Effect of thermal radiation and Hall current on heat and mass transfer of unsteady MHD flow of a viscoelastic micropolar fluid through a porous medium

被引:26
作者
Olajuwon, B. I. [1 ]
Oahimire, J. I. [2 ]
Ferdow, M. [3 ]
机构
[1] Fed Univ Agr, Dept Math, Abeokuta, Nigeria
[2] Univ Port Harcourt, Dept Math, Port Harcourt, Nigeria
[3] Univ Dhaka, Dept Math, Dhaka 1000, Bangladesh
来源
ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH | 2014年 / 17卷 / 04期
关键词
Micropolar fluid; Perturbation technique; Heat and mass transfer; Hall effect; Thermal radiation; Porous medium;
D O I
10.1016/j.jestch.2014.05.004
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Heat and mass transfer effects on unsteady flow of a viscoelastic micropolar fluid over an infinite moving permeable plate in a saturated porous medium in the presence of a transverse magnetic field with Hall effect and thermal radiation are studied. The governing system of partial differential equations is transformed to dimensionless equations using dimensionless variables. The dimensionless equations are then solved analytically using perturbation technique to obtain the expressions for velocity, microrotation, temperature and concentration. With the help of graphs, the effects of magnetic field parameter M, thermal radiation parameter Nr, Hall current parameter m, K, viscoelastic parameter a, and slip parameter h on the velocity, microrotation, temperature and concentration fields within the boundary layer are discussed. The result showed that increase in Nr and m increases translational velocity across the boundary layer while (alpha) decreases translational velocity in the vicinity of the plate but the reverse happens when away from the plate. As h increases the translational velocity across the boundary layer increases. The higher the values of Nr, the higher the micro-rotational velocity effect while m lowers it. Also the effects n, a, m, Nr, Pr and Sc on the skin friction coefficient, Nusselt number and Sherwood numbers are presented numerically in tabular form. The result also revealed that increase in n reduces the skin friction coefficient. Pr enhances the rate of heat transfer while Sc enhances the rate of mass transfer. Copyright (C) 2014, Karabuk University. Production and hosting by Elsevier B.V. All rights reserved.
引用
收藏
页码:185 / 193
页数:9
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