Title of article :
Three Dimensional Computational Fluid Dynamics Analysis of a Proton Exchange Membrane Fuel Cell
Author/Authors :
Rezazadeh, Sajjad Department of Mechanical Engineering - Urmia University, Urmia , Mirzaee, Iraj Department of Mechanical Engineering - Urmia University, Urmia , Pourmahmoud, Nader Department of Mechanical Engineering - Urmia University, Urmia , Ahmadi, Nima Department of Mechanical Engineering - Urmia University, Urmia
Abstract :
A full three-dimensional, single phase computational fluid dynamics model of a proton exchange membrane fuel
cell (PEMFC) with both gas distribution flow channels and Membrane Electrode Assembly (MEA) has been
developed. A single set of conservation equations which are valid for the flow channels, gas-diffusion electrodes,
catalyst layers, and the membrane region are developed and numerically solved using a finite volume based
computational fluid dynamics technique. In this research, some parameters such as oxygen consumption, water
production, temperature distribution, ohmic losses, anode water activity, cathode over-potential and the fuel cell
performance for straight single cell were investigated in more detail. The numerical simulations reveal that these
important operating parameters are highly dependent on each other and the fuel cell efficiency is affected by
kind of species distribution. So for, especial uses in desirable voltages, for preventing from the unwilling losses,
these numerical results can be useful.
Finally the numerical results of proposed CFD model have been compared with the published experimental data
that represent good agreement.
Keywords :
PEM fuel cell , Ohmic loss , water activity , CFD , Fuel cell performance
Journal title :
Astroparticle Physics