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Research Article Open access CC BY 4.0

The Combined Effects of Electro-osomotic and Magnetohydrodynamic with Viscosity and Thermal Conductivity in Reactive Fluid Flow

F. O. Akinpelu, J. O. Ajilore

Asian Research Journal of Mathematics · pp. 1–11 · Published 28 Mar 2017

10.9734/ARJOM/2017/30641

Abstract

The study of combined effects of electro-osmotic and magnetohydrodynamic when viscosity and thermal conductivity of the reactive fluid flow is assumed to vary exponentially with temperature is examined. The governing equations of the flow were non-dimensionalized using suitable variables. The Galerkin weighted residue method was adopted to solve both the momentum and energy equations in the steady state for a constant viscosity and thermal conductivity. It was observed that velocity profile increases as pressure, electro-osmotic and specific internal energy parameters increases and decreases as viscosity, magnetic and electro-kinetic parameters increases.

Electro-osmotic magnetohydrodynamic viscosity thermal conductivity reactive fluid

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