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Hall effects on MHD couple stress fluid flow through a vertical microchannel subjected to heat generation: A numerical study

机译:霍尔效应MHD夫妇应力流体通过垂直微通道进行发热的垂直微通道:数值研究

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The present study analyzes the irreversibility in an electrically conducting couple stress fluid between two vertical channel plates with the aspects of exponential space and temperature-dependent, radiative heat flux, heat generation, and Joule heating. A reduced system of the governing equations is obtained via applying suitable nondimensional variables. To determine the solutions of velocity, thermal field, irreversibility, and irreversibility ratio, the Runge-Kutta-Fehlberg method along with the shooting technique has been employed. The various pertinent parameters that are involved in the problem have been discussed in detail through graphs. The results show that the entropy production can improve with the viscous dissipation, Joule heating, exponential space and temperature-dependent, and radiative heat flux. Furthermore, it is clear that the entropy enhances with wall ambient temperature difference, radiation parameter, and the effect is reversed with higher estimations of the fluid wall interaction parameter, couple stress parameter, and rarefaction. The present numerical results are compared with the existing results that are in good agreement.
机译:本研究通过指数空间和温度依赖性,辐射热通量,发热和焦耳加热,分析了两个垂直通道板之间的电导耦合应力流体中的不可逆性。通过施加合适的非潜能变量获得控制方程的减少系统。为了确定速度,热场,不可逆性和不可逆比的解决方案,已经采用了跑步-Kutta-Fehlberg方法以及拍摄技术。通过图表详细讨论了问题所涉及的各种相关参数。结果表明,熵产量可以通过粘性耗散,焦耳加热,指数空间和温度依赖性以及辐射热通量来改善。此外,很明显,熵增强了壁环境温差,辐射参数,并且效果具有更高的流体壁交互参数,耦合应力参数和稀疏的效果。将现有的数值结果与良好一致的现有结果进行比较。

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