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Transient analysis of gas transport in anode channel of a polymer electrolyte membrane fuel cell with dead-ended anode under pressure swing operation

机译:变压运行中具有死端阳极的聚合物电解质膜燃料电池阳极通道中气体传输的瞬态分析

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Further cost reduction is a critical issue for commercialization of fuel-cell electric vehicles (FCEVs) based on polymer electrolyte fuel cells (PEFCs). The cost of the fuel-cell system is driven by the multiple parts required to maximize stack performance and maintain durability and robustness. The fuel-cell system of the FCEV must be simplified while maintaining functionality. The dead-ended anode is considered as a means of simplification in this study. Generally, if hydrogen is supplied under constant pressure during dead-ended operation, stable power generation is impossible because of accumulation of liquid water produced by power generation and of nitrogen via leakage from the cathode through the membrane. Herein, pressure oscillation is applied to address this issue. Empirical and CFD data are employed to elucidate the mechanism of stable power generation using the pressure swing supply. Simultaneous and time-continuous measurements of the current distribution and gas concentration distribution are also conducted. The results demonstrate that the nitrogen concentration in the anode channel under pressure constant operation differs from that under pressure swing supply conditions. The transient two-dimensional CFD results indicate that oscillatory flow is generated by pressure swing supply, which periodically sweeps out nitrogen from the active area, resulting in stable power generation.
机译:对于基于聚合物电解质燃料电池(PEFC)的燃料电池电动车辆(FCEV)的商业化而言,进一步降低成本是关键问题。燃料电池系统的成本由最大化电池组性能并保持耐用性和坚固性所需的多个零件驱动。必须在保持功能的同时简化FCEV的燃料电池系统。无端阳极在本研究中被视为简化方法。通常,如果在无端操作期间在恒定压力下供应氢气,则由于发电产生的液态水的积累和由于从阴极到膜的泄漏而产生的氮气的积累,将无法稳定地发电。在此,施加压力振荡来解决该问题。经验数据和CFD数据用于阐明使用变压电源稳定发电的机理。同时进行电流分布和气体浓度分布的同时和时间连续测量。结果表明,在恒定压力操作下阳极通道中的氮浓度与在变压供给条件下的氮浓度不同。瞬态二维CFD结果表明,变压供给产生了振荡流,该供给周期性地从活动区域中清除了氮气,从而实现了稳定的发电。

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