A numerical study on the performance of polymer electrolyte membrane fuel cells due to the variation in gas diffusion layer permeability

被引:0
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作者
Seung Man Baek
Soo Gon Koh
Kwang Nam Kim
Jung Ho Kang
Jin Hyun Nam
Charn-Jung Kim
机构
[1] Seoul National University,School of Mechanical and Aerospace Engineering
[2] Mando Corporation,Computational Analysis Team
[3] Daegu University,School of Automotive, Industrial, and Mechanical Engineering
关键词
Polymer electrolyte membrane fuel cell; Gas diffusion layer; Permeability; Under-rib convection;
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摘要
Convective flow in the under-rib regions of gas diffusion layers (GDLs) is a non-negligible transport process that can enhance the performance of polymer electrolyte membrane fuel cells (PEMFCs) by facilitating efficient utilization of catalyst layers (CLs) in those regions. The permeability of GDLs has been recognized as a dominant factor influencing the intensity of the under-rib convection in PEMFCs. In this study, the correlation between the permeability of GDLs and the performance of PEMFCs was numerically investigated through a detailed simulation of the transport and electrochemical processes in PEMFCs using a computational fluid dynamics (CFD) tool. Three serpentine flow fields with one, three, or five parallel paths were considered as reactant flow channels for an active cell area of 3 cm × 3 cm, while the permeability of GDLs was varied from 1×10−12 m2 to 1×10−10 m2. The effects of the flow field design and the GDL permeability on the performance of PEMFCs were presented, along with their impacts on the local distribution of current density, water content, and reactant concentration.
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页码:457 / 467
页数:10
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