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首页> 外文期刊>International journal of hydrogen energy >Impact of PTFE content and distribution on liquid-gas flow in PEMFC carbon paper gas distribution layer: 3D lattice Boltzmann simulations
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Impact of PTFE content and distribution on liquid-gas flow in PEMFC carbon paper gas distribution layer: 3D lattice Boltzmann simulations

机译:PTFE含量和分布对PEMFC碳纸气体分布层中液气流动的影响:3D格子Boltzmann模拟

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A 3D multiphase lattice Boltzmann model (LBM) was established and employed to study the impact of polytetrafluoroethylene (PTFE) content and distribution on the liquid-gas transport in proton exchange membrane fuel cell (PEMFC) carbon-paper gas distribution layer (GDL). In the computer-generated carbon paper GDL, part of the fibers' surface was randomly specified as PTFE to achieve a desired PTFE content and distribution. For non-uniform PTFE distribution cases, a GDL sub-region neighboring to gas channel (GC) was set to have higher PTFE content. PTFE content and distribution show important influence on the liquid-gas flow and on the relationship of relative permeability versus phase saturation. The GDL sub-region of more PTFE acts like a capillary barrier and raises the liquid saturation level in the rest part of GDL. The simulated liquid saturation level in GDL diminishes with the increase of PTFE content in GDL. The liquid phase relative permeability is larger in the GDL of lower PTFE content if the (overall) liquid saturation is lower than a threshold value, whereas it becomes smaller if the liquid saturation is higher than this threshold value. The liquid phase relative permeability in the GDL with non-uniform PTFE distribution is reduced when the liquid saturation in GDL is lower than a certain value, but when the liquid saturation is higher than this value, it is larger compared with that in the GDL with uniform PTFE distribution. The gas phase relative permeability in the GDL of lower PTFE content is larger than tat in the GDL of higher PTFE content and the non-uniform distribution of PTFE in GDL slightly reduces the gas phase relative permeability value. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:建立了3D多相格子Boltzmann模型(LBM),并用于研究聚四氟乙烯(PTFE)的含量和分布对质子交换膜燃料电池(PEMFC)碳纸气体分布层(GDL)中的液体气体传输的影响。在计算机生成的复写纸GDL中,将纤维表面的一部分随机指定为PTFE,以实现所需的PTFE含量和分布。对于不均匀的PTFE分布情况,将与气体通道(GC)相邻的GDL子区域设置为具有较高的PTFE含量。 PTFE的含量和分布对液-气流量以及相对磁导率与相饱和度之间的关系具有重要影响。更多PTFE的GDL子区域起着毛细管屏障的作用,并提高了GDL其余部分的液体饱和度。 GDL中模拟的液体饱和度随GDL中PTFE含量的增加而降低。如果(整体)液体饱和度低于阈值,则在较低PTFE含量的GDL中,液相相对渗透率会较大,而如果液体饱和度高于此阈值,则液相相对渗透率会变小。当GDL中的液体饱和度低于一定值时,具有不均匀PTFE分布的GDL中的液相相对渗透率会降低,但当液体饱和度高于该值时,则与GDL中的液相饱和度相比会更大。 PTFE分布均匀。较低PTFE含量的GDL中的气相相对渗透率大于较高PTFE含量的GDL中的tat,并且PTFE在GDL中的不均匀分布会稍微降低气相相对渗透率值。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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