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首页> 外文期刊>The Science of the Total Environment >Numerical modelling and CFD simulation of a polymer electrolyte membrane (PEM) fuel cell flow channel using an open pore cellular foam material
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Numerical modelling and CFD simulation of a polymer electrolyte membrane (PEM) fuel cell flow channel using an open pore cellular foam material

机译:聚合物电解质膜(PEM)燃料电池流动通道的数值模拟和CFD模拟使用开孔孔泡沫材料

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摘要

Fuel cell performances vary with different structural configurations and materials. However, the two main areas that determine this performance metric are the membrane electrode assembly (MEA) and the bipolar plates. The MEA provides the platform for the electrochemical reaction to occur and the bipolar plate serves as a medium between the reactants (hydrogen and air) and the catalyst layer. The bipolar plate is the first point of contact for the reactants inside the fuel cell, so a badly designed item with a high pressure drop will have a negative impact on fuel cell performance. Numerical modelling and simulation tools like ANSYS have a huge impact on engineering industry as they help designs to be validated and analysed before any physical construction. This investigation considers five suitable flow plate designs for PEM fuel cell, each completely different from the readily available, traditional serpentine designs on the market. The work explored the possibility of replacing these flow channels with an aluminium cellular foam with different inlet and outlet orientations. The designs were further optimised and modelled in ANSYS. The results obtained were compared with other designs in the literature. Compared to the serpentine flow design, the open pore cellular foam material showed a very small pressure drop in the range of 30-40 Pa. This indicates a possibility of replacing the traditional flow plate designs with the proposed ones. (C) 2019 Elsevier B.V. All rights reserved.
机译:燃料电池性能随不同的结构配置和材料而变化。然而,确定这种性能度量的两个主要区域是膜电极组件(MEA)和双极板。 MEA提供用于发生电化学反应的平台,并且双极板用作反应物(氢气和空气)和催化剂层之间的培养基。双极板是燃料电池内部反应物的第一点接触点,因此具有高压下降的糟糕设计的物品对燃料电池性能产生负面影响。像Ansys这样的数值建模和仿真工具对工程行业产生了巨大影响,因为它们有助于在任何物理建筑之前进行验证和分析。该研究考虑了PEM燃料电池的五种合适的流动板设计,每个燃料电池均有完全不同于市场上的易用的传统蛇形设计。该工作探索了用具有不同入口和出口取向的铝蜂窝泡沫更换这些流动通道的可能性。该设计进一步优化和建模在ANSYS中。将得到的结果与文献中的其他设计进行了比较。与蛇纹石流动设计相比,开孔蜂窝泡沫材料显示在30-40Pa的范围内的非常小的压降。这表明可以用所提出的制作传统流动板设计的可能性。 (c)2019 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第15期|728-740|共13页
  • 作者单位

    Univ West Scotland Inst Engn & Energy Technol Paisley PA1 2BE Renfrew Scotland;

    Univ West Scotland Inst Engn & Energy Technol Paisley PA1 2BE Renfrew Scotland;

    Univ West Scotland Inst Engn & Energy Technol Paisley PA1 2BE Renfrew Scotland;

    Univ West Scotland Inst Engn & Energy Technol Paisley PA1 2BE Renfrew Scotland;

    Univ West Scotland Inst Engn & Energy Technol Paisley PA1 2BE Renfrew Scotland;

    Univ West Scotland Inst Engn & Energy Technol Paisley PA1 2BE Renfrew Scotland;

    Univ West Scotland Inst Engn & Energy Technol Paisley PA1 2BE Renfrew Scotland;

    Univ Sharjah Dept Sustainable & Renewable Energy Engn POB 27272 Sharjah U Arab Emirates|Aston Univ Sch Engn & Appl Sci Mech Engn & Design Birmingham B4 7ET W Midlands England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Computational fluid dynamics (CFD); Optimization; Fuel cell; Serpentine; Design of Experiment (DOE);

    机译:计算流体动力学(CFD);优化;燃料电池;蛇形;实验设计(DOE);

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