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Numerical evaluation of a PEM fuel cell with conventional flow fields adapted to tubular plates

机译:具有适用于管状板的常规流场的PEM燃料电池的数值评估

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摘要

In this research a 3D numerical study on a PEM fuel cell model with tubular plates is presented. The study is focused on the performance evaluation of three flow fields with cylindrical geometry (serpentine, interdigitated and straight channels) in a fuel cell. These designs are proposed not only with the aim to reduce the pressure losses that conventional designs exhibit with rectangular flow fields but also to improve the mass transport processes that take place in the fuel cell cathode. A commercial computational fluid dynamics (CFD) code was used to solve the numerical model. From the numerical solution of the fluid mechanics equations and the electrochemical model of Butler-Volmer different analysis of pressure losses, species concentration, current density, temperature and ionic conductivity were carried out. The results were obtained at the flow channels and the catalyst layers as well as in the gas diffusion layers and the membrane interfaces. Numerical results showed that cylindrical channel configurations reduced the pressure losses in the cell due to the gradual reduction of the angle at the flow path and the twist of the channel, thus facilitating the expulsion of liquid water from the gas diffusion layers and in turn promoting a high oxygen concentration at the triple phase boundary of the catalyst layers. Moreover, numerical results were compared to polarization curves and the literature data reported for similar designs. These results demonstrated that conventional flow field designs applied to conventional tubular plates have some advantages over the rectangular designs, such as uniform pressure and current density distributions among others, therefore they could be considered for fuel cell designs in portable applications.
机译:在这项研究中,提出了带有管板的PEM燃料电池模型的3D数值研究。这项研究的重点是对燃料电池中具有圆柱形几何形状(蛇形,指形和直通道)的三个流场的性能评估。提出这些设计不仅旨在减少常规设计在矩形流场中表现出的压力损失,而且还旨在改善发生在燃料电池阴极中的传质过程。商业计算流体动力学(CFD)代码用于求解数值模型。从流体力学方程的数值解和Butler-Volmer的电化学模型,对压力损失,物质浓度,电流密度,温度和离子电导率进行了不同的分析。在流动通道和催化剂层以及气体扩散层和膜界面处获得了结果。数值结果表明,由于流道角度的逐渐减小和通道的扭曲,圆柱形通道结构减少了单元中的压力损失,从而有利于液态水从气体扩散层中的排出,进而促进了气体扩散。在催化剂层的三相边界处的高氧浓度。此外,将数值结果与极化曲线进行了比较,并报道了类似设计的文献数据。这些结果表明,应用于常规管状板的常规流场设计相对于矩形设计具有一些优势,例如均匀的压力和电流密度分布,因此可以考虑将其用于便携式应用中的燃料电池设计。

著录项

  • 来源
    《International journal of hydrogen energy》 |2014年第29期|16694-16705|共12页
  • 作者单位

    Facultad de Ingenieria, Universidad Autonoma del Carmen, Cd. del Carmen, Campeche C.P. 24115, Mexico;

    Facultad de Ingenieria, Universidad Autonoma del Carmen, Cd. del Carmen, Campeche C.P. 24115, Mexico;

    Facultad de Ingenieria, Universidad Autonoma del Carmen, Cd. del Carmen, Campeche C.P. 24115, Mexico;

    Instituto de Investigacions en Materiales, Unidad Morelia, Universidad Nacional Autonoma de Mexico, Antigua Carretera a Patzcuaro No. 8701, Col. Ex Hacienda de San Jose de la Huerta, C.P. 58190 Morelia, Michoacan, Mexico;

    Instituto de Energias Renovables, Universidad Nacional Autonoma de Mexico, Temixco, Morelos C.P. 62580, Mexico;

  • 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; Tubular design; Flow field; CFD;

    机译:PEM燃料电池;管状设计;流场差价合约;

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