首页> 外文会议>Polymer Electrolyte Fuel Cells Symposium;Meeting of The Electrochemical Society >3D Modeling of One and Two Component Gas Flow in Fibrous Microstructures in Fuel Cells by Using the Lattice-Boltzmann Method
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3D Modeling of One and Two Component Gas Flow in Fibrous Microstructures in Fuel Cells by Using the Lattice-Boltzmann Method

机译:使用莱迪思-玻尔兹曼方法对燃料电池纤维微结构中的一种和两种组分气体流动进行3D建模

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In fuel cells, a homogeneous distribution of gas flow is desirable for optimal performance. The gas diffusion layer (GDL) often used in PEM-like fuel cells is one of the key elements responsible for a uniform distribution under channels and ribs. To assess this ability of GDL-materials, characteristic numbers, e.g. the permeability, are often introduced. In this paper, we simulate one and two component gas flow through a virtual GDL material under operating conditions of a HT-PEFC. We observe the influence of discretization and viscosity choice on the macroscopic output of the Lattice-Boltzmann algorithm we apply. To achieve this, we first study their effects on empty square channels and finally transfer our interpretation to the output of a GDL simulation.
机译:在燃料电池中,需要气流的均匀分布以获得最佳性能。通常在类PEM燃料电池中使用的气体扩散层(GDL)是负责在通道和肋条下方均匀分布的关键元素之一。为了评估GDL材料的这种能力,需要使用特征数,例如渗透性,经常被介绍。在本文中,我们模拟了在HT-PEFC的工作条件下通过虚拟GDL材料的一种和两种组分的气体流动。我们观察到离散化和粘度选择对我们应用的Lattice-Boltzmann算法的宏观输出的影响。为此,我们首先研究它们对空方通道的影响,最后将我们的解释转移到GDL模拟的输出中。

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