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Analysis of Entropy Generation of MHDMicropolar Fluid through a Rectangular Duct with Effect of InducedMagnetic Field and Slip Boundary Conditions

International Journal of Advances in Applied Mathematics and Mechanics • 2020
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Publication Information
Authors A. A. El Desouky, Hassan Nasr Ahamed Ismail, AlyMaher Abourabia, D. A. Hammad, Nasrelden A. Ahmed
Keywords Entropy generation, MHD, Micropolar fluid, Rectangular duct, Slip flow, Slip convection, Induced, magnetic field
Journal International Journal of Advances in Applied Mathematics and Mechanics
Publisher Not Available
Volume 7
Issue 3
Pages 31-42
publication.type International
Paper Link Open Link
Supplementary Materials Not Available
Abstract
The entropy generation and Bejan numbers (Be,Bm and B f ) for steady, incompressible and laminar micropolar fluid through a rectangular duct with the effects of slip flow and slip convective boundary conditions are calculated. The flow is induced by a constant pressure gradient under an external magnetic field applied in a perpendicular plane to the flow direction. The governing nonlinear partial differential equations of momentum, induction, microrotations, and the energy is used to evaluate the entropy generation and Bejan number numerically using the finite difference method. The effect of various parameters and numbers such as Hartman, Brinkman, Reynolds, magnetic Reynolds, coupling numbers, slip flow and convective parameters is represented graphically.