Title of article :
Two-phase flow and transport in the air cathode of proton exchange membrane fuel cells
Author/Authors :
Z. H. Wang، نويسنده , , C. Y. Wang، نويسنده , , K. S. Chen، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Pages :
11
From page :
40
To page :
50
Abstract :
Two-phase flow and transport of reactants and products in the air cathode of proton exchange membrane (PEM) fuel cells is studied analytically and numerically. Single- and two-phase regimes of water distribution and transport are classified by a threshold current density corresponding to first appearance of liquid water at the membrane/cathode interface. When the cell operates above the threshold current density, liquid water appears and a two-phase zone forms within the porous cathode. A two-phase, multicomponent mixture model in conjunction with a finite-volume-based computational fluid dynamics (CFD) technique is applied to simulate the cathode operation in this regime. The model is able to handle the situation where a single-phase region co-exists with a two-phase zone in the air cathode. For the first time, the polarization curve as well as water and oxygen concentration distributions encompassing both single- and two-phase regimes of the air cathode are presented. Capillary action is found to be the dominant mechanism for water transport inside the two-phase zone of the hydrophilic structure. The liquid water saturation within the cathode is predicted to reach 6.3% at 1.4 A cm−2 for dry inlet air.
Keywords :
Two-phase transport , PEM fuel cells , Analytical modeling , Numerical simulation , water management
Journal title :
Journal of Power Sources
Serial Year :
2001
Journal title :
Journal of Power Sources
Record number :
440403
Link To Document :
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