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首页> 外文期刊>International journal of hydrogen energy >Numerical studies of interfacial phenomena in liquid water transport in polymer electrolyte membrane fuel cells using the lattice Boltzmann method
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Numerical studies of interfacial phenomena in liquid water transport in polymer electrolyte membrane fuel cells using the lattice Boltzmann method

机译:格子Boltzmann方法数值研究聚合物电解质膜燃料电池中液态水传输的界面现象

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Water management is an important issue in the polymer electrolyte membrane (PEM) fuel cell, which is considered as a promising alternative power source for future automotive applications. In this article, lattice Boltzmann simulations are conducted to examine the interfacial phenomena in liquid water transport in porous materials of a PEM fuel cell. Numerical results clearly indicate that large perforated pores through the porous diffusion layers can serve as a convenient liquid water transport pathway and thus assist in liquid water removal. An interconnected horizontal and vertical pore combination is especially beneficial to liquid water transport through the porous layers in flooding conditions. Therefore, liquid water transport in a PEM fuel cell may be effectively managed through well engineered interfacial structures in porous materials.
机译:水管理是聚合物电解质膜(PEM)燃料电池中的重要问题,它被认为是未来汽车应用的有前途的替代电源。在本文中,进行格子Boltzmann模拟以检查PEM燃料电池多孔材料中液态水传输中的界面现象。数值结果清楚地表明,穿过多孔扩散层的大孔眼可作为便利的液态水传输路径,从而帮助去除液态水。水平和垂直互连的孔隙组合特别有利于液态水在驱油条件下通过多孔层的传输。因此,可以通过在多孔材料中精心设计的界面结构来有效地管理PEM燃料电池中的液态水传输。

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