Please use this identifier to cite or link to this item: http://gukir.inflibnet.ac.in:8080/jspui/handle/123456789/4600
Title: Heat transfer in a Walter's liquid B fluid over an impermeable stretching sheet with non-uniform heat source/sink and elastic deformation
Authors: Nandeppanavar M.M
Abel M.S
Tawade J.
Keywords: Elastic deformation
Impermeable stretching sheet
Non-uniform heat source/sink
Viscous dissipation
Walter's liquid B
Issue Date: 2010
Citation: Communications in Nonlinear Science and Numerical Simulation , Vol. 15 , 7 , p. 1791 - 1802
Abstract: In this present article an analysis is carried out to study the boundary layer flow behavior and heat transfer characteristics in Walter's liquid B fluid flow. The stretching sheet is assumed to be impermeable, the effects of viscous dissipation, non-uniform heat source/sink in the presence and in the absence of elastic deformation (which was escaped from attention of researchers while formulating the viscoelastic boundary layer flow problems)on heat transfer are addressed. The basic boundary layer equations for momentum and heat transfer, which are non-linear partial differential equations, are converted into non-linear ordinary differential equations by means of similarity transformation. Analytical solutions are obtained for the resulting boundary value problems. The effects of viscous dissipation, Prandtl number, Eckert number and non-uniform heat source/sink on heat transfer (in the presence and in the absence of elastic deformation) are shown in several plots and discussed. Analytical expressions for the wall frictional drag coefficient, non-dimensional wall temperature gradient and non-dimensional wall temperature are obtained and are tabulated for various values of the governing parameters. The present study reveals that, the presence of work done by deformation in the energy equation yields an augment in the fluid's temperature. © 2009 Elsevier B.V. All rights reserved.
URI: 10.1016/j.cnsns.2009.07.009
http://gukir.inflibnet.ac.in:8080/jspui/handle/123456789/4600
Appears in Collections:1. Journal Articles

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