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Application of lattice Boltzmann method to the simulation of multiphase flow in the inhomogeneous porous electrode of a PEM fuel cell

机译:格子玻尔兹曼方法在PEM燃料电池非均质多孔电极多相流模拟中的应用

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摘要

The lattice Boltzmann (LB) method is applied to the multi-phase flow phenomenon in the inhomogeneous gas diffusion layer of a PEM fuel cell. The inhomogeneous porous structure of the carbon cloth and carbon paper has been modeled as void space and porous area using Stokes/Brinkman formulation and void space and impermeable fiber distributions obtained from microscopic image. The permeability of the porous medium is calculated and compared to the experimental measurements in literature showing a good agreement. Simulation results indicate that the permeability of the medium is strongly influenced by the fiber orientations. Present LB flow models are applied to the multi-phase flow simulations by incorporating multi-component model with inter-particle interaction. The model successfully simulates the complicated unsteady behaviors of liquid droplet motion in the porous medium providing a useful tool to investigate the mechanism of liquid water accumulation/removal in a gas diffusion layer of a PEM fuel cell.
机译:格子玻尔兹曼(LB)方法应用于PEM燃料电池不均匀气体扩散层中的多相流动现象。碳布和碳纸的不均匀多孔结构已使用斯托克斯/布林克曼公式建模为空隙空间和多孔区域,并从微观图像获得了空隙空间和不可渗透的纤维分布。计算出多孔介质的渗透率,并将其与文献中的实验测量值进行比较,显示出很好的一致性。仿真结果表明,介质的渗透性受纤维取向的强烈影响。当前的LB流动模型通过结合具有粒子间相互作用的多组分模型而应用于多相流动模拟。该模型成功地模拟了多孔介质中液滴运动的复杂非稳态行为,为研究PEM燃料电池气体扩散层中液态水的积聚/去除机理提供了有用的工具。

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