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The two-phase flow, transport mechanism and performance studies for PEM fuel cells.

机译:PEM燃料电池的两相流,传输机制和性能研究。

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摘要

Both theoretical and experimental approaches have been used to study the inherent two-phase flow, transport mechanism and the performance for PEM fuel cells.; A two-dimensional mathematical model with a complete set of governing equations for all the components of a PEM fuel cell is developed. The model couples the flow, species, potential and current density distributions in the cathode and anode fluid channels, gas diffusers, catalyst layers and membrane respectively. A two-phase flow model is used in the cathode, with a detailed pseudo-homogeneous model in the catalyst layer and coupled water fluxes among different components in the PEM fuel cell.; The modeling results of typical hydrogen, oxygen, water concentration distribution in the anode, the cathode and the membrane are presented. The coupling of species concentration, current density, overpotential and potential is shown in the MEA direction, and the decrease of species concentration and local current density is shown in the flow direction. The two-phase flow characteristics in the cathode with varying operating conditions are studied.; Both the experiment and the model are used to study two of the most critical PEM fuel cell operating issues, i.e., the water and heat management. The dependence of fuel and good agreements are reached.; The study shows a coupled model is necessary to simulate the transport processes in the PEM fuel cell and a two-phase flow model is essential in the cathode side. The model provides a realistic transport simulation in the PEM fuel cell and may study the influences of many important geometric, physical and operation parameters; therefore, the model can be used to study the water and heat management scheme, as well as to improve the PEM fuel cell performance.
机译:理论和实验方法均已用于研究固有的两相流,PEM燃料电池的传输机理和性能。针对PEM燃料电池的所有组件,建立了具有完整控制方程组的二维数学模型。该模型耦合分别在阴极和阳极流体通道,气体扩散器,催化剂层和膜中的流量,种类,电势和电流密度分布。在阴极中使用两相流模型,在催化剂层中使用详细的伪均相模型,并在PEM燃料电池中的不同组件之间耦合水通量。给出了阳极,阴极和膜中典型的氢,氧,水浓度分布的建模结果。在MEA方向上显示了物种浓度,电流密度,过电势和电势的耦合,而在流动方向上显示了物种浓度和局部电流密度的降低。研究了在不同工作条件下阴极中的两相流动特性。实验和模型都用于研究两个最关键的PEM燃料电池运行问题,即水和热管理。达到了燃料和良好协议的依赖。研究表明,必须使用耦合模型来模拟PEM燃料电池中的传输过程,而在阴极侧必须建立两相流模型。该模型在PEM燃料电池中提供了逼真的运输模拟,可以研究许多重要的几何,物理和操作参数的影响;因此,该模型可用于研究水和热管理方案,以及改善PEM燃料电池的性能。

著录项

  • 作者

    You, Lixin.;

  • 作者单位

    University of Miami.;

  • 授予单位 University of Miami.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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