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化学反应对竖直平板边界磁流体动力学微极流体滑流的影响
引用本文:R.C.乔德哈瑞,A.K.吉哈. 化学反应对竖直平板边界磁流体动力学微极流体滑流的影响[J]. 应用数学和力学(英文版), 2008, 29(9): 1179-1194. DOI: 10.1007/s10483-008-0907-x
作者姓名:R.C.乔德哈瑞  A.K.吉哈
摘    要:Heat and mass transfer effects on the unsteady flow of a micropolar fluid through a porous medium bounded by a semi-infinite vertical plate in a slip-flow regime are studied taking into account a homogeneous chemical reaction of the first order. A uniform magnetic field acts perpendicular to the porous surface absorb micropolar fluid with a suction velocity varying with time. The free stream velocity follows an exponentially increasing or decreasing small perturbation law. Using the approximate method, the expressions for the velocity microrotation, temperature, and concentration are obtained. Futher, the results of the skin friction coefficient, the couple stress coefficient, and the rate of heat and mass transfer at the wall are presented with various values of fluid properties and flow conditions.

关 键 词:微极流体  微转动  化学反应  滑流  磁流体动力学  传热和传质  
收稿时间:2007-03-12

Effects of chemical reactions on MHD micropolar fluid flow past a vertical plate in slip-flow regime
R. C. Chaudhary,Abhay Kumar Jha. Effects of chemical reactions on MHD micropolar fluid flow past a vertical plate in slip-flow regime[J]. Applied Mathematics and Mechanics(English Edition), 2008, 29(9): 1179-1194. DOI: 10.1007/s10483-008-0907-x
Authors:R. C. Chaudhary  Abhay Kumar Jha
Affiliation:Department of Mathematics, University of Rajasthan, Jaipur-302004, India
Abstract:Heat and mass transfer effects on the unsteady flow of a micropolar fluid through a porous medium bounded by a semi-infinite vertical plate in a slip-flow regime are studied taking into account a homogeneous chemical reaction of the first order.A uniform magnetic field acts perpendicular to the porous surface absorb micropolar fluid with a suction velocity varying with time.The free stream velocity follows an exponentially increasing or decreasing small perturbation law.Using the approximate method,the expressions for the velocity microrotation,temperature,and concentration are obtained.Futher,the results of the skin friction coefficient,the couple stress coefficient,and the rate of heat and mass transfer at the wall are presented with various values of fluid properties and flow conditions.
Keywords:micropolar fluid  microrotation  chemical reaction  slip-flow  magnetohydrodynamics  heat and mass transfer
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