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Modeling the effect of inhomogeneous compression of GDL on local transport phenomena in a PEM fuel cell

机译:模拟GDL的不均匀压缩对PEM燃料电池中局部运输现象的影响

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摘要

The effects of inhomogeneous compression of gas diffusion layers (GDLs) on local transport phenomena within a polymer electrolyte membrane (PEM) fuel cell were studied theoretically. The inhomogeneous compression induced by the rib/channel structure of the flow field plate causes partial deformation of the GDLs and significantly affects material parameters. The results suggest that inhomogeneous compression does not significantly affect the polarization behavior or gas-phase mass transport. However, the effect of inhomogeneous compression on the current density distribution is evident. Local current density under the channel was substantially smaller than under the rib when inhomogeneous compression was taken into account, while the current density distribution was fairly uniform for the model which excluded the effect of inhomogeneous compression. This is caused by the changes in the selective current path, which is determined by the combinations of conductivities of components and contact resistance between them. Despite the highly uneven current distribution and variation in material parameters as a function of GDL thickness, the temperature profile was relatively even over the active area for both modeled cases, contrary to predictions in previous studies. However, an abnormally high current density significantly accelerates deterioration of the membrane and is critical in terms of cell durability. Therefore, fuel cells should be carefully designed to minimize the harmful effects of inhomogeneous compression.
机译:理论上研究了气体扩散层(GDL)的不均匀压缩对聚合物电解质膜(PEM)燃料电池内局部传输现象的影响。由流场板的肋/通道结构引起的不均匀压缩会导致GDL局部变形,并显着影响材料参数。结果表明,不均匀压缩不会显着影响极化行为或气相质量传输。但是,不均匀压缩对电流密度分布的影响是显而易见的。当考虑非均匀压缩时,通道下方的局部电流密度显着小于肋骨下方,而模型的电流密度分布相当均匀,其中排除了非均匀压缩的影响。这是由选择性电流路径的变化引起的,该变化由组件的电导率和它们之间的接触电阻的组合确定。尽管电流分布高度不均匀并且材料参数随GDL厚度变化而变化,但对于两种模拟情况,温度分布在有效区域内相对均匀,这与以前的研究相反。然而,异常高的电流密度显着加速了膜的劣化,并且就电池的耐久性而言是至关重要的。因此,应仔细设计燃料电池,以最大程度地减少不均匀压缩的有害影响。

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