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A two dimensional partial flooding model for PEMFC

机译:PEMFC的二维局部驱油模型

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摘要

Proton exchange membrane fuel cells (PEMFCs) have attracted much attention in these years. In PEMFCs, liquid/gas two-phase flow is a common phenomenon, which has great influence on fuel cell performance. However, the liquid water transport process has not been satisfactorily modeled yet. In this work, a two dimensional partial flooding model was developed, in which the pore size distribution of the gas diffusion layer (GDL) is taken into consideration in the explanation of fuel cell flooding for the first time. Liquid water produced is considered to flood a fraction of the GDL hydrophobic pores with diameter greater than the capillary condensation threshold diameter, and the unflooded pores will serve as passageway for gas transportation and the corresponding catalyst area is available for electrochemical reaction. Use this model, it is simple to explain membrane dehydration and electrode flooding. Different operation conditions have been studied with the model and the model polarization curves show reasonable accordance with the experimental results.
机译:近年来,质子交换膜燃料电池(PEMFC)引起了很多关注。在PEMFC中,液/气两相流是普遍现象,对燃料电池的性能影响很大。但是,液态水的运输过程尚未令人满意地建模。在这项工作中,建立了二维局部驱油模型,其中首次在解释燃料电池驱油时考虑了气体扩散层(GDL)的孔径分布。产生的液态水被认为淹没了一部分GDL疏水孔,其直径大于毛细管冷凝阈值直径,未淹没的孔将充当气体传输的通道,并且相应的催化剂区域可用于电化学反应。使用此模型,很容易解释膜脱水和电极溢流。用该模型研究了不同的工作条件,模型的极化曲线与实验结果吻合良好。

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