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首页> 外文期刊>Journal of power sources >Examination of optimal separator shape of polymer electrolyte fuel cell with numerical analysis including the effect of gas flow through gas diffusion layer
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Examination of optimal separator shape of polymer electrolyte fuel cell with numerical analysis including the effect of gas flow through gas diffusion layer

机译:通过包括气体流过气体扩散层的影响在内的数值分析检查聚合物电解质燃料电池的最佳隔板形状

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摘要

This work concentrates on the effects of channel depth and separator shape on cell output performance, current density distribution and gas flow condition in various conditions with PEFC numerical analysis model including gas flow through GDL. When GDL effective porosity was small, the effect of gas flow through GDL which was changed by channel depth on cell output performance became large. However, current density distribution was ununiform. As GDL permeability became larger, cell output density increased, but current density and gas flow rate distribution were ununiform. From the results of changing the gas flow rate, it was found that the ratio of the minimum gas flow rate to the inlet flow rate depended on channel depth. Furthermore, the optimal separator, which increased output density and made the current density distribution and gas flow rate distribution uniform, was examined. It was also found that cell performance had possible to be developed by improving the turning point of the serpentine separator.
机译:这项工作通过PEFC数值分析模型(包括通过GDL的气体流量),着重研究了通道深度和隔板形状对各种条件下电池输出性能,电流密度分布和气体流动条件的影响。当GDL有效孔隙率较小时,流经GDL的气流随通道深度而变化对电池输出性能的影响变大。但是,电流密度分布不​​均匀。随着GDL渗透率变大,细胞输出密度增加,但电流密度和气体流速分布不均匀。从改变气体流速的结果,发现最小气体流速与入口流速的比率取决于通道深度。此外,研究了最佳的分离器,该分离器增加了输出密度,并使电流密度分布和气体流速分布均匀。还发现可以通过改善蛇形隔板的转折点来提高电池性能。

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