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Analytical solution for steady magneto hydrodynamic flow between parallel porous plates with inclined magnetic field

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ABSTRACT In this paper we investigate the Steady magnetohydrodynamic flows with inclined magnetic field between two parallel porous plates are considered. Magnetohydrodynamic is the study of the relationship between magnetic… Click to show full abstract

ABSTRACT In this paper we investigate the Steady magnetohydrodynamic flows with inclined magnetic field between two parallel porous plates are considered. Magnetohydrodynamic is the study of the relationship between magnetic fields and moving conducting fluids. The main concern is to analytically investigate the structure of the solution by using similarity transformation, whose solution deals with increasing fluid flow with inclined magnetic field force helps to restrain this reserve flow and analytical expression for the fluid velocity obtained is expressed in terms of Hartmann number. The magneto hydrodynamic channel flows plays a significant role in a variety of fields has many applications in engineering and technology such as MHD power generator, petroleum industry, polymer technology, cooling system, accelerations, aerodynamics heating used. The problem is reduced to a third order linear differential equation which depends on a Suction Reynolds number R and M 1 for which an exact solution is obtained.

Keywords: inclined magnetic; porous plates; solution; magnetic field; parallel porous

Journal Title: International Journal of Ambient Energy
Year Published: 2019

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