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A new approach to modelling water flooding in a polymer electrolyte fuel cell

机译:模拟聚合物电解质燃料电池中水驱的新方法

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The distribution and migration of liquids in various layers of a PEFC is commonly modelled by the 3D flow equations. Given the fact these layers are very thin, there are major problems with such models, including heavy computational efforts and doubts in their applicability to the gas diffusion layer (GDL). Recently, a new approach for modelling multiphase flow through a stack of thin porous layers has been developed [Qin and Hassanizadeh, Int. J. Heat Mass Transfer 70 (2014) 693-708]. In this approach, which is called "reduced continua model", each layer is modelled as a 2D domain with governing equations formulated in terms of thickness-averaged properties. The mass exchange between layers is prescribed by a new constitutive equation. The aim of this paper is to illustrate the implementation of the reduced continua model and show its advantages in modelling liquid water flooding in the GDL and micro porous layer (MPL) of a PEFC. We find that, in comparison to the Richards model, the reduced continua model predicts quite similar water dynamics in the MPL, but a lower steady-state water saturation in the GDL, particularly under the channel area. We provide a quantitative indication of the enormous computational efficiency of the reduced continua model as compared to the Richards model. Finally, the sensitivity studies of major material parameters of the reduced continua model have been provided. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:PEFC各层中液体的分布和迁移通常通过3D流动方程建模。考虑到这些层非常薄的事实,此类模型存在重大问题,包括大量的计算工作以及对它们对气体扩散层(GDL)适用性的怀疑。最近,已经开发出一种新的方法来模拟通过一叠薄多孔层的多相流[Qin and Hassanizadeh,Int。热传质70(2014)693-708]。在这种称为“缩减连续模型”的方法中,将每个层建模为2D域,并使用根据厚度平均属性制定的控制方程式进行建模。层之间的质量交换由新的本构方程规定。本文的目的是说明简化连续模型的实现,并展示其在对PEFC的GDL和微孔层(MPL)中的液态水驱油进行建模方面的优势。我们发现,与Richards模型相比,简化的continuate模型预测MPL中的水动力学非常相似,但是GDL中的稳态水饱和度较低,尤其是在通道区域下方。与Richards模型相比,我们提供了量化的简化连续模型的巨大计算效率的指示。最后,对简化连续模型的主要材料参数进行了敏感性研究。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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