纳米流体流经对流加热的移动可渗透圆柱表面的非稳态流动中的熵生成分析

Pub Date : 2024-07-12 DOI:10.24425/ather.2024.151221
Itumeleng Chokoe, O. Makinde, R. L. Monaledi
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引用次数: 0

摘要

本文研究了流经对流加热的脉冲移动可渗透圆柱表面的随温度变化的变粘度非稳态纳米流体流动中的熵产生率。基于修正的斯托克斯第一问题假设得到了控制方程,并利用适当的相似变量将其转换为非线性常微分方程。采用数值射击法和 Runge-Kutta Fehlberg 积分方案有效地解决了问题。图解并定量解释了相关参数对纳米流体速度、温度、皮肤摩擦、努塞尔特数、熵生成率和贝扬数的影响。研究发现,纳米粒子体积分数的增加会增强皮肤摩擦、努塞尔特数、熵产生率和贝扬数。
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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Analysis of entropy generation in unsteady flow of nanofluids past a convectively heated moving permeable cylindrical surface
This paper investigates entropy generation rate in a temperature-dependent variable viscosity unsteady nanofluid flow past a convectively heated impulsively moving permeable cylindrical surface. The governing equations based on the modified Stokes first problem assumption are obtained and transformed using appropriate similarity variables into nonlinear ordinary differential equations. The numerical shooting method together with the Runge-Kutta Fehlberg integration scheme are employed to effectively solve the problem. The effects of related parameters on the nanofluid velocity, temperature, skin friction, Nusselt number, entropy generation rate and Bejan number are displayed graphically and quantitatively explained. It is found that an upsurge in nanoparticles volume fraction enhances the skin friction, Nusselt number, entropy production rate and the Bejan number.
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