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Visualization of flooding in a single cell and stacks by using a newly-designed transparent PEMFC

机译:使用新设计的透明PEMFC可视化单个单元格和堆栈中的泛洪

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The flow phenomenon in the fuel-cell channels is difficult to understand and predict because of the two-phase flow. Proton exchange membrane fuel cells (PEMFCs) with transparent windows are widely used for visualizing the two-phase flow in the channels. In this paper, the visualization of the two-phase flow in the channels was accomplished under various current-density conditions using a transparent cell. The visualization of the single serpentine flow field clearly reveals that anode flooding is more severe than cathode flooding. The main cause for anode flooding is a low gas-flow rate in the channel because of the absence of the carrier gas. In addition, flooding is more significant under a low current-density condition than under a high current-density condition; under the latter condition, there is significantly more reaction heat that prevents flooding. The flow phenomena in the PEMFC stack were also visualized by electrically connecting three transparent cells in series and supplying fuel to each cell from a manifold. Sudden voltage drops and overshoots were detected, and the voltage fluctuations were found to be strongly related to flooding.
机译:由于两相流动,燃料电池通道中的流动现象难以理解和预测。具有透明窗口的质子交换膜燃料电池(PEMFC)被广泛用于可视化通道中的两相流动。在本文中,使用透明电池在各种电流密度条件下实现了通道中两相流动的可视化。单个蛇形流场的可视化清楚地表明,阳极溢流比阴极溢流更严重。阳极溢流的主要原因是由于缺少载气,导致通道中的气体流速低。另外,低电流密度条件下的泛洪比高电流密度条件下的泛滥更为严重。在后一种情况下,会有更多的反应热防止溢流。通过将三个透明电池串联电连接并从歧管向每个电池供应燃料,还可以看到PEMFC电池组中的流动现象。检测到突然的电压降和过冲,并且发现电压波动与水浸强烈相关。

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