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Heat and mass transfer on MHD convective flow over an infinite vertical porous plate with the heat source and chemical reaction
It is considered that the magnetohydrodynamic free convective flow of an incompressible electrically conducting fluid through a porous medium past a vertical absorbent surface. The homogeneous transverse magnetic field is considered in the existence of heat source and chemical reaction in the rotating frame. The accurate solutions of the velocity, temperature, and concentration are acquired systematically making use of the perturbation method. The consequences of a variety of governing flow parameters on the velocity, temperature, and concentration are analyzed through graphical profiles. Computational outcomes for the skin friction, Nusselt number, and Sherwood number through the tabular format were also examined.
Heat and mass transfer on MHD convective flow over an infinite vertical porous plate with the heat source and chemical reaction
It is considered that the magnetohydrodynamic free convective flow of an incompressible electrically conducting fluid through a porous medium past a vertical absorbent surface. The homogeneous transverse magnetic field is considered in the existence of heat source and chemical reaction in the rotating frame. The accurate solutions of the velocity, temperature, and concentration are acquired systematically making use of the perturbation method. The consequences of a variety of governing flow parameters on the velocity, temperature, and concentration are analyzed through graphical profiles. Computational outcomes for the skin friction, Nusselt number, and Sherwood number through the tabular format were also examined.
Heat and mass transfer on MHD convective flow over an infinite vertical porous plate with the heat source and chemical reaction
Ravi Kumar, Nandyala (Autor:in) / Vijaya, Rachamallu Bhuvana (Autor:in)
Heat Transfer ; 50 ; 8475-8491
01.12.2021
17 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
British Library Online Contents | 2011
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