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Effect of stack orientation on the performance of H2/Air PEM fuel cell

机译:堆叠取向对H 2 / AIR PEM燃料电池性能的影响

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An Experimental study has been carried out to investigate the effect of stack orientation at different cathode air flow rate on the performance of H2/Air PEM fuel cell. A 25 cm2 single cell with serpentine anode and straight cathode flow channels is used. An orientation mechanism has been designed to facilitate the orientation position of the fuel cell stack. Performance of the fuel cell is characterized through analysis of the polarization and the power density vs. current density curves as well as the hydrogen utilization and the cell electric efficiency. The hydrogen flow rate, cathode air temperature and relative humidity are kept constant at 60 ml/min, 20 °C and 80 %, respectively, while the cathode air flow rate values are 220, 440 and 660 sml/min in addition to the free breathing case. Obtained results show that, cell orientation has a significant effect on the performance of the fuel cell. It can be concluded that optimum cell orientation values are 30° for cathode air flow rate 220 sml/min and 90° for free breathing, 440 sml/min and 660 sml/min cases.
机译:已经进行了实验研究,以研究H 2 / AIR PEM燃料电池的性能对不同阴极空气流速的堆叠取向的影响。使用具有蛇形阳极和直阴极流动通道的25cm 2 单电池。设计了方向机构以促进燃料电池堆的方向位置。燃料电池的性能通过分析极化和功率密度与电流密度曲线以及氢利用和电池电效率的特征。除了自由之外,氢气流速分别在60ml / min,20℃和80%处保持恒定,分别在60ml / min,20℃和80%上保持恒定,而阴极空气流量值为220,440和660 sml / min呼吸案例。得到的结果表明,细胞取向对燃料电池的性能具有显着影响。可以得出结论,对于阴极空气流速220 SML / min,90°,最佳细胞取向值是30°,可自由呼吸,440个SML / min和660个SML / min案例。

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