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Thermal Assessment of Forced Convection Through Metal Foam Heat Exchangers

机译:通过金属泡沫热交换器进行强制对流的热评估

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摘要

Using a thermal resistance approach, forced convection heat transfer through metal foam heat exchangers is studied theoretically. The complex microstructure of metal foams is modeled as a matrix of interconnected solid ligaments forming simple cubic arrays of cylinders. The geometrical parameters are evaluated from existing correlations in the literature with the exception of ligament diameter which is calculated from a compact relationship offered in the present study. The proposed, simple but accurate, thermal resistance model considers: the conduction inside the solid ligaments, the interfacial convection heat transfer, and convection heat transfer to (or from) the solid bounding walls. The present model makes it possible to conduct a parametric study. Based on the generated results, it is observed that the heat transfer rate from the heated plate has a direct relationship with the foam pore per inch (PPI) and solidity. Furthermore, it is noted that increasing the height of the metal foam layer augments the overall heat transfer rate; however, the increment is not linear. Results obtained from the proposed model were successfully compared with experimental data found in the literature for rectangular and tubular metal foam heat exchangers.
机译:使用热阻方法,对通过金属泡沫热交换器的强制对流换热进行了理论研究。金属泡沫的复杂微观结构被建模为相互连接的固态韧带的矩阵,形成了简单的圆柱体立方阵列。几何参数是根据文献中现有的相关性进行评估的,但韧带直径除外,后者是根据本研究提供的紧密关系计算得出的。提出的,简单但准确的热阻模型考虑:固体韧带内部的传导,界面对流传热以及对(或从)固体边界壁的对流传热。本模型使进行参数研究成为可能。基于生成的结果,可以观察到来自加热板的传热速率与每英寸泡沫孔数(PPI)和坚固性有直接关系。此外,要注意的是,增加金属泡沫层的高度可以增加总的传热速率;因此,可以提高热传导率。但是,增量不是线性的。从建议的模型获得的结果已成功与矩形和管状金属泡沫热交换器的文献中的实验数据进行了比较。

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