探索多孔介质中的混合对流:热和流动行为

Q1 Mathematics
Shreedevi Kalyan , Mangala Kandagal , Jagadish V. Tawade , Nitin Satpute , M. Ijaz Khan , Nitiraj Kulkarni , Nargiza Kamolova , Manish Gupta
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引用次数: 0

摘要

本研究探讨了多孔介质内的混合对流,考虑了热产生或吸收的情况。重点是解决描述浓度、温度和速度分布的非线性微分方程,并为每个方程提供图形表示。值得注意的是,这项研究涉及了一个以前未被研究过的领域。利用正则摄动法,由无量纲化控制方程导出了非线性常微分方程的解。各种因素显著影响流体流动参数,揭示出有趣的现象。结果为不同孔隙特性(包括热温度、粘度比、宽度比、电导率比和Grashof数)的速度和温度分布提供了有价值的见解。由于多孔结构、粘度变化和电导差异等因素,可以观察到速度的降低。相反,随着格拉什夫数和宽高比的增加,流速也会增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring mixed convection in porous media: Thermal and flow behaviour
This study explores mixed convective flow within a porous medium, considering scenarios of heat generation or absorption. The focus is on solving the nonlinear differential equations that describe concentration, temperature, and velocity profiles, with graphical representations provided for each. Notably, this research addresses an area previously unexamined. By employing the regular perturbation method, solutions to the nonlinear ordinary differential equations, derived from the nondimensionalized governing equations, are achieved. Various factors significantly influence fluid flow parameters, revealing intriguing phenomena. The results offer valuable insights into velocity and temperature distributions across diverse porous characteristics, including thermal temperature, viscosity ratio, width ratio, conductivity ratio, and Grashof number. A decrease in velocity is observed due to factors such as the porous structure, viscosity variations, and conductance differences. Conversely, an increase in flow velocity is noted with higher Grashof numbers and width-to-height ratios.
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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
138
审稿时长
14 weeks
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