非牛顿流体在会聚管道中的流动

Njue Caroline Wawira, M. Kinyanjui, K. Giterere
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引用次数: 2

摘要

在本研究中,研究了在可变横向磁场存在下,流体磁非牛顿(膨胀)流体在会聚导管中的流动。将控制非线性偏微分方程简化为常微分方程组。用配点法对这些方程进行了数值求解,并在MATLAB中实现。研究确定了流动廓形和流动参数对流动变量的影响。焦耳加热、变粘度、粘性耗散、表面摩擦、换热速率和感应磁场都被考虑在内。得到的结果用图形表示,不同的流动参数对表面摩擦系数和努塞尔数的影响用表格表示。结果表明,雷诺数、Eckert数和焦耳加热参数的增大增大了流体的速度,哈特曼数和非定常参数的增大减小了对流换热和流体的速度。此外,表面摩擦系数随雷诺数、哈特曼数和焦耳加热参数的增加而减小。因此,粘度较低的流体有利于流体的运动,但高磁场的存在会降低流体的运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydromagnetic Non-Newtonian Fluid Flow in a Convergent Conduit
In the present study, a hydromagnetic non-Newtonian (dilatant) fluid flow in a convergent conduit, in the presence of a variable transverse magnetic field, has been investigated. The governing nonlinear partial differential equations are reduced to system of ordinary differential equations. These equations are solved numerically by the collocation method and implemented in MATLAB. The study determines the flow profiles and the impact of the flow parameters on the flow variables. Joule heating, variable viscosity, viscous dissipation, skin friction, the rate of heat transfer, and the induced magnetic field are taken into account. The obtained results are presented graphically and the impact of varying flow parameters on the skin friction coefficient and the Nusselt number is presented in tabular form. These results indicate that an increase in the Reynolds number, Eckert’s number, and the Joule heating parameter increases the fluid’s velocity, while an increase in the Hartmann number and the unsteadiness parameter decreases the convective heat transfer and the fluid’s velocity. Further, the skin friction coefficient decreases with increase in the Reynolds number, the Hartmann number, and the Joule heating parameter. Therefore, a less viscous fluid is appropriate to facilitate the fluid’s motion, but the presence of high magnetic field reduces the fluid’s motion.
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