4.7 Article

Peristaltic transport of a Newtonian fluid in a vertical asymmetric channel with heat transfer and porous medium

Journal

APPLIED MATHEMATICS AND COMPUTATION
Volume 215, Issue 1, Pages 185-196

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.amc.2009.04.067

Keywords

Peristalsis; Grashof number; Porous medium; Asymmetric channel; Trapping

Funding

  1. DRDO, Govt. of India [ERIP/ER/0304285/M/01]

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The problem of peristaltic flow of a Newtonian fluid with heat transfer in a vertical asymmetric channel through porous medium is studied under long-wavelength and low-Reynolds number assumptions. The flow is examined in a wave frame of reference moving with the velocity of the wave. The channel asymmetry is produced by choosing the peristaltic wave train on the walls to have different amplitudes and phase. The analytical solution has been obtained in the form of temperature from which an axial velocity, stream function and pressure gradient have been derived. The effects of permeability parameter, Grashof number, heat source/sink parameter, phase difference, varying channel width and wave amplitudes on the pressure gradient, velocity, pressure drop, the phenomenon of trapping and shear stress are discussed numerically and explained graphically. (C) 2009 Elsevier Inc. All rights reserved.

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