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Numerical analysis of natural convection heat transfer in a horizontal annulus partially filled with a fluid-saturated porous substrate

机译:局部充满流体饱和多孔基底的水平环空自然对流换热的数值分析

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The current study centers around a numerical investigation of natural convection heat transfer within a two-dimensional, horizontal annulus that is partially filled with a fluid-saturated porous medium. In addition, the porous sleeve is considered to be press fitted to the inner surface of the outer cylinder. Both cylinders are maintained at constant and uniform temperatures with the inner cylinder being subjected to a relatively higher temperature than the outer one. Moreover, the Forchheimer and Brinkman effects are taken into consideration when simulating the fluid motion inside the porous sleeve. Furthermore, the local thermal equilibrium condition is assumed to be applicable for the current investigation. The working fluid is air while copper is used to represent the solid phase. The porosity is considered to be uniform and constant with ε = 0.9. The main objective of this study is to examine the effect of the porous sleeve on the buoyancy induced flow motion under steady-state condition. Such an effect is studied using the following dimensionless parameters: Pr = 0.05-50, Ra = 10~2-10~6 and Da = 10~(-4)-10~(-6). Also, the study highlights the effect of the dimensionless porous sleeve thickness (b) and thermal conductivity ratio (k_s/k_f) in the range between 1.1-1.9 and 1-150, respectively.
机译:当前的研究围绕着二维水平水平环空内自然对流传热的数值研究,该环空中部分充满了流体饱和的多孔介质。另外,多孔套筒被认为是压配合到外筒的内表面上。两个气缸均保持恒定且均匀的温度,而内部气缸的温度要高于外部气缸的温度。此外,在模拟多孔套管内部的流体运动时,还要考虑到Forchheimer和Brinkman效应。此外,假定局部热平衡条件适用于当前研究。工作流体是空气,而铜用于表示固相。孔隙率被认为是均匀且恒定的,ε= 0.9。这项研究的主要目的是研究多孔套筒在稳态条件下对浮力引起的流动运动的影响。使用以下无因次参数来研究这种效果:Pr = 0.05-50,Ra = 10〜2-10〜6和Da = 10〜(-4)-10〜(-6)。此外,研究还强调了无量纲的多孔套筒厚度(b)和热导率比(k_s / k_f)分别在1.1-1.9和1-150之间的影响。

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