首页> 外文会议>9th International conference on fuel cell science, engineering, and technology 2011 >PERFORMANCE STUDY OF A BI-CELL PIEZOELECTRIC PROTON EXCHANGE MEMBRANE FUEL CELL WITH A NOZZLE AND DIFFUSER
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PERFORMANCE STUDY OF A BI-CELL PIEZOELECTRIC PROTON EXCHANGE MEMBRANE FUEL CELL WITH A NOZZLE AND DIFFUSER

机译:带有喷嘴和扩散器的双细胞压电质子交换膜燃料电池的性能研究

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Previous studies of a bi-cell piezoelectric proton exchange membrane fuel cell with a nozzle and diffuser (PZT-PEMFC-ND bi-cell) have shown that the performance of the PZT-PEMFC-ND bi-cell could be 1.6 times greater than that of the single cell when the proper aspect ratio (AR) of 11.25 and the diffuser angle of 5° are applied to the diffuser. In this study, the novel pseudo-bipolar bi-cell module was designated parallel with an 8 cm~2 reaction area, an AR of 5.63, and a diffuser angle 10°. The bi-cell module was operated under various operating conditions, including different operating temperatures, bi-cell circuit and intake module on anode, the performance of the bi-cell and the two component cells, and to optimize the integrated system output. The pump performance of the PZT-PEMFC-ND may be influenced by the asymmetric amplitude of the PZT device. The asymmetric amplitude results in different air flow rates through the cathode chamber of the component cells and in different current outputs for the component cells. For the different intake modules, the power of bi-cells at flow parallel and series will produce maximum power as 0.283 W cm"2 and 0.263 W cm~(-2), respectively. The power consumption of the PZT device should be taken into consideration when determining the net power of the PZT-PEMFC-ND bi-cell. In this study, the maximum net power of the bi-cell was found to be 0.7W.
机译:以前对带有喷嘴和扩散器的双电池压电质子交换膜燃料电池(PZT-PEMFC-ND双电池)的研究表明,PZT-PEMFC-ND双电池的性能可能比其高1.6倍。当适当的长宽比(AR)为11.25且漫射器角度为5°时,该单元格的角度会变大。在这项研究中,新型伪双极双电池模块被指定为平行于8 cm〜2的反应区域,AR为5.63,扩散角为10°。双电池模块在各种运行条件下运行,包括不同的工作温度,阳极上的双电池电路和进气模块,双电池和两个组成电池的性能以及优化集成系统输出。 PZT-PEMFC-ND的泵浦性能可能会受到PZT设备不对称幅度的影响。不对称的幅度导致通过组分电池的阴极室的空气流速不同,并且组分电池的电流输出不同。对于不同的进气模块,并联和串联流动时双电池的功率将分别产生最大功率,分别为0.283 W cm“ 2和0.263 W cm〜(-2)。应将PZT设备的功耗考虑在内在确定PZT-PEMFC-ND双电池的净功率时要考虑这一点,在这项研究中,发现双电池的最大净功率为0.7W。

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