• Title of article

    Numerical Study of CurvedShape Channel Effect on Performance and Distribution of Species in a ProtonExchange Membrane Fuel Cell: Novel Structure

  • Author/Authors

    Pashaee Golmarz ، Tuhid - Urmia University of Technology , Rezazadeh ، Sajad - Urmia University of Technology , Bagherzadeh ، Narmin - Urmia University of Technology

  • Pages
    12
  • From page
    10
  • To page
    21
  • Abstract
    In this paper, a threedimensional, singlephase protonexchange membrane fuel cell (PEMFC) is studied numerically. Finite volume method was used for solving the governing equations and, consequently, the numerical results were validated by comparing them with experimental data, which showed good agreement. The main objective of this work is to investigate the effect of a novel gas channel shape– by applying sinusoidal gas channel on the cell performance and mass transport phenomena. Some parameters such as oxygen consumption, water production, protonic conductivity, and temperature distribution for two cell voltages were studied, and the results were compared with respect to conventional and new models.    The results indicated that the new novel model showed better performance than the conventional model, especially at low cell voltages, causing an increase in oxygen consumption and water production. Therefore, based on a number of investigated relations, a higher rate of current density was obtained, thus enhancing the fuel cell performance. This is because the incoming species path to the gas channels in the  new model becomes longer. Therefore, the diffusion of the species toward the electrochemical reaction area increased.
  • Keywords
    PEM fuel cell , Flow Channel Shape , Mass Transport , performance
  • Journal title
    journal of renewable energy and environment
  • Serial Year
    2018
  • Journal title
    journal of renewable energy and environment
  • Record number

    2452075