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contributor authorAli J. Chamkha
date accessioned2017-05-09T00:05:16Z
date available2017-05-09T00:05:16Z
date copyrightMarch, 2001
date issued2001
identifier issn0098-2202
identifier otherJFEGA4-27160#43_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/125455
description abstractA continuum two-phase fluid-particle model accounting for particle-phase stresses and a body force due to the presence of a magnetic field is developed and applied to the problem of two-dimensional laminar hydromagnetic flow of a particulate suspension over a horizontal surface in the presence of a gravity field. Analytical solutions for the velocity distributions and the skin-friction coefficients of both phases are reported. Two cases of wall hydrodynamic (velocity) conditions corresponding to stationary and oscillatory velocity distributions are considered. Numerical evaluations of the analytical solutions are performed and the results are reported graphically to elucidate special features of the solutions. The effects of the particle-phase stresses and the magnetic field are illustrated through representative results for the horizontal velocity profiles, fluid-phase displacement thickness, and the complete skin-friction coefficient for various combinations of the physical parameters. It is found that the presence of the magnetic field increases the fluid-phase skin-friction coefficient for various particulate volume fraction levels while the presence of the particle-phase viscous stresses reduces it for various particle-to-fluid density ratios.
publisherThe American Society of Mechanical Engineers (ASME)
titleOn Two-Dimensional Laminar Hydromagnetic Fluid-Particle Flow Over a Surface in the Presence of a Gravity Field
typeJournal Paper
journal volume123
journal issue1
journal titleJournal of Fluids Engineering
identifier doi10.1115/1.1343460
journal fristpage43
journal lastpage49
identifier eissn1528-901X
keywordsGravity (Force)
keywordsFlow (Dynamics)
keywordsFluids
keywordsParticulate matter
keywordsEquations
keywordsMagnetic fields AND Density
treeJournal of Fluids Engineering:;2001:;volume( 123 ):;issue: 001
contenttypeFulltext


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