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Theoretical Analysis of Natural Convection in an Enclosure Filled with Disconnected Conducting Square Solid Blocks

机译:分离的导电正方形固体块填充的外壳中自然对流的理论分析

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摘要

Two different approaches have been implemented to interpret the existing data in Merrikh and Lage (2005a, in: Pop, Ingham, Transport Phenomena in Porous Media, Else-vier, Oxford) pertinent to the pore-scale simulation of natural convection in a laterally heated square enclosure filled with a fluid bathing discrete, disconnected and conducting solid blocks. Mathematical analysis of the problem based on the least squares method leads us to a Nu-Ra correlation with the solid-to-fluid thermal conductivity ratio and the porous medium permeability as the controlling parameters. In this study, while the porosity is fixed, the permeability is varied by changing either the block size or the number of blocks. Hence, three independent variables N, Ra, and ĸ being the number of blocks, Rayleigh number, and the conductivity ratio between the solid and the fluid, respectively, affect the overall heat transfer process. Based on a simplified thermal resistance approach, an alternative correlation is proposed to predict the Nusselt number as a function of the aforementioned parameters. Detailed analysis of the results and the expected errors are presented.
机译:已经采用了两种不同的方法来解释与横向加热中的自然对流的孔尺度模拟有关的Merrikh和Lage(2005a,in:Pop,Ingham,多孔介质中的传输现象,Else-vier,牛津)中的现有数据。方形外壳,填充有液体沐浴的离散,分离和导电的固体块。基于最小二乘法的问题的数学分析使我们得出了以固液导热系数和多孔介质渗透率为控制参数的Nu-Ra相关性。在这项研究中,虽然孔隙率是固定的,但通过改变块的大小或块的数量可以改变渗透率。因此,三个独立变量N,Ra和ĸ分别是嵌段数,瑞利数和固体与流体之间的电导率,它们会影响整个传热过程。基于简化的热阻方法,提出了一种替代的相关性,以根据上述参数预测Nusselt数。介绍了结果的详细分析和预期的错误。

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