Nonsimilar boundary-layer flow over a stationary permeable plate in a rotating fluid with a magnetic field

被引:0
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作者
M. Kumari
G. Nath
机构
[1] Department of Mathematics,
[2] Indian Institute of Science,undefined
[3] Bangalore – 560012,undefined
[4] India e-mail: mkumari@math.iisc.ernet.in,undefined
来源
Archive of Applied Mechanics | 2003年 / 72卷
关键词
Keywords Rotating fluid, Boundary layer, Magnetic field, Difference–differential method, Surface mass transfer;
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摘要
 The nonsimilar boundary-layer flow and heat transfer over a stationary permeable surface in a rotating fluid in the presence of magnetic field, mass transfer and free stream velocity are studied. The parabolic partial differential equations governing the flow have been solved numerically by using a difference–differential method. For small streamwise distance, these partial differential equations are also solved by a perturbation technique with Shanks transformation. For uniform mass transfer, analytical solutions are obtained. The surface skin friction coefficients and the Nusselt number increase with the magnetic field, suction and streamwise distance from the leading edge of the plate except the skin friction coefficient in the y-direction which decreases with the increasing magnetic field.
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页码:730 / 744
页数:14
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