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Capillary Hysteresis in Neutrally Wettable Fibrous Media: A Pore Network Study of a Fuel Cell Electrode

机译:中性可湿性纤维介质中的毛细管滞后:燃料电池电极的孔网络研究。

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摘要

Hysteresis in the saturation versus capillary pressure curves of neutrally wettable fibrous media was simulated with a random pore network model using a Voronoi diagram approach. The network was calibrated to fit experimental air-water capillary pressure data collected for carbon fibre paper commonly used as a gas diffusion layer in fuel cells. These materials exhibit unusually strong capillary hysteresis, to the extent that water injection and withdrawal occur at positive and negative capillary pressures, respectively. Without the need to invoke contact angle hysteresis, this capillary behaviour is re-produced when using a pore-scale model based on the curvature of a meniscus passing through the centre of a toroid. The classic Washburn relation was shown to produce erroneous results, and its use is not recommended when modelling fibrous media. The important effect of saturation distribution on the effective diffusivity of the medium was also investigated for both water injection and withdrawal cases. The findings have bearing on the understanding of both capillarity in fibrous media and fuel cell design.
机译:使用Voronoi图方法,通过随机孔网络模型模拟中性可润湿纤维介质的饱和度与毛细管压力曲线中的磁滞。对该网络进行了校准,以适应为通常用作燃料电池中气体扩散层的碳纤维纸收集的实验性空气-水毛细管压力数据。这些材料表现出异常强的毛细管滞后性,以至于在正负毛细管压力下分别发生注水和回水。无需调用接触角滞后,当使用基于通过环形中心的弯月面曲率的孔隙尺度模型时,可以再现这种毛细管行为。已证明经典的Washburn关系会产生错误的结果,并且在对纤维介质建模时不建议使用该关系。在注水和取水情况下,还研究了饱和度分布对介质有效扩散率的重要影响。这些发现与对纤维介质中毛细作用和燃料电池设计的理解有关。

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