关于高雷诺数下菱形圆柱表面上的幂律流体与筛网边界条件的分析

A. Memon, M. A. Memon, G. Shaikh, A. Obalalu
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引用次数: 0

摘要

本研究分析了菱形圆柱体上的幂律流体在固定于通道中间的活动滤网(与通道高度的长宽比为 0.5)的冲击下流动的物理方面。穿孔板是位于中间的滤网,特别是以 π/6、π/4 或 π/3 度的方向固定。雷诺数 (Re) 保持在 1000-10,000 之间,幂律指数保持在 0.8-1.2 之间。对于相应的二维问题,利用 COMSOL Multiphysics 5.4 软件中的非等温层流流体流动界面,对动量方程和能量方程进行了数值求解。菱形圆柱体上沿垂直无量纲长度方向的无量纲速度大小和无量纲温度可通过固定(Re)、筛网角 θ 和幂律指数中的任意两个参数来表示。除了所选圆柱体表面的无二维长度外,传热系数、有效导热系数和努塞尔特数也会被表示出来。最后,我们将就如何利用所选参数 Re、θ 和幂律指数 n 来增加动力学和热学变量提出建议。
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On the Analysis of Power Law Fluid over a Diamond Shaped Cylindrical Surface with Screen Boundary Conditions at High Reynolds Number
This study analyses physical aspects of power-law fluid flow over a diamond shaped cylinder under the impact of a movable screen fixed in the middle of a channel keeping an aspect ratio as 0.5 with height of the channel. The perforated plate is a screen at the middle especially settled at orientation of π/6, π/4 or π/3 degrees. The Reynolds number (Re) has been kept in the range of 1000-10,000 with power-law index in the range 0.8-1.2. For the corresponding two-dimensional problem, the governing momentum equations coupled with energy equation have been solved numerically using non-isothermal laminar fluid flow interface in the software COMSOL Multiphysics 5.4. The dimensionless velocity magnitude and the non-dimensional temperature on the diamond shaped cylinder along the vertical non-dimensional length are expressed via fixing any two parameters from (Re), angle of screen θ and power-law index. The heat transfer coefficient, effective thermal conductivity and the Nusselt number are also expressed besides the dimonsionless length of the surface of the chosen cylinder. In conclusion, we will be going to suggest points to increase the dynamics and thermal variables with the use of selected parameters Re, θ, and power law index n.
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