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Effects of thermal radiation on MHD chemically reactive flow past an oscillating vertical porous plate with variable surface conditions and viscous dissipation

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dc.creator Reddy, Prabhakar B.
dc.creator Muthucumaraswamy, R.
dc.date 2021-02-26T08:45:41Z
dc.date 2021-02-26T08:45:41Z
dc.date 2019
dc.date.accessioned 2022-10-20T13:25:33Z
dc.date.available 2022-10-20T13:25:33Z
dc.identifier Reddy, B. P., & Muthucumaraswamy, R. (2019). Effects of Thermal Radiation on MHD Chemically Reactive Flow Past an Oscillating Vertical Porous Plate with Variable Surface Conditions and Viscous Dissipation. i-Manager's Journal on Future Engineering and Technology, 15(2), 8.
dc.identifier DOI:10.26634/jfet.15.2.15020
dc.identifier http://hdl.handle.net/20.500.12661/2840
dc.identifier.uri http://hdl.handle.net/20.500.12661/2840
dc.description Abstract. Full text article is available at https://doi.org/10.26634/jfet.15.2.15020
dc.description The purpose of this article is to investigate the thermal radiation effects on unsteady hydro-magnetic viscous dissipative fluid flow of an incompressible and electrically-conducting past an oscillating vertical plate in a porous medium with variable surface conditions in the presence of chemical-reaction. The Ritz FEM has been applied to solve the governing equations of the flow. The numerical solutions for the fluid velocity, fluid temperature, and fluid concentration were presented graphically. Numerical results of the skin-friction are presented in tables. It has been found that the fluid temperature decreased in the boundary-layer as the radiation parameter increased whereas it is increased when Eckert number increased. Increase in the Schmidt number and chemical reaction tends to decrease the concentration of fluid. The permeability parameter, Eckert number, and the time tends to accelerate the fluid velocity whereas magnetic field, radiation and chemical reaction tends to decelerate the fluid velocity in case of cooled plate and opposite effect is observed in case of heated plate. These results are in very good agreement with earlier reported studies.
dc.language en
dc.publisher i-manager Publications
dc.subject MHD
dc.subject Radiation Parameter
dc.subject Chemical Reaction
dc.subject Magnetic Field
dc.subject Eckert Number
dc.subject Oscillating Plate
dc.subject Thermal radiation effects
dc.subject Radiation
dc.subject Viscous Dissipation
dc.title Effects of thermal radiation on MHD chemically reactive flow past an oscillating vertical porous plate with variable surface conditions and viscous dissipation
dc.type Article


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