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- W2611893661 abstract "Magnetohydrodynamics fows are those which involves the interaction between the fow of electrically conducting fuids and electromagnetic felds. Such fows are gov-erned by Navier-Stokes, continuity along with Maxwell's equations, and are commonly encountered in applications of practical interest.In the first part of the thesis validations of ANUPRAVAHA MHD module werecarried out with available analytical results. In the second part of the thesis numericalsimulations of MHD rectangular duct ow were carried out for various arbitrary wallconductance ratio and Hartmann number using induction-less formulation and resultsof velocity prole and pressure gradient have presented.In the final part of the thesis fully developed MHD ow solution in a rectangularduct has been investigated to obtain ow prole and pressure gradient at very highHartmann number(order of 104) using inertia-less formulation. The results of thestudy compared with solution from numerical simulation of full set of equation andshows good agreement. In this method computation time for simulation was reducedconsiderably because of the lesser grid point and neglecting the non-linear term inthe momentum equation." @default.
- W2611893661 created "2017-05-12" @default.
- W2611893661 creator A5019676989 @default.
- W2611893661 date "2014-01-01" @default.
- W2611893661 modified "2023-09-27" @default.
- W2611893661 title "Numerical Simulations of Liquid Metal MHD Flows at Very High Hartmann Number" @default.
- W2611893661 hasPublicationYear "2014" @default.
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