Engineering Science and Technology, an International Journal (Dec 2017)

Entropy generation due to double diffusive convective flow of Casson fluids over nonlinearity stretching sheets with slip conditions

  • Sameh E. Ahmed,
  • M.A. Mansour,
  • A. Mahdy,
  • Shadia S. Mohamed

DOI
https://doi.org/10.1016/j.jestch.2017.10.002
Journal volume & issue
Vol. 20, no. 6
pp. 1553 – 1562

Abstract

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The present paper deals with the effects of slip boundary conditions and chemical reaction on the heat and mass transfer by mixed convective boundary layer flow of a non-Newtonian fluid over a nonlinear stretching sheet. The Casson fluid model is used to characterize the non-Newtonian fluid behavior. First order chemical reactions are considered. Similar solutions are used to convert the partial differential equations governing the problem to ordinary differential equations. The velocity, temperature and concentration profiles are obtained, numerically, using the MATLAB function bvp4c and those are used to compute the entropy generation number. The effect of increasing values of the Casson parameter is found to suppress the velocity field and temperature distribution. But the concentration is enhanced with the increasing of Casson parameter. The viscous dissipation, temperature and concentration irreversibility are determined and discussed in details.

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