A Three Dimensional Electrical Model of PEMFC Stack

被引:15
|
作者
Le Ny, M. [1 ,2 ]
Chadebec, O. [2 ]
Cauffet, G. [2 ]
Dedulle, J. M. [3 ]
Bultel, Y. [1 ]
机构
[1] UJF, UMR CNRS 5279, Lab Electrochim & Phys Chim Mat & Interfaces LEPM, Grenoble INP,UdS, Grenoble, France
[2] UJF, UMR CNRS 5269, Grenoble Elect Engn Lab G2Elab, Grenoble INP, Grenoble, France
[3] Grenoble INP, UMR CNRS 5628, Mat & Genie Phys Lab, Grenoble, France
关键词
Cell Interaction; Fault Modeling; Internal Loop of Current; PEMFC Stack Modeling; FUEL-CELL STACKS; SOFC STACK;
D O I
10.1002/fuce.201100101
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Mathematical modeling is an essential tool in the design of fuel cell systems, as it is important to understand the response of a stack under different conditions. This paper proposes a three dimensional electrical model of PEMFC stack. Such approach highlights the phenomena that occur at the macroscopic scale which are the electrical interactions taking place within the stack. At this scale, the microscopic phenomena are taken into account by averaging them over all the thickness of the membrane electrode assembly (MEA). This model consists of solving the charge transport equation in three dimensions. In order to avoid interfacial issues with the potential jump that occurs in the MEAs, a special source term is added in the transport equation. It makes the model robust, reliable, and helpful for understanding the effect of anomalies on the electric behavior of a PEMFC stack. After describing the equations and the numerical method used for the model, the paper shows some electrical phenomena such as cells interactions, non-equipotential bipolar plate, higher cell voltages and internal loop of current.
引用
收藏
页码:225 / 238
页数:14
相关论文
共 50 条
  • [21] Electrical characteristics of the three-dimensional interconnection structure for the chip stack package with Cu through vias
    Lee, Kwang-Yong
    Oh, Teck-Su
    lee, Jae-Ho
    Oh, Tae-Sung
    JOURNAL OF ELECTRONIC MATERIALS, 2007, 36 (02) : 123 - 128
  • [22] Optimization of three-dimensional electrical performance in a solid oxide fuel cell stack by a neural network
    Wang, Shih-Bin
    Yuan, Ping
    Liu, Syu-Fang
    Kuo, Ming-Jun
    World Academy of Science, Engineering and Technology, 2009, 56 : 482 - 492
  • [23] Study on Three-dimensional Electrical Impedance Circuit Model
    Chen, Xiaoyan
    Wu, Di
    Gu, Peng
    Du, Meng
    PROCEEDINGS OF 2019 IEEE 3RD INFORMATION TECHNOLOGY, NETWORKING, ELECTRONIC AND AUTOMATION CONTROL CONFERENCE (ITNEC 2019), 2019, : 1500 - 1503
  • [24] Three Dimensional Electrical Impedance Tomography in Thorax Complete Model
    Wu, Huanli
    Xu, Guizhi
    Yu, Hongli
    Zhang, Shuai
    Li, Ying
    Yang, Shuo
    Yan, Weili
    2008 30TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOLS 1-8, 2008, : 466 - 469
  • [25] An Energy Consumption Model for Designing an AGV Energy Storage System with a PEMFC Stack
    Niestroj, Roman
    Rogala, Tomasz
    Skarka, Wojciech
    ENERGIES, 2020, 13 (13)
  • [26] A 3D SINGLE-PHASE NUMERICAL MODEL FOR A PEMFC STACK
    Le, Anh Dinh
    Zhou, Biao
    PROCEEDINGS OF THE 7TH INTERNATIONAL CONFERENCE ON FUEL CELL SCIENCE, ENGINEERING, AND TECHNOLOGY, 2009, : 91 - 100
  • [27] Simplified electrical model tuned for actual controlled PEMFC
    Hankache, W.
    Caux, S.
    Hissel, D.
    Fadel, M.
    2006 IEEE VEHICLE POWER AND PROPULSION CONFERENCE, 2006, : 542 - +
  • [28] The optimal parameters estimation for rectangular cylinders installed transversely in the flow channel of PEMFC from a three-dimensional PEMFC model and the Taguchi method
    Wu, Horng-Wen
    Ku, Hui-Wen
    APPLIED ENERGY, 2011, 88 (12) : 4879 - 4890
  • [29] Three-dimensional modeling of PEMFC with contaminated anode fuel
    Abdollahzadeh, M.
    Ribeirinha, P.
    Boaventura, M.
    Mendes, A.
    ENERGY, 2018, 152 : 939 - 959
  • [30] An Innovative Electrochemical Model for Three-dimensional Modeling of a SOFC Stack used in Electrolysis Mode
    Grondin, D.
    Deseure, J.
    Brisse, A.
    Zahid, M.
    Grondin-Perez, B.
    Chabriat, J. -P.
    Ozil, P.
    SOLID OXIDE FUEL CELLS 12 (SOFC XII), 2011, 35 (01): : 987 - 995