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One dimensional transient numerical study of the mass heat and charge transfer in a proton exchange membrane for PEMFC
Authors:Djamel Haddad,Hocine Benmoussa,Noureddine Bourmada,Kafia Oulmi,Bouziane Mahmah,Maï  ouf Belhamel
Affiliation:1. Laboratory (LESEI), Faculty of Engineering, University of Batna, Algeria;2. Laboratory LCCE, Faculty of Science, University of Batna, Algeria;3. CDER, BP, 62 Avenue-Observatoire, Bouzaréah, Alger, Algeria
Abstract:The objective of our study is to quantify the mass water transferred by various modes: diffusion, convection and migration. For the water transfer, the principal forces considered in the model are, the convection force, the osmotic force (i.e. diffusion) and the electric force (migration). The first of these forces results from a pressure gradient, the second of a concentration gradient and the third of a protons' migration from the anode to the cathode, which has an effect on the dipole of the water molecules (resistance force to the advancement). The numerical tool used to solve the equations' system is the finite element method. The results obtained numerically considering this method are concentration profiles and concentration variation with time and membrane thickness. These results illustrate the contribution of each mass transfer mode.
Keywords:Mass transfer   Diffusion   Convection   Migration   Finite elements method   PEMFC
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