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The dew point temperature as a criterion for optimizing the operating conditions of proton exchange membrane fuel cells

机译:露点温度是优化质子交换膜燃料电池运行条件的标准

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In this article an analytical method to calculate the dew point temperatures of the anode and cathode exit gas streams of a proton exchange membrane fuel cell is developed. The results of these calculations are used to create diagrams that show the dew point temperatures as function of the operating pressure, the stoichiometric flow ratios and the net drag coefficient of water through the membrane. Then, computational modeling results obtained with a previously published model are analyzed and compared with the dew point charts, and it is demonstrated how cell flooding or membrane dry-out can be predicted a priori with the aid of these diagrams. Finally, guidelines for the desired cell operating temperature based on the expected dew point temperatures are developed. In the current work these guidelines are limited to the interdigitated flow field design, and they are likely to be different for conventional flow field plates. The diagrams presented here are created for completely dry inlet gases, but they can be easily corrected for a nonzero inlet relative humidity.
机译:在本文中,开发了一种计算质子交换膜燃料电池阳极和阴极出口气流的露点温度的分析方法。这些计算的结果用于创建图表,显示露点温度与工作压力,化学计量流量比和水通过膜的净阻力系数的关系。然后,对使用先前发布的模型获得的计算建模结果进行分析,并将其与露点图进行比较,并证明了如何借助这些图可以预先预测细胞泛滥或膜变干。最后,制定了基于预期露点温度的所需电池工作温度的指南。在当前的工作中,这些指导原则仅限于叉指式流场设计,对于常规流场板而言,它们可能会有所不同。此处显示的图表是为完全干燥的进口气体创建的,但可以很容易地针对非零的进口相对湿度进行校正。

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