Double stratified stagnation-point flow of Williamson nanomaterial with entropy generation through a porous medium

Author:

Khan Muhammad Ijaz,Kiyani M.Z.,Hayat Tasawar,Faisal Javed Muhammad,Ahmad I.

Abstract

Purpose This paper aims to address double-stratified stagnation-point flow of Williamson nanomaterial with entropy generation. Flow through porous medium is discussed. Energy equation is modeled in existence of viscous dissipation, Brownian motion and thermophoresis. Furthermore, convective boundary conditions are considered. Total entropy rate is presented. Design/methodology/approach The non-linear flow expressions are converted to ordinary ones by implementation of suitable transformations. The obtained ordinary system is tackled for series solutions via homotopy analysis method. Findings Till date no one has considered the irreversibility analysis in stagnation-point flow of Williamson nanomaterial with double stratification, porous medium and convective conditions. The basic objective of present research is to investigate the convective stagnation point flow of Williamson liquid with entropy concept and porous medium. Originality/value As per the authors’ knowledge, no such work is yet present in the literature.

Publisher

Emerald

Subject

Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference59 articles.

1. MHD boundary-layer flow of an upper-convected maxwell fluid in a porous channel;Theoretical and Computational Fluid Dynamics,2006

2. On unsteady boundary layer flow of a second grade fluid over a stretching sheet;Advances in Theoretical and Applied Mechanics,2013

3. Hydromagnetic flow and heat transfer over a bidirectional stretching surface in a porous medium;Thermal Science,2011

4. Series solution for the radiation - conduction interaction on an unsteady MHD flow;Journal of Porous Media,2011

5. Unsteady axisymmetric flow of a second-grade fluid over a radially stretching sheet;Computers and Mathematics with Applications,2008

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