Micropolar Fluid Flow with Hall Effect and Mass Transfer in a Porous Medium

Omokhuale, E., Uwanta, I. J., Ahmad, K.
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Abstract

The unsteady flow of a micropolar fluid in a porous medium has been studied, taking the effect of Hall parameter and mass transfer into account. The resulting dimensionless partial differential equations were solved analytically using perturbation technique with a view to obtain solutions for the velocity, angular velocity, temperature and concentration distributions, as well as the Skin friction. The influence of various parameters governing the flow such as; the thermal Grashof number, Hartmann number, mass Grashof number, Schmidt number, Prandtl number, permeability Parameter, time and Hall parameter on the flow field. We observed that, the velocity increases with the increase in mass and thermal Grashof number and it decreases with increase in magmetic parameter, Hall current, permeability parameter, Schmidt number, and Prandtl number. Temperature decreases with increase in Prandtl number and concentration decreases with the increase in Schmidt number.
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多孔介质中具有霍尔效应和传质的微极流体流动
研究了微极流体在多孔介质中的非定常流动,考虑了霍尔参数和传质的影响。利用微扰技术对得到的无量纲偏微分方程进行解析求解,得到了速度、角速度、温度、浓度分布以及蒙皮摩擦的解。控制流量的各种参数的影响,如;热格拉什夫数、哈特曼数、质量格拉什夫数、施密特数、普朗特数、磁导率参数、时间和霍尔参数对流场的影响。我们观察到,速度随质量和热格拉什夫数的增加而增加,随磁参量、霍尔电流、磁导率参量、施密特数和普朗特数的增加而减小。温度随普朗特数的增加而降低,浓度随施密特数的增加而降低。
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