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A numerical study on uniform cooling of large-scale PEMFCs with different coolant flow field designs

机译:具有不同冷却剂流场设计的大型PEMFC均匀冷却的数值研究

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摘要

A uniform temperature distribution is important to obtain better control and higher performance of polymer electrolyte membrane fuel cells (PEMFCs). In PEMFCs, more than half of the chemical energy of hydrogen is converted into heat during the electrochemical generation of electricity. If not being properly exhausted, this reaction heat overheats the PEMFCs and thus impairs their performance and durability. In general, large-scale PEMFCs are cooled by liquid water that circulates through coolant flow channels in bipolar plates or in dedicated cooling plates. In this study, detailed fluid flow and heat transfer in large-scale cooling plates with 18 cm × 18 cm square area was simulated using a commercial computational fluid dynamics (CFD) code. Based on the CFD simulations, the performances of six different coolant flow field designs were assessed in terms of the maximum temperature, temperature uniformity, and pressure drop characteristics. The results demonstrated that multi-pass serpentine flow field (MPSFF) designs could significantly improve the uniformity of temperature distribution in a cooling plate compared with the conventional serpentine flow field designs, while maintaining the coolant pressure drop similar.
机译:均匀的温度分布对于获得更好的控制和更高性能的聚合物电解质膜燃料电池(PEMFC)至关重要。在PEMFC中,氢的化学能的一半以上在电化学发电过程中转化为热量。如果反应不充分,该反应热会使PEMFC过热,从而损害其性能和耐久性。通常,大型PEMFC由液态水冷却,液态水通过双极板或专用冷却板中的冷却剂流动通道循环。在这项研究中,使用商业计算流体力学(CFD)代码对面积为18 cm×18 cm的大型冷却板中的详细流体流动和传热进行了模拟。基于CFD模拟,根据最高温度,温度均匀性和压降特性评估了六种不同的冷却剂流场设计的性能。结果表明,与传统的蛇形流场设计相比,多通道蛇形流场(MPSFF)设计可以显着改善冷却板中温度分布的均匀性,同时保持冷却液压降相似。

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