Heat and mass transfer on a MHD third grade fluid with partial slip flow past an infinite vertical insulated porous plate in a porous medium

被引:33
作者
Baoku, I. G. [1 ]
Olajuwon, B. I. [2 ]
Mustapha, A. O. [3 ]
机构
[1] Bells Univ Technol, Dept Phys Sci, Ota, Ogun State, Nigeria
[2] Fed Univ Agr, Dept Math, Abeokuta, Ogun State, Nigeria
[3] Fed Univ Agr, Dept Phys, Abeokuta, Ogun State, Nigeria
关键词
Heat and mass transfer; Magnetohydrodynamic flow; Third grade fluid; Porous medium; Partial slip; Insulated plate; STEADY FLOWS;
D O I
10.1016/j.ijheatfluidflow.2013.01.016
中图分类号
O414.1 [热力学];
学科分类号
摘要
The influence of third grade, partial slip and other thermophysical parameters on the steady flow, heat and mass transfer of viscoelastic third grade fluid past an infinite vertical insulated plate subject to suction across the boundary layer has been investigated. The space occupying the fluid is porous. The momentum equation is characterized by a highly nonlinear boundary value problem in which the order of the differential equation exceeds the number of available boundary conditions. An efficient numerical scheme of midpoint technique with Richardson's extrapolation is employed to solve the governing system of coupled nonlinear equations of momentum, energy and concentration. Numerical calculations were carried out for different values of various interesting non-dimensional quantities in the slip flow regime with heat and mass transfer and were shown with the aid of figures. The values of the wall shear stress, the local rate of heat and mass transfers were obtained and tabulated. The analysis shows that as the fluid becomes more shear thickening, the momentum boundary layer decreases but the thermal boundary layer increases; the magnetic field strength is found to decrease with an increasing temperature distribution when the porous plate is insulated. The consequences of increasing the permeability parameter and Schmidt number decrease both the momentum and concentration boundary layer thicknesses respectively whereas an increase in the thermal Grashof number gives rise to the thermal boundary layer thickness. (C) 2013 Elsevier Inc. All rights reserved.
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页码:81 / 88
页数:8
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