*rhoInside;
171 const Scalar outsideDistance = (outsideScv.dofPosition() - scvf.ipGlobal()).two_norm();
172 const Scalar omegaj = calculateOmega_(outsideDistance, outsideVolVars.extrusionFactor());
174 reducedDiffusionMatrixInside.invert();
175 reducedDiffusionMatrixOutside.invert();
176 reducedDiffusionMatrixInside *= omegai*rhoInside;
177 reducedDiffusionMatrixOutside *= omegaj*rhoOutside;
180 ReducedComponentVector helperVector(0.0);
181 ReducedComponentVector gradientVectori(0.0);
182 ReducedComponentVector gradientVectorj(0.0);
184 reducedDiffusionMatrixInside.mv(moleFracInside, gradientVectori);
185 reducedDiffusionMatrixOutside.mv(moleFracOutside, gradientVectorj);
187 auto gradientVectorij = (gradientVectori + gradientVectorj);
190 reducedDiffusionMatrixOutside += reducedDiffusionMatrixInside;
192 reducedDiffusionMatrixOutside.solve(helperVector, gradientVectorij);
195 helperVector -=moleFracInside;
196 reducedDiffusionMatrixInside.mv(helperVector, reducedFlux);
199 reducedFlux *= -Extrusion::area(scvf);
201 for (
int compIdx = 0; compIdx < numComponents-1; compIdx++)
203 componentFlux[compIdx] = reducedFlux[compIdx];
204 componentFlux[numComponents-1] -= reducedFlux[compIdx];
207 return componentFlux ;