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Journal ArticleDOI

Unsteady multiple boundary layers on a porous plate in a rotating system

Lokenath Debnath, +1 more
- 01 Sep 1973 - 
- Vol. 16, Iss: 9, pp 1418-1421
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TLDR
In this paper, an initial value investigation is made of the motion of an incompressible, homogeneous, viscous fluid bounded by a porous plate with uniform suction or blowing.
Abstract
An initial value investigation is made of the motion of an incompressible, homogeneous, viscous fluid bounded by a porous plate with uniform suction or blowing. Both the plate and the fluid are in a state of solid body rotation with constant angular velocity about the z axis normal to the plate, and additionally a nontorsional oscillation of a given frequency is superimposed on the plate for the generation of an unsteady flow in the rotating system. By using the Laplace transform technique, an exact solution of the three dimensional Navier‐Stokes equations for unsteady flow is obtained. The structure of the associated multiple boundary layers is determined. Effects of uniform suction (or blowing) and rotation on the flow phenomena are analyzed. Several known results of interest are found to follow as particular cases of the solution of the problem considered.

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Unsteady MHD free-convection flows on a porous plate with time-dependent heating in a rotating medium

TL;DR: In this article, the Laplace transform was used to determine the Green function of the free-convection flow of a viscous fluid near a porous infinite vertical plate in a rotating medium in the presence of a constant transverse magnetic field.
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Inertial oscillations and hydromagnetic multiple boundary layers in a rotating fluid

TL;DR: In this paper, an asymptotic analysis of the hydromagnetic flow in a semi-infinite expanse of an electrically conducting rotating viscous fluid bounded by an infinite non-conducting porous plate subjected to uniform suction or blowing in the presence of an external magnetic field is made.

Analytical Studies on Transient Rotating Flow of a Second Grade Fluid in a Porous Medium

TL;DR: In this article, a mathematical analysis of transient rotating flow of an incompressible second grade fluid in a porous medium is presented, where the flow motion is induced by a given but arbitrary inlet volume flow rate which varies with time.
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Effects of hall current on unsteady flow of a second grade fluid in a rotating system

TL;DR: In this paper, the authors investigated the rotational flow of a second grade conducting fluid on an infinite oscillating plate and found that an asymptotic solution exists in the presence of both suction and blowing at the plate.
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