Research Article
Aug 1968

Laminar Flow Between Rotating Porous Disks

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Publication: Journal of the Engineering Mechanics Division
Volume 94, Issue 4

Abstract

A perturbation solution of the equations of motion for steady, incompressible, laminar flow between a porous rotating disk and a stationary nonporous disk has been obtained. The solution obtained is valid for small wall Reynolds numbers and various values of the rotation coefficient, α=2h3 ω2/v V, in which h = the distance between disks, ω = the angular velocity, V = the magnitude of suction or injection velocity, and v = the kinematic viscosity. Expressions for the velocity, pressure, viscous stress, and resisting moment are presented.

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Journal of the Engineering Mechanics Division
Volume 94Issue 4August 1968
Pages: 919 - 930

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Published in print: Aug 1968
Published online: Feb 3, 2021

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Abdel F. Elkouh, M.ASCE
Assoc. Prof. of Mech. Engrg., Coll. of Engrg., Marquette Univ., Milwaukee, Wisc.

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