Effects of mechanical Stress and Film Thickness on Oxygen Transport Resistance in PEMFCs
编号:53访问权限:仅限参会人更新:2025-09-30 10:23:54浏览:5次口头报告
报告开始:2025年10月11日 17:45(Asia/Shanghai)
报告时间:15min
所在会场:[S7] Heat and mass transfer in porous media [S7] Session 7
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摘要
The effect of stress and thickness on oxygen transport resistance in proton exchange membrane fuel cells (PEMFCs) is critical for performance optimization. Molecular dynamics simulations in this study reveal that compressive stress in the 0-2 MPa range reduces diffusion resistance by improving water cluster connectivity, while stress exceeding 2 MPa significantly increases diffusion resistance due to channel structure damage. Meanwhile, increasing Nafion film thickness leads to a nonlinear increase in diffusion resistance. Although diffusion resistance is significantly affected by both stress and thickness, adsorption resistance consistently remains the dominant component of total oxygen transport resistance.
关键词
Local oxygen transport resistance,PEMFCs,Stress,Film thickness,MD simulations
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