Unsteady MHD mixed convection along an exponentially stretching surface

Author:

Patil Prabhugouda Mallanagouda,A. Shashikant,Momoniat Ebrahim

Abstract

Purpose This paper aims to investigate the unsteady mixed convection along an exponentially stretching surface in presence of transverse magnetic field applied at the wall and the opposing buoyancy flow. Design/methodology/approach The dimensional partial differential equations governing the flow field are transformed to non-dimensional coupled partial differential equations with the aid of suitable non-similar transformations. The resulting equations are then solved by the coalition of quasilinearization technique and the finite difference method. Findings Effects of volumetric heat source/sink, suction/blowing and other dimensionless parameters on velocity and temperature profiles are examined numerically. This investigation reveals that in presence of opposing buoyancy flow, the suction and volumetric heat source enhances the skin-friction coefficient, while the rise in the MHD increases the momentum boundary layer. Originality/value To the best of the authors’ knowledge, no such investigation has been carried out in the literature.

Publisher

Emerald

Subject

Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference33 articles.

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4. Chemical reaction effect on MHD boundary layer flow of two-phase nanofluid model over an exponentially stretching sheet with a heat generation;Journal of Molecular Liquids,2016

5. Soret and dufour effects in three-dimensional flow over an exponentially stretching surface with porous medium, chemical reaction and heat source/sink;International Journal of Numerical Methods for Heat and Fluid Flow,2015

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