Effects of Thermal Radiation on Hydromagnetic Flow due to a Porous Rotating Disk with Hall EffectJournal Of Applied Fluid Mechanics
Radiation effect on steady laminar hydromagnetic flow of a viscous, Newtonian and electrically conducting fluid past a porous rotating infinite disk is studied taking Hall current into account. The system of axisymmetric nonlinear partial differential equations governing the MHD flow and heat transfer are reduced to nonlinear ordinary differentialequations by introducing suitable similarity variables introduced by von Karman and the resulting nonlinear equations are solved numerically using Runge–Kutta based shooting method. A parametric study of all parameters involved was conducted and a representative set of results showing the effect of the magnetic field, the radiationparameter, the uniform suction\injection parameter and Hall parameter are illustrated graphically. The numerical values of the radial and tangential skin–friction coefficient and Nusselt number are calculated and displayed in the tables showing the effects of various parameters. Finally, a good comparison between the present numericalpredictions and the previously published data are presented in the absence of magnetic field and radiation.
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