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首页> 外文期刊>Journal of Fuel Cell Science and Technology >A Nonisothermal PEM Fuel Cell Model Including Two Water Transport Mechanisms in the Membrane
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A Nonisothermal PEM Fuel Cell Model Including Two Water Transport Mechanisms in the Membrane

机译:膜中包含两种水传输机制的非等温PEM燃料电池模型

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摘要

A dynamic two-phase flow model for proton exchange membrane fuel cells is presented. The two-dimensional model includes the two-phase flow of water (gaseous and liquid) in the gas diffusion layers (GDLs) and in the catalyst layers (CLs), as well as the transport of the species in the gas phase. The membrane model describes water transport in a perfluorinated-sulfonic-acid-ionomer-based membrane. Two transport modes of water in the membrane are considered, and appropriate coupling conditions to the porous CLs are formulated. Water transport through the membrane in the vapor equilibrated transport mode is described by a Grotthus mechanism, which is included as a macroscopic diffusion process. The driving force for water transport in the liquid equilibrated mode is due to a gradient in the hydraulic water pressure. Moreover, electro-osmotic drag of water is accounted for. The discretization of the resulting flow equations is done by a mixed finite element approach. Based on this method, the transport equations for the species in each phase are discretized by a finite volume scheme. The coupled mixed finite element/finite volume approach gives the spatially resolved water and gas saturation and the species concentrations. In order to describe the charge transport in the fuel cell, the Poisson equations for the electrons and protons are solved by using Galerkin finite element schemes. The electrochemical reactions in the catalyst layer are modeled with a simple Tafel approach via source/sink terms in the Poisson equations and in the mass balance equations. Heat transport is modeled in the GDLs, the CLs, and the membrane. Heat transport through the solid, liquid, and gas phases is included in the GDLs and the CLs. Heat transport in the membrane is described in the solid and liquid phases. Both heat conduction and heat convection are included in the model.
机译:提出了质子交换膜燃料电池的动态两相流模型。二维模型包括气体扩散层(GDL)和催化剂层(CLs)中水(气态和液态)的两相流以及气相中物质的传输。膜模型描述了在全氟化磺酸离聚物基膜中的水传输。考虑了膜中水的两种传输方式,并制定了与多孔CL的合适偶联条件。格罗特斯机制描述了水在蒸汽平衡传输模式下通过膜的传输,该机制包括在宏观扩散过程中。在液体平衡模式下进行水传输的驱动力是由于液压水压力的梯度所致。此外,考虑到水的电渗透阻力。结果流方程的离散化是通过混合有限元方法完成的。基于此方法,通过有限体积方案离散了每个相中物种的迁移方程。耦合的有限元/有限体积混合方法给出了空间分辨的水和气体饱和度以及物质浓度。为了描述燃料电池中的电荷传输,通过使用Galerkin有限元方案来求解电子和质子的泊松方程。通过泊松方程和质量平衡方程中的源/汇项,使用简单的塔菲尔方法对催化剂层中的电化学反应进行建模。在GDL,CL和膜中模拟了热传递。 GDL和CL中包括通过固相,液相和气相的热传递。膜中的热传递以固相和液相描述。该模型同时包括热传导和热对流。

著录项

  • 来源
    《Journal of Fuel Cell Science and Technology》 |2008年第1期|p.1-16|共16页
  • 作者单位

    K. SteinkampFraunhofer Institute for Solar Energy Systems, Heidenhofstrasse 2, 79110 Freiburg, GermanyJ. O. SchumacherInstitute for Computational Physics, Zuercher Hochschule Winterthur, P.O. Box 805, CH-8401 Winterthur, SwitzerlandF. GoldsmithMassachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139M. OhlbergerInstitute for Applied Mathematics, Albert-Ludwigs-Universitaet Freiburg, Herrmann Herderstrasse 10, 79110 Freiburg, GermanyC. ZieglerFraunhofer Institute for Solar Energy Systems, Heidenhofstrasse 2, 79110 Freiburg, Germany;

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

    Nonisothermal PEM Fuel Cell Model ,Transport Mechanisms;

    机译:非等温PEM燃料电池模型;传输机理;

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