首页> 外文期刊>International journal of hydrogen energy >Experimental validation of two-phase pressure drop multiplier as a diagnostic tool for characterizing PEM fuel cell performance
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Experimental validation of two-phase pressure drop multiplier as a diagnostic tool for characterizing PEM fuel cell performance

机译:两相压降倍增器作为表征PEM燃料电池性能的诊断工具的实验验证

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摘要

Water management is a key area of interest in improving the performance of Proton Exchange Membrane fuel cells. Cell flooding and membrane dehydration are two extreme conditions arising from poor water management. Pressure drop has been recognized as a good diagnostic tool to determine the presence of liquid water in the reactant channels. Presence of liquid water in the channels increases the mass transport resistances and therefore reduces the cell performance, which is quantified by the cell voltage at a set current density. Since the two-phase pressure drop multiplier is uniquely related to the water content in the channel, it serves as a good diagnostic tool for directly predicting the cell performance. Experiments are carried out to establish the relationship between the pressure drop multiplier and cell voltage at different operating conditions. Cell temperature was varied from 30 ℃ to 80 ℃ and the inlet RH was varied from 0 to 95%. At the lower temperatures, a two-phase multiplier below 1.5 reduces flooding in the flow field. However, at the higher temperatures, a two-phase flow multiplier above 1.2 is preferred as it indicates the membrane remains hydrated for improved performance from the cell. The two-phase pressure drop multiplier has been successfully demonstrated as a diagnostic tool to predict cell flooding and membrane dehydration.
机译:水管理是改善质子交换膜燃料电池性能的关键领域。细胞充溢和膜脱水是水管理不善引起的两个极端情况。压降已被认为是确定反应物通道中是否存在液态水的良好诊断工具。通道中存在液态水会增加传质阻力,因此会降低电池性能,这由在设定电流密度下的电池电压来量化。由于两相压降乘数与通道中的水含量唯一相关,因此它是直接预测电池性能的良好诊断工具。进行实验以建立在不同操作条件下压降倍增器与电池电压之间的关系。池温度在30℃至80℃之间变化,入口RH在0至95%之间变化。在较低温度下,低于1.5的两相乘数可减少流场中的溢流。但是,在较高的温度下,最好使用高于1.2的两相流倍增器,因为这表明膜保持水合状态,从而改善了电池的性能。两相压降倍增器已被成功证明是一种预测细胞泛滥和膜脱水的诊断工具。

著录项

  • 来源
    《International journal of hydrogen energy》 |2014年第31期|17791-17801|共11页
  • 作者单位

    Mechanical Engineering, Rochester Institute of Technology, 76 Lomb Memorial Drive, Rochester, New York 14623, United States,Microsystems Engineering, Rochester Institute of Technology, 76 Lomb Memorial Drive, Rochester, New York 14623, United States;

    Mechanical Engineering, Rochester Institute of Technology, 76 Lomb Memorial Drive, Rochester, New York 14623, United States;

    Mechanical Engineering, Rochester Institute of Technology, 76 Lomb Memorial Drive, Rochester, New York 14623, United States;

    Mechanical Engineering, Rochester Institute of Technology, 76 Lomb Memorial Drive, Rochester, New York 14623, United States,Microsystems Engineering, Rochester Institute of Technology, 76 Lomb Memorial Drive, Rochester, New York 14623, United States;

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

    PEM fuel cell; Temperature; Cathode inlet RH; Cell voltage; Two-phase pressure drop; Diagnostic tool;

    机译:PEM燃料电池;温度;阴极入口RH;电池电压;两相压降;诊断工具;

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