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Effects of Hall Current and Ion Slip in Peristalsis with Temperature-Dependent Viscosity

机译:霍尔电流和离子滑移对温度依赖性粘度的蠕动的影响

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摘要

This paper deals with two-dimensional peristaltic flow of a viscous fluid in a symmetric channel for variable temperature-dependent viscosity. The effects of Hall current, ion slip, viscous dissipation, and Ohmic heating are also taken into consideration. The problem is formulated in terms of governing equations using conservation laws of mass, momentum, and energy. Using a series solution an approximate asymptotic solution is obtained by the method of perturbation expansion in terms of a small viscosity parameter under standard assumptions of long wavelength and low Reynolds number for the peristaltic transport of fluid. The results are presented graphically to demonstrate the behavior of field quantities under the influence of different physical parameters. However, special attention is given to the effects of variable viscosity and dissipation on the peristaltic flow (the new features added in the present study). It is observed that the maximum pressure rise against which peristalsis works as a pump decreases as a result of increasing viscosity parameter and Brinkman number. The heat transfer in variable-viscosity fluid is found to be smaller in comparison with constant-viscosity fluid.
机译:本文研究了在对称通道中粘性流体的二维蠕动流,该粘度随温度变化而变化。还考虑了霍尔电流,离子滑移,粘性耗散和欧姆加热的影响。该问题是根据使用质量,动量和能量的守恒定律的控制方程式提出的。使用级数解,在长波长和低雷诺数的标准假设下,通过扰动扩展的方法,根据较小的粘度参数,获得了一种近似渐近解,用于液体的蠕动传输。结果以图形方式显示,以证明在不同物理参数的影响下场量的行为。但是,要特别注意可变粘度和耗散对蠕动流动的影响(本研究中添加的新功能)。可以看到,随着粘度参数和布林克曼数的增加,蠕动泵的最大压力上升减小。发现与恒定粘度的流体相比,在可变粘度的流体中的热传递较小。

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