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Research Article Open access CC BY 4.0

Unsteady MHD Flow in a Rotating Parallel Plate Channel under the Influence of Pressure Gradient with Hall Current Effects

M. Veera Krishna

Journal of Scientific Research and Reports · pp. 1–21 · Published 5 Mar 2016

10.9734/JSRR/2016/24123

Abstract

In this paper we discussed the unsteady flow of an incompressible electrically conducting viscous fluid in a rotating porous media, with a variable pressure gradient and in the presence of hall current. We have considered three different cases, like impulsive change, cosine and sine oscillations of pressure gradient. It is found that, the rotational and Lorentz forces are having significant effect on velocity profile in the presence of pressure gradient and hall current. The physical significance of various dimensionless parameter’s are discussed analytically and numerically on velocity distribution and frictional force.

MHD flows unsteady flows rotating channels Hall current effects pressure gradient impulsive change cosine oscillations and sine oscillations.

Cited by 4

HEAT AND MASS TRANSFER ON MHD FLOW OVER AN INFINITE ROTATING OSCILLATING VERTICAL POROUS PLATE.

Assistant Professor, Department of Applied Mathematics, Yogi Vemana University, Kadapa, A.P., Dr G. Kathyayani, D.M.Praveen Babu · International Journal of Advanced Research · 2016

Unsteady MHD convective flow of Second grade fluid through a porous medium in a Rotating parallel plate channel with temperature dependent source

M VeeraKrishna, G Subba Reddy · IOP Conference Series: Materials Science and Engineering · 2016

Hall effects on MHD Convective flow of Visco-elastic fluid through a rotating porous channel

Department of Mathematics, S.K.University, Anantapur, Andhra Pradesh, India, G. RAJU, R. SIVA PRASAD · Journal of Ultra Scientist of Physical Sciences Section A · 2016

Heat Transfer on MHD Rotating non-Newtonian Fluid Flow through Parallel Plate Porous Channel

B. Lakshmanna, S. Venkateswarlu · International Journal of Applied Engineering Research · 2018

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