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Liquid water quantification in the cathode side gas channels of a proton exchange membrane fuel cell through two-phase flow visualization

机译:通过两相流可视化量化质子交换膜燃料电池阴极侧气体通道中的液态水

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摘要

Water management is crucial to the performance of PEM fuel cells. Water is generated as part of the electrochemical reaction, and is removed through the reactant channels. This results in two-phase flow in the reactant channels. Increased understanding of the behavior of the liquid water in the channels allows us to devise better strategies for managing the water content inside the fuel cell. Most previous work has been focused on qualitative information regarding flow pattern maps. The current work presents new algorithms developed in MATLAB~® to quantify the liquid water and to identify the flow patterns in the cathode side reactant channels. Parallel channels with dimensions matching those of commercial stacks have been used in this study. The liquid water present in the reactant channels is quantified for different temperature, inlet RH and current density conditions, and the results are presented in terms of area coverage ratio. The dominant flow patterns for the differe it conditions have been mapped, and trends interpreted on the basis of air flow velocities and saturation conditions within the channels.
机译:水管理对于PEM燃料电池的性能至关重要。水作为电化学反应的一部分产生,并通过反应物通道除去。这导致在反应物通道中两相流动。对通道中液态水行为的更多了解使我们能够设计出更好的策略来管理燃料电池内部的水含量。以前的大多数工作都集中在有关流型图的定性信息上。当前的工作提出了在MATLAB®®中开发的新算法,用于量化液态水并确定阴极侧反应物通道中的流动模式。在这项研究中使用了具有与商用堆栈尺寸匹配的并行通道。对于不同的温度,入口RH和电流密度条件,对反应物通道中存在的液态水进行定量,并以面积覆盖率表示结果。绘制了不同条件下的主要流动模式,并根据通道内的气流速度和饱和条件解释了趋势。

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