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Comparison of metal foam heat exchangers to a finned heat exchanger for low Reynolds number applications

机译:低雷诺数应用的金属泡沫热交换器与翅片热交换器的比较

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摘要

Due to its high porosity and large specific surface area, open-cell metal foam is an attractive material for heat transfer applications. In this article the performance of metal foam heat exchangers is compared to the performance of a bare tube bundle and the performance of an existing conventional louvered fin heat exchanger. A macroscopic model consisting of the Darcy-Forchheimer-Brinkman flow model and the thermal non-equilibrium energy model is used to perform two-dimensional simulations on metal foam heat exchangers. Because thermal design of heat exchangers is always a trade-off between heat transfer and pressure drop, both are considered together when evaluating the heat exchangers' performance. The foamed heat exchangers show up to 6 times higher heat transfer rate than the bare tube bundle at the same fan power. If the fins are replaced by metal foam while keeping the overall dimensions the same, the finned heat exchanger shows in all cases the best performance. However, a metal foam heat exchanger can outperform the finned heat exchanger if the frontal area is changed. Optimization is required to select the best foam parameters, material and dimensions. This clearly shows the potential of open-cell metal foam for high performance heat exchanger designs.
机译:由于其高孔隙率和大的比表面积,开孔金属泡沫是用于传热应用的有吸引力的材料。在本文中,将金属泡沫热交换器的性能与裸管束的性能以及现有的常规百叶窗式翅片热交换器的性能进行了比较。由Darcy-Forchheimer-Brinkman流模型和热非平衡能量模型组成的宏观模型用于对金属泡沫热交换器进行二维模拟。由于换热器的热设计始终是传热和压降之间的权衡,因此在评估换热器的性能时,应将两者同时考虑。在相同的风扇功率下,泡沫热交换器的传热率比裸管束高出6倍。如果在保持整体尺寸不变的情况下用金属泡沫代替散热片,则散热片式热交换器在所有情况下均表现出最佳性能。但是,如果改变正面面积,泡沫金属热交换器的性能将超过翅片式热交换器。需要进行优化以选择最佳的泡沫参数,材料和尺寸。这清楚地表明了开孔金属泡沫在高性能热交换器设计中的潜力。

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