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Effects of hydrophilic/hydrophobic properties on the water behavior in the micro-channels of a proton exchange membrane fuel cell

机译:亲水/疏水性能对质子交换膜燃料电池微通道水行为的影响

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摘要

The mobility of water droplets and water films inside a straight micro-channel of a proton exchange membrane fuel cell was simulated to study the effects of the hydrophilic/hydrophobic properties on water behavior. The volume-of-fluid model in the FLUENT package was used to keep track of the deformation of the liquid-gas interface. The results show that the water moved faster on a hydrophobic surface. But a hydrophobic channel side-wall was a disadvantage for the gas diffusion when the MEA had a hydrophilic surface. A hydrophilic channel side-wall with a hydrophobic MEA surface could avoid water accumulation on the MEA surface. The water and gas distribution under this condition was advantageous for water discharge and gas diffusion.
机译:模拟了质子交换膜燃料电池微通道内水滴和水膜的迁移率,以研究亲水/疏水性能对水行为的影响。 FLUENT软件包中的流体体积模型用于跟踪液气界面的变形。结果表明,水在疏水表面上的移动速度更快。但是,当MEA具有亲水性表面时,疏水性通道侧壁对于气体扩散是不利的。带有疏水性MEA表面的亲水通道侧壁可以避免水分积聚在MEA表面上。在这种条件下的水和气体分布有利于排水和气体扩散。

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