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Effect of the Suction/Injection on Unsteady MHD Oscillatory Flow Through a Vertical Channel Filled with Porous Medium


Affiliations
1 Department of mathematics, Thiruvalluvar University, Serkkadu, Vellore, India
     

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In this paper, we investigate the combined effect of a transverse Magnetic field and radiative heat transfer on unsteady oscillatory flow through a vertical channel filled with saturated porous medium and non-uniform wall temperature with the effect of suction or injection. The governing equation of oscillatory flow were non-dimensionalized, simplified and solved analytically. The effect of thermal radiation and the Magnetic field parameters on velocity profile, temperature, wall shear stress and the rate of heat transfer under the influence of Hartmann’s number, Grashof number, Darcy parameter, suction /injection parameter are computed graphically.

Keywords

MHD Oscillatory Flow, Porous Medium, Heat Transfer, Thermal Radiation, Slip-Condition, Suction/Injection.
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  • Effect of the Suction/Injection on Unsteady MHD Oscillatory Flow Through a Vertical Channel Filled with Porous Medium

Abstract Views: 423  |  PDF Views: 0

Authors

M. Chitra
Department of mathematics, Thiruvalluvar University, Serkkadu, Vellore, India
M. Suhasini
Department of mathematics, Thiruvalluvar University, Serkkadu, Vellore, India

Abstract


In this paper, we investigate the combined effect of a transverse Magnetic field and radiative heat transfer on unsteady oscillatory flow through a vertical channel filled with saturated porous medium and non-uniform wall temperature with the effect of suction or injection. The governing equation of oscillatory flow were non-dimensionalized, simplified and solved analytically. The effect of thermal radiation and the Magnetic field parameters on velocity profile, temperature, wall shear stress and the rate of heat transfer under the influence of Hartmann’s number, Grashof number, Darcy parameter, suction /injection parameter are computed graphically.

Keywords


MHD Oscillatory Flow, Porous Medium, Heat Transfer, Thermal Radiation, Slip-Condition, Suction/Injection.

References