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Air-Side Heat Transfer Performance of Louver Fin and Multi-Tube Heat Exchanger for Fuel-Cell Cooling Application

机译:百叶窗翅片和多管热交换器在燃料电池冷却应用中的空气侧传热性能

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摘要

The present work is performed to evaluate the heat transfer performance of a heat exchanger used in a fuel cell. Because of material constraints and performance requirements, a louver fin heat exchanger is modified for use with conventional micro-channel tubes and with multiple small-diameter tubes (a so-called multi-tube). Prototype heat exchangers are tested, and the air-side heat transfer, pressure drop, and fan power are measured in a wind tunnel and simulated using a commercial code. The air-side pressure drop and heat transfer coefficient of the multi-tubes show similar trends to those of the flat-tube heat exchanger if the contact resistance is negligible. The tube spacing of the prototype multi-tube heat exchangers has a small effect on the pressure drop and heat transfer, but it has a profound effect on air-side heat transfer performance because of the contact resistance between the tubes and louver fins. The air-side pressure drop agrees well with an empirical correlation for flat tubes.
机译:进行本工作以评估燃料电池中使用的热交换器的传热性能。由于材料限制和性能要求,对百叶窗式翅片热交换器进行了修改,以用于常规的微通道管和多个小直径管(所谓的多管)。测试了原型热交换器,并在风洞中测量了空气侧的传热,压降和风扇功率,并使用商业代码进行了模拟。如果接触电阻可以忽略,则多管的空气侧压降和传热系数与扁平管热交换器的趋势相似。原型多管式换热器的管间距对压降和传热的影响很小,但由于管和百叶窗散热片之间的接触电阻,对空气侧的传热性能影响很大。空气侧压降与扁管的经验相关性很好。

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