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Flow-Field Designs of Bipolar Plates in PEM Fuel Cells: Theory and Applications

机译:PEM燃料电池中双极板的流场设计:理论与应用

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摘要

A generalized model developed by Wang was modified for flow field designs of the most common layout configurations with U-type arrangement, including single serpentine, multiple serpentine, straight parallel, and interdigitated configurations. A direct and quantitative relationship was established among flow distribution, pressure drop, configurations, structures, and flow conditions. The model was used for a direct, systematic, and quantitative comparison of flow distributions and pressure drops among the most common layout configurations of interest. The straight parallel configuration had the lowest pressure drops but suffered the most possibility of the uneven flow distribution across the channels. The single serpentine had the best flow distribution but had the highest pressure drops. The flow distribution and the pressure drop in the multiple serpentine was between the straight parallel and the single serpentine. Finally, we suggested basic criteria of the flow field designs of bipolar plates for the industrial applications. This provides a practical guideline to evaluate how far a fuel cell is from design operating conditions, and measures how to improve flow distribution and pressure drop.
机译:Wang开发的通用模型经过修改,适用于最常见的U型布置布局布局的流场设计,包括单蛇形,多蛇形,笔直平行和指叉形。在流量分布,压降,配置,结构和流量条件之间建立了直接和定量的关系。该模型用于对感兴趣的最常见布局配置中的流量分布和压降进行直接,系统和定量的比较。笔直的平行构型的压降最低,但跨通道的流量分布不均匀的可能性最大。单个蛇形具有最佳的流量分布,但具有最高的压降。多重蛇形管中的流量分布和压降介于笔直平行线和单一蛇形管之间。最后,我们提出了用于工业应用的双极板流场设计的基本准则。这为评估燃料电池与设计工况之间的距离提供了实用指南,并衡量了如何改善流量分配和压降。

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