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The stokes problems for a conducting fluid with a suspension of particles
Authors:H T Yang and J V Healy
Institution:(1) Department of Aerospace Engineering, University of Southern California, 90007 Los Angeles, Cal., USA;(2) Department of Engineering Mathematics, The Queen's University, Belfast, N. Ireland UK
Abstract:The Stokes problems of an incompressible, viscous, conducting fluid with embedded small spherical particles over an infinite plate, set into motion in its plane by impulse and by oscillation, in the presence of a transverse magnetic field, are studied. The velocities of the fluid and of the particles and the wall shear stress are obtained. The stress is found to increase due to the particles and the magnetic field, with the effect of the particles diminishing as the field strength is increased.Nomenclature H 0 strength of the imposed magnetic field - k density ratio of particles to fluid (per unit volume of flow field) - m sgr e 2 H 0 2 /rgr - t time - y co-ordinate normal to the plate - u fluid velocity - v particle velocity - mgr e magnetic permeability of the fluid - ngr kinematic viscosity of the fluid - sgr electric conductivity of the fluid - rgr fluid density - tau particle relaxation time - ohgr frequency of oscillation of the plate
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