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CFD simulation of multicomponent gas flow through porous media

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Pages
80 pages
Reading time
3 hours

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Focusing on the development of a generic CFD solver, this thesis explores multicomponent gas transport across various scales. It conducts a comparative analysis of mixture versus Eulerian approaches, opting for the latter due to its unique velocity characteristics for each component. Key methodologies include modeling inter-component momentum exchange via Maxwell-Stefan relations and employing a semi-heuristic drag term for porous media. The solver, built on the open-source platform OpenFOAM, demonstrates high accuracy in simulating diffusion-dominated mass transfer and validates porous drag and energy transport through established flow comparisons.

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CFD simulation of multicomponent gas flow through porous media, Chethan Mohan Kumar

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Released
2013
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