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首页> 外文期刊>International Journal of Thermophysics >The Simplified Analytical Models for Evaluating the Heat Transfer Performance of High-Porosity Metal Foams
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The Simplified Analytical Models for Evaluating the Heat Transfer Performance of High-Porosity Metal Foams

机译:用于评估高孔隙金属泡沫传热性能的简化分析模型

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摘要

The accurate evaluation of the specific surface area and the effective thermal conductivity (ETC) of high-porosity metal foams is an important prerequisite to study the mechanism of heat transfer enhancement. In this paper, the tetrakaidecahedron, concave triangular prism and equivalent tetrahedron were used to develop the geometry shapes of cell, ligament and node, respectively. The calculation model of the specific surface area characterized by porosity and pore density (PPI) was deduced by considering the shape characteristics. Based on the angle between the two-dimensional plane skeleton layer and the heat flow direction, the ETC analytical calculation model characterized by only the porosity in the three-dimensional space was deduced. Without any other fitting or experimental empirical parameters, these two models are only related to porosity and PPI, which are the most readily available parameters for the metal foams. The results of these models are consistent with the experimental and empirical data in other literature, indicating that these models are both versatile and accurate.
机译:高孔隙金属泡沫的比表面积和有效导热率(ETC)的准确评价是研究热传递增强机理的重要前提。在本文中,使用四边形川梁,凹三角棱镜和等效四面体分别用于开发细胞,韧带和节点的几何形状。通过考虑形状特性推导出具有孔隙率和孔密度(PPI)的特定表面积的计算模型。基于二维平面骨架层和热流动方向之间的角度,推导出仅推出仅具有三维空间中孔隙率的ETC分析计算模型。在没有任何其他配件或实验性经验参数的情况下,这两种模型仅与孔隙率和PPI有关,这是金属泡沫最容易获得的参数。这些模型的结果与其他文献中的实验和经验数据一致,表明这些模型既具有通用和准确。

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