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Measurement of flow maldistribution in parallel channels and its application to ex-situ and in-situ experiments in PEMFC water management studies

机译:并行通道中流量分布不均的测量及其在PEMFC水管理研究中的异位和原位实验中的应用

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摘要

Uniform flow distribution is critical to obtaining high performance in many heat and mass transfer devices. It also plays an important role in the effective operation of a proton exchange membrane fuel cell (PEMFC). Presently there are a few theoretically based models available for predicting flow distribution in individual fuel cell channels and across fuel cell stacks in PEMFCs, but little or no experimental data has been published on the actual flow rates measured in individual channels. This is mainly because of the lack of experimental techniques available to measure the instantaneous flow rates in parallel channels. In this work, a novel technique based on the entrance region pressure drop measurements is presented for monitoring fluid flow maldistribution in individual channels. The method is validated using liquid water flow in a test section with four tubes in parallel, and then applied to assess the air flow maldistribution in PEMFCs using (a) an ex-situ experimental setup simulating the two-phase flow in parallel channels, and (b) an in-situ experimental setup with an operating fuel cell. While an almost uniform air distribution is obtained for the parallel channels with an impermeable backing (plastic sheet), severe maldistribution is observed for the same channels with porous GDL backing. The maldistribution caused by the water blockage in an ex-situ test setup is further investigated and the results are verified by the high-speed images of the two-phase flow in channels. The technique has also been applied in an in-situ experimental setup to obtain the flow maldistribution under electrochemical reaction conditions in the presence of two-phase flow in the cathode side gas channels.
机译:均匀的流量分配对于在许多传热和传质设备中获得高性能至关重要。它在质子交换膜燃料电池(PEMFC)的有效运行中也起着重要作用。当前,有一些基于理论的模型可用于预测单个燃料电池通道中以及PEMFC中燃料电池堆之间的流量分布,但是关于单个通道中测量的实际流量的实验数据很少或没有发表。这主要是由于缺乏可用来测量平行通道中瞬时流量的实验技术。在这项工作中,提出了一种基于入口区域压降测量的新技术,用于监视各个通道中的流体流量分布不均。该方法通过在带有四个平行管的测试部分中的液体水流中进行验证,然后通过以下方法应用于评估PEMFC中的空气流分布不均:(a)模拟并行通道中两相流的异位实验装置,以及(b)具有运行中的燃料电池的现场实验装置。尽管使用不透气背衬(塑料片)的平行通道获得了几乎均匀的空气分配,但是使用多孔GDL背衬的相同通道却观察到严重的分布不均。进一步研究了在异地测试装置中由水阻塞引起的分布不均,并通过通道中两相流的高速图像验证了结果。该技术也已应用于原位实验设置中,以在阴极侧气体通道中存在两相流的情况下,在电化学反应条件下获得流量分布不均。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2009年第8期|1741-1752|共12页
  • 作者单位

    Thermal Analysis, Microfluidics, and Fuel Cell Laboratory, Rochester Institute of Technology, 76 Lomb Memorial Dr., Rochester, NY 14623, USA;

    Thermal Analysis, Microfluidics, and Fuel Cell Laboratory, Rochester Institute of Technology, 76 Lomb Memorial Dr., Rochester, NY 14623, USA;

    Thermal Analysis, Microfluidics, and Fuel Cell Laboratory, Rochester Institute of Technology, 76 Lomb Memorial Dr., Rochester, NY 14623, USA;

    Thermal Analysis, Microfluidics, and Fuel Cell Laboratory, Rochester Institute of Technology, 76 Lomb Memorial Dr., Rochester, NY 14623, USA;

    Thermal Analysis, Microfluidics, and Fuel Cell Laboratory, Rochester Institute of Technology, 76 Lomb Memorial Dr., Rochester, NY 14623, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    maldistribution; PEM fuel cell; gas channels; instantaneous channel flow rates;

    机译:分布不均PEM燃料电池;气体通道;瞬时通道流量;

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