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kOmegaSSTCC
rotation/curvature correction for the komegaSST turbulence model3DSolidFluidMultiregionPotentialFoam
It is described how to simulate primary (when kinetic parameters of very fast electrochemical reactions are used), secondary and tertiary current distribution in electrochemical reactors with a multiregion approach (solve 3D (porous), solid and fluid phases) with the help of OpenFOAM, the developed solver multiRegionPorousPotentialFoam and the BC regionCoupledSolidFluid and regionCoupledPorousSolidFluid. It shows how to pre-process and run a basic case in a 2D domain. The proposed strategy allows to have as an input i-th electrochemical reactions per electrode, including bipolar electrodes in which at least two reactions take place (reduction and oxidation) in 3D or planar electrodes.ultrasoundElectrochemistry
It is described how to simulate current distribution in electrochemical reactors with ultrasound assistance under mass-transfer controlled conditionsrotatingElectrodesFoam
It is described how to simulate current distribution in electrochemical reactors with rotating electrodes under mass-transfer controlled conditions, by the developed solver: concentrationPimpleFoam. It is shown how to pre-process, run and post-process a basic case involving a 2D axisimetric domainsecondaryCurrentDistributionFoam
It is described how to simulate secondary current distribution in electrochemical reactors with a multiregion approach (solve solid and fluid phases) with the help of OpenFOAM, the developed solver multiregionPotentialFoam and the BC regionCoupleSolidFluid. It shows how to pre-process, run and post-process a basic case involving in a 2D domainSpalartAllmarasRCC
rotation/curvature correction for the SpalartAllmaras turbulence modeltertiaryMigrationCurrentDistributionFoam
It is described how to simulate tertiary current distribution (including the effect of migration of ions) in electrochemical reactors with the help of OpenFOAM, the developed solver potentialMigrConcentrationFoam and the BC as codedMixed. It shows how to pre-process, run and post-process a basic case involving in a 2D domain. The proposed strategy allows to have as an input k-th electrochemical reactions per electrode.bubbleCurrentDistributionFoam
It is described how to simulate secondary current distribution in electrochemical reactors with biphasic (gas-liquid) flow with the help of OpenFOAM. It is shown how to pre-process, run and post-process a basic case involving a 2D domain using the developed solver potentialMultiphaseEulerFoam and BC as codedMixed. The proposed strategy is fully functional in OpenFOAM version 8.tertiaryCurrentDistributionFoam
It is described how to simulate tertiary current distribution in electrochemical reactors with the help of OpenFOAM, the developed solver and the BCs. It shows how to pre-process, run and post-process a basic case involving in a 2D domainLove Open Source and this site? Check out how you can help us