首页> 外文期刊>Progress in computational fluid dynamics >Magneto micro-polar flow considering weak concentration over a vertical porous surface in the presence of viscous dissipation and Ohmic heating: effects of Hall and ion-slip currents
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Magneto micro-polar flow considering weak concentration over a vertical porous surface in the presence of viscous dissipation and Ohmic heating: effects of Hall and ion-slip currents

机译:考虑粘性消散和欧姆加热的情况下,考虑到垂直多孔表面上浓度较弱的磁微极性流:霍尔电流和离子滑移电流的影响

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摘要

The present paper dealing with the effects of Hall and ion-slip currents on the flow of a steady, viscous, incompressible, electrically conducting micro-polar fluid past a vertical plate in a saturated porous medium has been studied for the case of a weak concentration. The effects of viscous dissipation and Ohmic heating are incorporated in the energy equation. Governing partial differential equations are reduced to a system of ordinary differential equations by the usual method of similarity transformation and then solved numerically with the Nachtsheim-Swigert shooting iteration technique based on the Runge-Kutta sixth order iteration scheme. The expressions for the non-dimensional velocity, angular velocity and temperature profiles are shown graphically for different values of the Prandtl number Pr, micro-polar parameter A, Grashof number Gr, permeability parameter K_2, magnetic field parameter M, Hall parameter β_e, ion-slip parameter β_1 and micro-rotational parameter A. Further, the effects of the problem parameters on skin friction coefficients due to primary and secondary velocity, local couple stress and the local Nusselt number are constructed graphically. Comparisons with previous published works are performed and the results are found to be in favourable agreement.
机译:本文研究了霍尔和离子滑移电流对饱和多孔介质中稳定的,粘性的,不可压缩的导电微极性流体通过垂直板流过垂直多孔板的影响。 。能量耗散中包含了粘性耗散和欧姆加热的影响。通过相似性变换的常用方法,将控制的偏微分方程简化为一个常微分方程组,然后使用基于Runge-Kutta六阶迭代方案的Nachtsheim-Swigert射击迭代技术进行数值求解。图形化地显示了不同尺寸的Prandtl数Pr,微极参数A,Grashof数Gr,磁导率参数K_2,磁场参数M,Hall参数β_e,离子的无量纲速度,角速度和温度曲线的表达式滑动参数β_1和微旋转参数A。此外,以图形方式构造了问题参数对由初次和二次速度,局部偶应力和局部Nusselt数引起的皮肤摩擦系数的影响。与以前发表的作品进行了比较,结果相吻合。

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  • 来源
    《Progress in computational fluid dynamics》 |2012年第6期|p.415-426|共12页
  • 作者单位

    Faculty of Science and IT, Department of Basic Science (Mathematics), American International University-Bangladesh (AIUB), Banani, Dhaka 1213, Bangladesh;

    Department of Mathematics, University of Dhaka, Dhaka 1000, Bangladesh;

    Faculty of Science, Mathematics Department, Assiut University, Assiut 71516, Egypt;

    Department of Thermo and Fluid Mechanics, Transylvania University, Bdul Eroilor, 29, Brasov, 2200, Romania;

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