Goudarzi Mohsen, Grazioli Davide, Simone Angelo
Department of Earth Sciences Utrecht University Utrecht The Netherlands.
Department of Industrial Engineering University of Padova Padua Italy.
Int J Numer Methods Eng. 2022 Apr 15;123(7):1513-1546. doi: 10.1002/nme.6881. Epub 2022 Feb 15.
Fibrous electrodes are a promising alternative to conventional particle-based lithium-ion battery electrodes. In this contribution, we propose an efficient computational approach for the modeling and simulation of electrochemical phenomena taking place in fibrous electrodes during battery charge/discharge processes. Since each fiber is explicitly modeled by means of a dimensionally reduced embedded fiber model, the framework enables simulations in a three-dimensional setting with relatively modest discretization and computational requirements compared to simulations with fully resolved fiber discretizations. The approach is applied to electrodes with high volume fractions of high aspect ratio fibers. Various local and global quantities are analyzed and results are compared to those obtained with the standard finite element method and the pseudo-2D model.
纤维电极是传统颗粒基锂离子电池电极的一种有前途的替代方案。在本论文中,我们提出了一种高效的计算方法,用于对电池充电/放电过程中纤维电极内发生的电化学现象进行建模和模拟。由于每根纤维都通过降维嵌入式纤维模型进行显式建模,与完全解析纤维离散化的模拟相比,该框架能够在三维环境中进行模拟,且离散化和计算要求相对适中。该方法应用于具有高纵横比纤维的高体积分数电极。分析了各种局部和全局量,并将结果与用标准有限元法和伪二维模型获得的结果进行了比较。