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Liquid Holdup in the Bipolar Plate Channels of a PEM Fuel Cell

机译:PEM燃料电池双极板通道中的液体滞留

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Numerical simulations using Surface Evolver are employed to determine the minimum liquid volume (critical volume) necessary to form a plug in a square channel of mixed wettability. The critical volume has direct implications on the water distribution in the flow fields of a PEM fuel cell, as well as on the pumping parasitic power loss. The liquid plug is placed in a channel bend having a contact angle on the GDL wall fixed to 110° and 150°. For each considered GDL, the critical volume is determined for different contact angles on the bipolar plate walls, ranging from 50° to 130°. The numerical data allows one to determine the liquid holdup in a channel bend of mixed wettability. These correlations can be used as an optimization tool for water management in channels of non-uniform wettability, accounting for the contact angle of the GDL and of the bipolar plate sides, as well as the in-plane geometry (bend dihedral).
机译:使用Surface Evolver进行的数值模拟可确定在混合润湿性的方形通道中形成塞子所需的最小液体体积(临界体积)。临界体积直接影响PEM燃料电池流场中的水分布,以及泵送寄生功率损耗。将液体塞子放置在通道弯头上,该弯头在GDL壁上的接触角固定为110°和150°。对于每个考虑的GDL,确定双极板壁上不同接触角(范围从50°到130°)的临界体积。数值数据可以确定混合润湿性的通道弯曲处的液体滞留率。这些相关性可以用作非均匀润湿性通道中水管理的优化工具,考虑了GDL和双极板侧的接触角以及平面内几何形状(弯曲二面角)。

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