Performance Study of a Mimo-Shaped Cooling Plate in Pemfc Stack for Heat Transfer Enhancement

Xi Chen, Qinxiao Liu, Ye Fang, Lingxuan He, Taiming Huang, Yan Zhang, Z. Wan, Xiao-dong Wang
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Abstract

During the operation of high-power proton exchange membrane (PEM) fuel cell, huge heat is generated in the chemical reaction, which need be removed by efficient cooling design. To solve the problem of local overheating during PEMFC, a novel multi-input and output (MIMO) cooling flow field is proposed. The maximum temperature, temperature uniformity and pressure drop characteristics of the U-shaped and Z-shaped cooling flow fields with different MIMO channels configurations are researched by computational fluid dynamics (CFD) method. The results demonstrate that comparing with U-shaped cooling flow field, Z-shaped design can provide better temperature distribution with the same MIMO channel configuration. Moreover, the serpentine cooling flow field provides better cooling performance than parallel cooling flow field, but leads to higher pressure loss. Compared to other cases, Z-shaped serpentine MIMO channel presents the best cooling performance, reducing the maximum temperature value to 322.7 K.
Pemfc堆中mimo型冷却板强化传热性能研究
大功率质子交换膜(PEM)燃料电池在运行过程中,化学反应会产生巨大的热量,需要通过高效的冷却设计来散热。为了解决PEMFC的局部过热问题,提出了一种新型的多输入输出(MIMO)冷却流场。采用计算流体力学(CFD)方法研究了不同MIMO通道构型下u型和z型冷却流场的最高温度、温度均匀性和压降特性。结果表明,在相同的MIMO通道配置下,与u型冷却流场相比,z型设计可以提供更好的温度分布。蛇形冷却流场的冷却性能优于平行冷却流场,但压力损失较大。与其他情况相比,z形蛇形MIMO通道的冷却性能最好,最高温度值降至322.7 K。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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