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On the Limitations of Volume-Averaged Descriptions of Gas Diffusion Layers in the Modeling of Polymer Electrolyte Fuel Cells

机译:在聚合物电解质燃料电池建模中气体扩散层体积平均描述的局限性

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摘要

Understanding of the coupled transport processes that occur in thin gas diffusion layers (GDLs) is necessary to develop improved designs. The traditional technique used to model GDLs is the volume-averaged approximation. However, the applicability of this approach has been long questioned, and the error in the results is unclear. In this work, the limitations of GDL volume-averaged models are examined under single-phase conditions. The lattice Boltzmann method is combined with tomography images of carbon-paper GDLs to assess the existence of a representative elementary volume (REV) in terms of various effective properties. Then, the predictions of GDL volume-averaged and pore-scale formulations are compared by using a CFD model of a differential cell. The results show that a REV cannot be clearly defined. This leads to inhomogeneities in the pore-scale model that the volume-averaged model is not able to capture despite the overall flux through the GDL is similar in both cases.
机译:理解在薄气体扩散层(GDL)中发生的耦合输送过程是开发改进的设计。用于模拟GDL的传统技术是体积平均近似。然而,这种方法的适用性已经存在着质疑,结果中的错误尚不清楚。在这项工作中,在单相条件下检查GDL体积平均模型的局限性。格子Boltzmann方法与碳纸GDL的断层扫描图像相结合,以评估各种有效性质的代表性基本体积(Rev)的存在。然后,通过使用差分细胞的CFD模型进行比较GDL体积平均和孔隙级配方的预测。结果表明,REV无法明确定义。这导致孔径模型中的不均匀性,即,尽管通过GDL的整体通量在这两种情况下,仍然不能捕获的孔径平均模型。

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