Effect of placing different obstacles in flow fields on performance of a PEM fuel cell: numerical investigation and experimental comparison

被引:0
|
作者
I. Khazaee
机构
[1] Islamic Azad University,Department of Mechanical Engineering, Torbat
来源
Heat and Mass Transfer | 2013年 / 49卷
关键词
Fuel Cell; Catalyst Layer; Proton Exchange Membrane Fuel Cell; Bipolar Plate; Fuel Cell Performance;
D O I
暂无
中图分类号
学科分类号
摘要
In this study a complete two-dimensional model for proton exchange membrane (PEM) fuel cells was used to investigate the effect of using different obstacles on the performances, current density and gas concentration for different aspect ratios (ARs). The proposed model is a full cell model, which includes all the parts of the PEM fuel cell, flow channels, gas diffusion electrodes, catalyst layers and the membrane. Also a series of tests are carried out to investigate and validate the numerical results of the polarization curve under the normal conditions. A PEM fuel cell with 25 cm2 active area and Nafion 117 membrane with 4 mg Pt/cm2 for the anode and cathode is employed as a membrane electrode assembly. The results show that the predicted polarization curves by using this model are in good agreement with the experimental results. Also the results show that the local current density reduces more obviously at a higher overpotential than at a lower overpotential because of the more obvious reflection phenomena in the downstream region. At lower operating voltage conditions, the overall cell performance decreases as the AR decreases.
引用
收藏
页码:1287 / 1298
页数:11
相关论文
共 50 条
  • [11] Numerical investigation of flow field configuration and contact resistance for PEM fuel cell performance
    Akbari, Mohammad Hadi
    Rismanchi, Behzad
    RENEWABLE ENERGY, 2008, 33 (08) : 1775 - 1783
  • [12] Experimental and numerical Investigation on the design of a bioinspired PEM fuel cell
    Suarez, Christian
    Iranzo, Alfredo
    Toharias, Baltasar
    Rosa, Felipe
    ENERGY, 2022, 257
  • [13] Numerical investigation of the effect of different layers configurations on the performance of radial PEM fuel cells
    Solati, Ali
    Nasiri, Behzad
    Mohammadi-Ahmar, Akbar
    Mohammadi, Kamyar
    Safari, Amir Hossein
    RENEWABLE ENERGY, 2019, 143 : 1877 - 1889
  • [14] CFD Investigation of the Effects of Different Flow Field Designs on the Performance of PEM Fuel Cell
    Ding Gang-qiang
    Tang He-qing
    Peng Yuan-ting
    25TH WORLD BATTERY, HYBRID AND FUEL CELL ELECTRIC VEHICLE SYMPOSIUM AND EXHIBITION PROCEEDINGS, VOLS 1 & 2, 2010, : 935 - 940
  • [15] CFD simulation of PEM fuel cell performance: Effect of straight and serpentine flow fields
    Hashemi, Fatemeh
    Rowshanzamir, Soosan
    Rezakazemi, Mashallah
    MATHEMATICAL AND COMPUTER MODELLING, 2012, 55 (3-4) : 1540 - 1557
  • [16] Numerical and experimental investigation of cascade type serpentine flow field of reactant gases for improving performance of PEM fuel cell
    Alizadeh, E.
    Rahimi-Esbo, M.
    Rahgoshay, S. M.
    Saadat, S. H. M.
    Khorshidian, M.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2017, 42 (21) : 14708 - 14724
  • [17] Performance of micro-PEM fuel cells with different flow fields
    Lu, Yuhao
    Reddy, Ramana G.
    JOURNAL OF POWER SOURCES, 2010, 195 (02) : 503 - 508
  • [18] Numerical Simulation and Experimental Comparison of Single, Double and Triple Serpentine Flow Channel Configuration on Performance of a PEM Fuel Cell
    Velisala, Venkateswarlu
    Srinivasulu, G. Naga
    ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2018, 43 (03) : 1225 - 1234
  • [19] Numerical Simulation and Experimental Comparison of Single, Double and Triple Serpentine Flow Channel Configuration on Performance of a PEM Fuel Cell
    Venkateswarlu Velisala
    G. Naga Srinivasulu
    Arabian Journal for Science and Engineering, 2018, 43 : 1225 - 1234
  • [20] Design and modeling of PEM fuel cell based on different flow fields
    Pan, Mingzhang
    Li, Chao
    Liao, Jinyang
    Lei, Han
    Pan, Chengjie
    Meng, Xianpan
    Huang, Haozhong
    ENERGY, 2020, 207