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首页> 外文期刊>Journal of power sources >Steady liquid water saturation distribution in hydrophobic gas-diffusion layers with engineered pore paths: An invasion-percolation pore-network analysis
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Steady liquid water saturation distribution in hydrophobic gas-diffusion layers with engineered pore paths: An invasion-percolation pore-network analysis

机译:具有工程孔隙路径的疏水性气体扩散层中稳定的液态水饱和度分布:入侵-渗流孔隙网络分析

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摘要

The modification of pore structures in gas-diffusion layers (GDLs) has long been studied in the context of efforts to facilitate liquid water transport and to reduce flooding. Such improvements can theoretically improve the performance of polymer electrolyte membrane fuel cells (PEMFCs). Recent experimental studies have demonstrated that engineered pore paths in hydrophobic GDLs, in the form of either large vertical slits or holes, can be advantageous for water management in PEMFCs. In this study, a pore-network model is employed to obtain the steady saturation distribution of liquid water in hydrophobic GDLs with several engineered pore paths. The pore-network results clearly indicate the merits of engineered pore paths in reducing liquid water saturation levels in hydrophobic GDLs. The mechanism by which these engineered pore paths reduce liquid water flooding is discussed in reference to the invasion-percolation process in porous media.
机译:长期以来,在努力促进液态水输送和减少水驱的研究中,研究了气体扩散层(GDL)中孔隙结构的改变。从理论上讲,这种改进可以提高聚合物电解质膜燃料电池(PEMFC)的性能。最近的实验研究表明,疏水性GDL中以大的垂直缝或孔的形式设计的孔隙路径对于PEMFC中的水管理可能是有利的。在这项研究中,采用孔隙网络模型来获得具有几个工程孔隙路径的疏水性GDL中液态水的稳定饱和分布。孔隙网络的结果清楚地表明了工程化的孔隙路径在降低疏水性GDL中的液态水饱和度水平方面的优势。参照多孔介质中的渗透渗流过程,讨论了这些工程孔隙路径减少液态水驱替的机理。

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