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Pore-scale flow and mass transport in gas diffusion layer of proton exchange membrane fuel cell with interdigitated flow fields

机译:具有交叉指流场的质子交换膜燃料电池气体扩散层中的孔尺度流动和传质

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摘要

Lattice Boltzmann method (LBM) is employed to investigate pore-scale flow and mass transport in a carbon paper gas diffusion layer (GDL) of interdigitated PEMFC. The carbon paper GDL is reconstructed using the stochastic method, and its macroscopic transport properties are numerically predicted. The predicted anisotropic permeabilities and effective diffusivity of the reconstructed GDL agree well with existing measurements. Then, effects of the porous structures of the carbon paper GDL are explored in terms of fluid flow, species transport and electrochemical reaction. The GDL porous structures greatly affect flow and mass transport, creating distinct specie concentration distribution and local current density distribution. Besides, simulations are performed to explore liquid water behaviors in the reconstructed GDL. The simulation results present a detailed description of the pore-scale liquid water behaviors. Further, simulations are performed to investigate the effects of land width and GDL contact angle on liquid water removal time and residual saturation. Narrower land reduces liquid water removal time and residual saturation. Higher contact angle increases the removal time and reduces the residual saturation.
机译:格子Boltzmann方法(LBM)用于研究叉指式PEMFC的碳纸气体扩散层(GDL)中的孔尺度流动和质量传输。使用随机方法重建碳纸GDL,并对其数值的宏观传输特性进行数值预测。重建的GDL的预测各向异性渗透率和有效扩散率与现有测量结果非常吻合。然后,从流体流动,物质传输和电化学反应方面研究了碳纸GDL的多孔结构的影响。 GDL多孔结构极大地影响了流量和质量传输,产生了不同的物种浓度分布和局部电流密度分布。此外,进行了仿真以探索重构的GDL中的液态水行为。模拟结果详细描述了孔尺度液态水的行为。此外,进行了仿真以研究陆地宽度和GDL接触角对液态水去除时间和残留饱和度的影响。狭窄的土地减少了液态水的去除时间和残留饱和度。较高的接触角会增加去除时间并降低残留饱和度。

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