Please use this identifier to cite or link to this item: http://localhost:8080/xmlui/handle/123456789/756
Title: SECOND LAW ANALYSIS FOR A POROUS CHANNEL FLOW WITH ASYMMETRIC SLIP AND CONVECTIVE BOUNDARY CONDITIONS
Authors: Falade, J.A.
Adesanya, S.O.
Lebelo, S.R.
Kareem, S.O.
Keywords: asymmetric slip flow, asymmetric convective heating, entropy generation, irreversibility ratio, suction/injection, Poiseuille flow
Issue Date: 2017
Publisher: International Journal of Pure and Applied Mathematics
Citation: J.A. Falade, S.O. Adesanya, S.R. Lebelo, & S.O. Kareem. (2017). SECOND LAW ANALYSIS FOR A POROUS CHANNEL FLOW WITH ASYMMETRIC SLIP AND CONVECTIVE BOUNDARY CONDITIONS. International Journal of Pure and Applied Mathematics. Volume 115 No. 2 2017, 247-257
Series/Report no.: 115;2
Abstract: The present work addresses the entropy generation in the flow of an incompressible viscous fluid through porous parallel walls subjected to asymmetric slip and convective heating conditions. The differential equations for momentum and energy are formulated, made dimensionless, solved and used to compute the entropy generation rate in the flow channel. The effect of various physical parameters on the velocity, temperature and entropy generation profiles are presented graphically and discussed.
URI: http://localhost:8080/xmlui/handle/123456789/756
Appears in Collections:Physics

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