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Numerical study on MHD radiating and reacting unsteady slip flow past a vertical permeable plate in a porous medium

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dc.creator Reddy, B. Prabhakar
dc.creator Makinde, O. D.
dc.date 2022-03-09T12:07:57Z
dc.date 2022-03-09T12:07:57Z
dc.date 2021
dc.date.accessioned 2022-10-20T13:09:30Z
dc.date.available 2022-10-20T13:09:30Z
dc.identifier Prabhakar Reddy, B., & Makinde, O. D. (2021). Numerical study on MHD radiating and reacting unsteady slip flow past a vertical permeable plate in a porous medium. International Journal of Ambient Energy, 1-19.
dc.identifier DOI:10.1080/01430750.2021.1999323
dc.identifier http://hdl.handle.net/20.500.12661/3471
dc.identifier.uri http://hdl.handle.net/20.500.12661/3471
dc.description Abstract. Full text available at https://doi.org/10.1080/01430750.2021.1999323
dc.description This paper examines the unsteady hydro-magnetic boundary layer flow of a reacting and radiating electrically conducting fluid past a slippery permeable vertical plate embedded in a porous medium. The governing partial differential equations are obtained and tackled numerically via Galerkin finite element method. Pertinent results with respect to the effects of emerging thermo physical parameters on the velocity, temperature and concentration fields together with skin-friction, Nusselt number and Sherwood number are elucidated graphically and in tabular form. Numerical validation of the present work special case results with the one already in the literature shows an excellent agreement. It is found that buoyancy forces enhanced momentum boundary layer while magnetic field and radiative heat absorption lessen it. Both heat and mass transfer rate diminished with a rise in the rate of chemical reaction.
dc.language en
dc.publisher Francis and Taylor
dc.subject Thermal radiation
dc.subject Chemical reaction
dc.subject Magnetic field
dc.subject slip flow
dc.subject porous medium
dc.subject Viscous Dissipation
dc.title Numerical study on MHD radiating and reacting unsteady slip flow past a vertical permeable plate in a porous medium
dc.type Article


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