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Water transport in gas diffusion layers of PEM fuels cells in presence of a temperature gradient. Condensation effect

机译:PEM气体扩散层中的水传输会在温度梯度存在的情况下为电池提供燃料。凝结效果

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The gas diffusion layers (GDL) are crucial components as regards the water management in proton exchange membrane fuel cells. The present work aims at clarifying the mechanisms of water transport in GDL on the cathode side using pore network simulations. Various transport scenarios are considered from pure diffusive transport in gaseous phase to transport in liquid phase with or without liquid-vapor phase change. A somewhat novel aspect lies in the consideration of condensation and evaporation processes in the presence of a temperature gradient across the GDL. The effect of thermal gradient was overlooked in previous works. The temperature gradient notably leads to the possibility of condensation because of the existence of a colder zone on the channel side. The pore network simulations lead to phase distributions in qualitative agreement with X-Ray tomography visualizations. The simulations also indicate that the probability of GDL water flooding increases with the distance from the bipolar plate channel inlet.
机译:对于质子交换膜燃料电池中的水管理,气体扩散层(GDL)是至关重要的组成部分。本工作旨在通过孔隙网络模拟阐明阴极侧GDL中水的运移机理。考虑了各种运输方案,从气相的纯扩散运输到有或没有液相汽相变化的液相运输。某种程度上新颖的方面在于在整个GDL上存在温度梯度的情况下考虑冷凝和蒸发过程。热梯度的影响在以前的工作中被忽略了。由于在通道侧存在较冷的区域,温度梯度明显导致冷凝的可能性。孔隙网络模拟导致相分布与X射线断层扫描可视化在质量上一致。模拟还表明,GDL水淹的可能性随距双极板通道入口的距离而增加。

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