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首页> 外文期刊>Acta Chimica Slovenica >An Innovative Hybrid 3D Analytic-numerical Model for Air Breathing Parallel Channel Counter-flow PEM Fuel Cells
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An Innovative Hybrid 3D Analytic-numerical Model for Air Breathing Parallel Channel Counter-flow PEM Fuel Cells

机译:呼吸平行通道逆流PEM燃料电池的创新混合3D解析数值模型

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The parallel straight channel PEM fuel cell model presented in this paper extends the innovative hybrid 3D analytic-numerical (HAN) approach previously published by the authors with capabilities to address ternary diffusion systems and counter-flow configurations. The model's core principle is modelling species transport by obtaining a 2D analytic solution for species concentration distribution in the plane perpendicular to the cannel gas-flow and coupling consecutive 2D solutions by means of a 1D numerical pipe-flow model. Electrochemical and other nonlinear phenomena are coupled to the species transport by a routine that uses derivative approximation with prediction-iteration. The latter is also the core of the counter-flow computation algorithm. A HAN model of a laboratory test fuel cell is presented and evaluated against a professional 3D CFD simulation tool showing very good agreement between results of the presented model and those of the CFD simulation. Furthermore, high accuracy results are achieved at moderate computational times, which is owed to the semi-analytic nature and to the efficient computational coupling of electrochemical kinetics and species transport.
机译:本文中介绍的平行直通道PEM燃料电池模型扩展了作者先前发布的创新型混合3D解析数字(HAN)方法,具有解决三元扩散系统和逆流配置的功能。该模型的核心原理是,通过获取垂直于管道气流的平面中物种浓度分布的2D分析解决方案并通过1D数值管流模型耦合连续的2D解决方案,对物种迁移进行建模。电化学和其他非线性现象通过例程进行耦合,该例程使用带有预测迭代的导数近似。后者也是逆流计算算法的核心。提出了实验室测试燃料电池的HAN模型,并使用专业的3D CFD仿真工具进行了评估,显示出所提供模型的结果与CFD仿真的结果之间具有很好的一致性。此外,归因于半解析性质以及电化学动力学和物质传输的有效计算耦合,可以在中等计算时间获得高精度结果。

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