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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical investigations of vapor condensation and water transport in gas diffusion layers of PEMFC
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Numerical investigations of vapor condensation and water transport in gas diffusion layers of PEMFC

机译:PEMFC气体扩散层中蒸汽凝结和水运输的数值研究

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Water transport in vapor/liquid form in gas diffusion layers (GDL) of proton exchange membrane fuel cell (PEMFC) are numerically investigated in this study. A stochastic method is employed to reconstruct the 3D structured GDL, then a validated phase change solver is developed and implemented in the Open-FOAM platform to simulate the vapor condensation process. Comprehensive simulations are carried out to analyze the GDL porosity distribution, compressed deformation, mass flow rate, local temperature and contact angle effects on the vapor condensation and transport dynamics. Two GDL with gradient porosities and one with TGP-H-060 type are reconstructed to compare the vapor/liquid-water transport behaviors. It is found that the spatial distribution of the condensate water is comparatively different from the liquid water transport patterns. It reveals that the water transport in liquid form was much more sensitive to the GDL design, while it is more applicable in vapor form. Due to the GDL compression, the vapor/liquid water transport are impeded, especially in the middle layers of the GDL and large velocity separations are detected during the vapor transport. Meanwhile, the results of the parametric analysis indicate that water transport in vapor form provides more options in avoiding water flooding. This study is significant to deepen our understanding on the vapor condensation process and water transport dynamics in GDL, which can further guide the GDL design and optimization.
机译:在本研究中,数值研究了质子交换膜燃料电池(PEMFC)的气体扩散层(GDL)中的蒸汽/液体形式的水运输。采用随机方法来重建3D结构化GDL,然后在开孔平台中开发并实施验证的相变求解器以模拟蒸汽冷凝过程。进行综合模拟,以分析GDL孔隙孔隙分布,压缩变形,质量流量,局部温度和接触角效应对蒸汽凝结和运输动力学。重建两个具有梯度孔隙孔的GDL和一个具有TGP-H-060型的GDL,以比较蒸气/液体运输行为。发现冷凝水的空间分布与液体水输送模式相对不同。它揭示了液体形式的水运输对GDL设计更敏感,而其更适用于蒸汽形式。由于GDL压缩,阻抗蒸汽/液体水传输,特别是在GDL的中间层中,并且在蒸汽运输期间检测大的速度分离。同时,参数分析的结果表明,蒸汽形式的水运输提供了更多选择避免水利。这项研究很重要,深化我们对GDL中的蒸汽冷凝过程和水运输动力学的理解,这可以进一步引导GDL设计和优化。

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