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MASS TRANSPORT ANALYSIS IN A PULSATING CATHODE FLOW OF PEM FUEL CELL

机译:PEM燃料电池脉动阴极流中的传质分析

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A theoretical and experimental study is performed for the mass transfer enhancement by a cathode flow pulsation in a fuel cell. The cathode flow pulsation is considered to reduce the stoichiometry of air. Emphasis is given to explicit role of the cathode flow pulsation on the mass transfer enhancement over the electrode surface. A simple 2D mass transport model for a pulsating cathode flow is developed to investigate the effect of cathode flow pulsation on the oxygen concentration distribution over the cathode channel length in the mass transfer limit situation. Comprehensive analytic solutions disclose the improved concentration distribution by the flow pulsation, which increases mass transfer from the cathode channel to the catalyst layer. Enhancement of mass transport is more pronounced at lower Reynolds numbers. The performance enhancement by flow pulsation is shown to be consistent with the experiment of a 10-cell proton exchange membrane fuel cell stack. The effects of the pulsating frequency on the fuel cell performance are examined at a fixed pulsating velocity amplitude. The experimental results obtained show that both the maximum power density and limiting current density are substantially enhanced when the pulsating component is added to cathode mainstream flow.
机译:为了通过燃料电池中的阴极流脉动来进行传质增强而进行了理论和实验研究。阴极流脉动被认为降低了空气的化学计量。强调了阴极流脉动对电极表面传质增强的显式作用。建立了用于脉动阴极流的简单二维质量传输模型,以研究在传质极限情况下阴极流脉动对阴极通道长度上氧气浓度分布的影响。全面的分析解决方案公开了通过流动脉动改善的浓度分布,这增加了从阴极通道到催化剂层的质量转移。在较低的雷诺数下,传质的增强更为明显。通过流动脉动提高的性能显示出与10单元质子交换膜燃料电池堆的实验一致。在固定的脉动速度振幅下检查脉动频率对燃料电池性能的影响。获得的实验结果表明,当将脉动分量添加到阴极主流中时,最大功率密度和极限电流密度都得到了显着提高。

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