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Metal foams as compact high performance heat exchangers

机译:金属泡沫作为紧凑型高性能热交换器

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Open-cell metal foams with an average cell diameter of 2.3 mm were manufactured from 6101-T6 aluminum alloy and were compressed and fashioned into compact heat exchangers measuring 40.0 mm x 40.0 mm x 2.0 mm high, possessing a surface area to volume ratio on the order of 10,000 m~2/m~3. They were placed into a forced convection arrangement using water as the coolant. Heat fluxes measured from the heater-foam interface ranged up to 688 kW m~(-2), which corresponded to Nusselt numbers up to 134 when calculated based on the heater-foam interface area of 1600 mm~2 and a Darcian coolant flow velocity of approximately 1.4 m/s. These experiments performed with water were scaled to estimate the heat exchangers' performance when used with a 50% water-ethylene glycol solution, and were then compared to the performance of commercially available heat exchangers which were designed for the same heat transfer application. The heat exchangers were compared on the basis of required pumping power versus thermal resistance. The compressed open-cell aluminum foam heat exchangers generated thermal resistances that were two to three times lower than the best commercially available heat exchanger tested, while requiring the same pumping power.
机译:用6101-T6铝合金制造平均气泡直径为2.3毫米的开孔金属泡沫,并将其压缩并制成高40.0毫米x 40.0毫米x 2.0毫米的紧凑型热交换器,在表面上具有表面积与体积之比。约10,000 m〜2 / m〜3将它们放置在使用水作为冷却剂的强制对流装置中。从加热器-泡沫界面测得的热通量范围高达688 kW m〜(-2),根据1600mm〜2的加热器-泡沫界面面积和Darcian冷却剂流速计算得出的Nusselt值高达134。约为1.4 m / s。将用水进行的这些实验按比例缩放以评估热交换器在使用50%水-乙二醇溶液时的性能,然后将其与为相同传热应用设计的市售热交换器的性能进行比较。根据所需的泵送功率与热阻比较了热交换器。压缩的开孔铝泡沫换热器产生的热阻比测试的最佳商用换热器低两到三倍,同时需要相同的泵送功率。

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