• Title of article

    Parametric study of the influence of cooling channel dimensions on PEM fuel cell thermal performance

  • Author/Authors

    afshari ، ebrahim - University of Isfahan , Jahantigh ، nabi - University of Zabol , Ziaei-Rad ، Masoud - University of Isfahan

  • Pages
    10
  • From page
    265
  • To page
    274
  • Abstract
    In a polymer membrane fuel cell more than half of the chemical energy of hydrogen is converted to heat during generation of electricity. This causes an increase in the cell temperature. The cooling  eld design has a signi cant role in cell cooling. The cell’s performance and stability are reduced due to inappropriate heat dissipation. In this paper, the cooling  ow and heat transfer in cooling plates with parallel channels in the polymer membrane fuel cell are simulated and a parametric study of the in uence of the cooling channels dimensions on the fuel cell thermal performance is performed based on three indexes: maximum surface temperature cooling (Tmax), the temperature uniformity on the surface (UT), and pressure drop. Numerical results show that increasing the depth of the channels has an adverse effect on temperature characteristics; in addition, the pressure drop decreases. Therefore regarding constructional limitations and mechanical strength, use of channels with a depth of 1 mm is recommended. Increasing the width of the channels decreases the maximum surface temperature of the cooling plate, the temperature uniformity index, and the pressure drop. However, increasing the channel width more than 3mm does not have a signi cant effect on the cooling performance. Increasing the distance between two channels adversely effects the thermal parameters as well as increases the pressure drop. Therefore, the distance between two cooling channels should not be more than 2 mm.
  • Keywords
    polymer membrane fuel cell , cooling flow field , The temperature distribution , Uniform temperature distribution , Pressure drop , Parametric study
  • Journal title
    Iranian Journal of Hydrogen and Fuel Cell
  • Serial Year
    2017
  • Journal title
    Iranian Journal of Hydrogen and Fuel Cell
  • Record number

    2440838