Electro-Osmotic Blood Flow of Shear-Thinning Fluid with Hall Current and Wall Flexibility

Anum Tanveer, Bushrah Hameed, Tasawar Hayat, Ahmed Alsaedi
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Abstract

The presented article aims to present the flow of blood in microchannels such as veins and arteries via peristaltic flow. The magnetic field is imposed to regulate the flow as laminar. Also, its impacts in terms of Hall current have been considered. The rate of heat transfer is further based on Joule heating and viscous dissipation aspects. Mathematical analysis has been conducted given long wavelength and small Reynolds number. Such preferences are relatable to the medical domain where the magnetic field regulates the flow stream and aids in the melting of blood clots in patients with various heart diseases. The solution for electric potential is calculated analytically while the velocity, temperature, and heat transfer rate are executed directly via the built-in command of Mathematica software. Since the magnetic field acts as an opposing force. Results show that the velocity and temperature are decreasing functions of the magnetic field. However, the temperature is increasing for Weissenberg number.
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具有霍尔电流和壁柔韧性的剪切稀释流体的电渗透血流
本文旨在介绍血液在微通道如静脉和动脉中通过蠕动流动的流动。施加磁场以调节流为层流。此外,还考虑了其对霍尔电流的影响。传热速率进一步基于焦耳加热和粘性耗散方面。在波长长、雷诺数小的情况下,进行了数学分析。这种偏好与医学领域有关,在医学领域中,磁场调节血流,帮助各种心脏病患者融化血凝块。电势的求解是解析式的,速度、温度、换热率直接通过Mathematica软件的内置命令执行。因为磁场是一个相反的力。结果表明,速度和温度随磁场的变化呈递减关系。然而,对于Weissenberg数,温度是升高的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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