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Multi-Scale Simulation of Single-Phase Multi-Component Transport in the Cathode Gas Diffusion Layer of a Polymer Electrolyte Fuel Celltalized

机译:蜂窝化聚合物电解质燃料阴极气体扩散层中单相多组分输运的多尺度模拟

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A feasibility study into the development and application of a single-phase multi-component (SPMC) lattice Boltzmann (LB) model to simulate the movement of a three-species gas through the cathode gas diffusion layer (GDL) of a polymer electrolyte fuel cell (PEFC) has been reported in this paper. The porous geometry of the GDL is captured and digitally reconstructed for the numerical model using X-ray computed micro-tomography. The boundary conditions at the channel and catalyst layer interfaces for the SPMC-LB simulations including species partial pressures and through-plane flow rates are obtained using a previously-developed and validated electrochemical model of the complete multi-layer PEFC, which is based on the general transport equation (GTE). The results reveal that the SPMC-LB model has the capability to precisely detail the distribution of multi-species gas components through the heterogeneous porous structure of the GDL.
机译:开发和应用单相多组分(SPMC)晶格玻尔兹曼(LB)模型以模拟三种物质通过聚合物电解质燃料电池的阴极气体扩散层(GDL)的运动的可行性研究(PEFC)已在本文中报道。 GDL的多孔几何形状被捕获,并使用X射线计算机断层摄影术对数字模型进行数字重建。 SPMC-LB模拟的通道和催化剂层界面处的边界条件(包括物质分压和贯穿平面流速)是使用先前开发和验证的完整多层PEFC电化学模型获得的,该模型基于一般运输方程式(GTE)。结果表明,SPMC-LB模型具有通过GDL的非均质多孔结构精确描述多种气体成分分布的能力。

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