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Optimization of PEM fuel cell flow channels-modeling analysis and experimental tests

机译:PEM燃料电池流动通道的优化建模分析和实验测试

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The dimensions of gas flow channels and walls/ribs of PEM fuel cells are optimized using a convenient mathematical model. Experimental work for several PEM fuel cells with modeling-optimized gas flow channels was conducted, and the tested results validate the modeling work and the optimization. The model considered average mass transfer and species' concentrations in flow channels, which allows the determination of an average concentration polarization, the humidity in anode and cathode gas channels, and thus the proton conductivity of membranes, as well as the activation polarization. An electrical circuit for the current and ion conduction is applied to analyze the ohmic losses from anode current collector to cathode current collector. The modeling computation required relatively less computational time and thus can be applied to compute a large number of cases with various flow channel designs and operating parameters for optimization analysis. Optimum ratio of the width of flow channels against the walls/ribs was found from the modeling analysis. In the experimental work, PEM fuel cells were fabricated based on the flow channel dimensions optimized from the modeling analysis. Experimental results agreed with the modeling analysis satisfactorily in respect to the comparison of Ⅴ-Ⅰ performance between fuel cells with several optimized designs. The model is recommended as a tool for optimization design of gas flow channels for PEM fuel cells. The optimization results are of significance to the improvement of PEM fuel cell designs and performance.
机译:使用方便的数学模型优化了PEM燃料电池的气体流动通道和壁/肋的尺寸。进行了几种PEM燃料电池的实验工作,进行了建模优化的气体流动通道,并且测试结果验证了建模工作和优化。模型被认为是流动通道中的平均传质和物种浓度,其允许确定平均浓度偏振,阳极和阴极气体通道的湿度,从而进行膜的质子导电性,以及活化偏振。应用用于电流和离子传导的电路,分析从阳极集电器到阴极集电器的欧姆损耗。建模计算所需的计算时间相对较少,因此可以应用于计算具有各种流动通道设计和操作参数的大量情况以进行优化分析。从建模分析中发现了流动通道宽度与壁/肋的宽度的最佳比率。在实验工作中,基于从建模分析优化的流动通道尺寸来制造PEM燃料电池。实验结果同意令人满意的建模分析,了解燃料电池与几种优化设计的燃料电池之间的比较。该模型建议作为用于PEM燃料电池的气体流动通道的优化设计工具。优化结果对PEM燃料电池设计和性能的改进具有重要意义。

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