4.7 Article

Rotating disk flow and heat transfer through a porous medium of a non-Newtonian fluid with suction and injection

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.cnsns.2006.05.009

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fluid mechanics; heat transfer; rotating disk flow; finite differences

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The steady flow of an incompressible viscous non-Newtonian fluid above an infinite rotating porous disk in a porous medium is studied with heat transfer. A uniform injection or suction is applied through the surface of the disk. Numerical solutions of the non-linear differential equations which govern the hydrodynamics and energy transfer are obtained. The effect of the porosity of the medium, the characteristics of the non-Newtonian fluid and the suction or injection velocity on the velocity and temperature distributions is considered. The inclusion of the three effects, the porosity, the non-Newtonian characteristics, and the suction or injection velocity together has shown some interesting effects. (c) 2006 Elsevier B.V. All rights reserved.

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