首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Non-Linear Radiation, Chemical Reaction, and Soret/Dufour Effects on Magnetohydrodynamic Natural Convection About a Permeable Horizontal Circular Cylinder in Non-Darcy Porous Media With Heat Source/Sink
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Non-Linear Radiation, Chemical Reaction, and Soret/Dufour Effects on Magnetohydrodynamic Natural Convection About a Permeable Horizontal Circular Cylinder in Non-Darcy Porous Media With Heat Source/Sink

机译:非线性辐射,化学反应和SORET / dufour / Dufour对磁性流体动力自然对流的影响,在具有热源/水槽的非达西多孔介质中的渗透水平圆柱体

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摘要

In this paper, the nonlinear radiation, chemical reaction, and Soret/Dufour effects on magnetohydrodynamic (MHD) natural convection about a permeable horizontal circular cylinder in non-Darcy porous media with heat source/sink are numerically analyzed. The surface of the horizontal circular cylinder is subjected to uniform wall temperature and uniform wall concentration (UWT/UWC). The governing equations are transformed into dimensionless, non-similar forms using suitable non-dimensional variables and then solved using Keller box method (KBM). Comparisons with previously published work are performed, and the results are found to be in an excellent agreement. Numerical data of the dimensionless temperature profile, the dimensionless concentration profile, the Nusselt number, and the Sherwood number are presented in graphic and tabular forms for the main parameters. The physical aspects of the problem are discussed in detail. The Nusselt number increases with increasing the Soret parameter, radiation parameter, and surface temperature ratio. Increasing the Dufour parameter, radiation parameter, surface temperature ratio, coefficient of space-dependent internal heat generation/absorption, and dimensionless chemical reaction parameter enhances the Sherwood number.
机译:本文在数值分析了非线性辐射,化学反应和对磁性流体动力学(MHD)自然对流的磁性动力学(MHD)自然对流的影响。水平圆柱体的表面经受均匀的壁温和均匀的壁浓度(UWT / UWC)。使用合适的非尺寸变量将控制方程转化为无量纲,非相似的形式,然后使用Keller Box方法(KBM)进行解决。进行了与先前发布的工作的比较,并发现结果处于一个很好的协议。为主要参数的图形和表格形式呈现无量纲温度曲线,无量纲浓度分布,露珠数和舍伍德数的数值数据。详细讨论了问题的物理方面。随着SORET参数,辐射参数和表面温度比的增加,营养号增加。增加Dufour参数,辐射参数,表面温度比,空间依赖性内部发热/吸收系数,无量纲化学反应参数增强了舍伍德数。

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