首页> 外文会议>International conference on fuel cell science, engineering, and technology;FuelCell2010 >LIQUID WATER AND GAS FLOW SIMULATION IN A CHANNEL OF PEM FUEL CELS USING THE LATTICE BOLTZMANN METHOD
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LIQUID WATER AND GAS FLOW SIMULATION IN A CHANNEL OF PEM FUEL CELS USING THE LATTICE BOLTZMANN METHOD

机译:用格子Boltzmann方法模拟PEM燃料电池通道中的水和气体流动

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In a polymer electrolyte membrane (PEM) fuel cell, the condensed water in the gas channel prevents the supply of reactants to electrodes, which deteriorates the cell performance. The Lattice Boltzmann simulation has been conducted to understand the behavior of condensed water in the gas channels. The scheme of the two-phase flow with large density difference was applied to find the optimum gas channel design. The present simulation demonstrates the effect of the cross-sectional shape, the droplet initial position, droplet volume and the air flow velocity for a hydrophobic gas channel. Introducing a new dimensionless parameter, which is the pump work needed to remove the droplet from the gas channel, we investigate the effect of each parameter on the drain performance of a PEM fuel cell's gas channel.
机译:在聚合物电解质膜(PEM)燃料电池中,气体通道中的冷凝水阻止了反应物向电极的供应,从而降低了电池的性能。进行了格子Boltzmann模拟以了解气体通道中冷凝水的行为。采用密度差较大的两相流方案,寻找最优的气道设计。本模拟演示了疏水气体通道的横截面形状,液滴初始位置,液滴体积和空气流速的影响。引入一个新的无量纲参数,这是从气体通道中去除液滴所需的泵工作,我们研究了每个参数对PEM燃料电池气体通道的排放性能的影响。

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