MAGNETOHYDRODYNAMIC MIXED CONVECTION FLOW AND BOUNDARY LAYER CONTROL OF A NANOFLUID WITH HEAT GENERATION/ABSORPTION EFFECTS
Journal: International Journal of Mechanical Engineering and Technology(IJMET) (Vol.6, No. 6)Publication Date: 2015-06-26
Authors : M.CHANDRASEKAR; KASIVISWANATHAN;
Page : 18-32
Keywords : Iaeme Publication; IAEME; Mechanical; Engineering; IJMET;
Abstract
This research work is focused on the numerical solution of steady MHD mixed convection boundary layer flow of a nanofluid over a semi-infinite flat plate with heat generation/absorption and viscous dissipation effects in the presence of suction and injection. Gyarmati’s variational principle developed on the thermodynamic theory of irreversible processes is employed to solve the problem numerically. The governing boundary layer equations are approximated as simple polynomial functions, and the functional of the variational principle is constructed. The Euler-Lagrange equations are reduced to simple polynomial equation s in terms of momentum and thermal boundary layer thicknesses
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