Title of article :
The Effect of Temperature Dependent Viscosity on MHD Natural Convection Flow from an Isothermal Sphere
Author/Authors :
Molla, M.M. North South University - Department of Electrical Engineering Computer Science, Bangladesh , Saha, S.C. Queensland University of Technology - School of Chemistry, Physics Mechanical Engineering, Australia , Hossain, M.A. COMSATS Institute of Information Technology - Department of Mathematic, Pakistan
From page :
25
To page :
31
Abstract :
Laminar magnetohydrodynamic (MHD) natural convection flow from an isothermal sphere immersed in a fluid with viscosity proportional to linear function of temperature has been studied. The governing boundary layer equations are transformed into a non-dimensional form and the resulting nonlinear system of partial differential equations are reduced to convenient form which are solved numerically by two very efficient methods, namely, (i) Implicit finite difference method together with Keller box scheme and (ii) Direct numerical scheme. Numerical results are presented by velocity and temperature distribution, streamlines and isotherms of the fluid as well as heat transfer characteristics, namely the local skin-friction coefficients and the local heat transfer rate for a wide range of magnetohydrodynamicparamagnet and viscosity-variation parameter
Keywords :
Natural convection , MHD , Temperature dependent viscosity , Finite difference , Sphere
Journal title :
Journal of Applied Fluid Mechanics (JAFM)
Journal title :
Journal of Applied Fluid Mechanics (JAFM)
Record number :
2591529
Link To Document :
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