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Splitting Algorithm for Numerical Simulation of Li-ion Battery Electrochemical Processes

机译:锂离子电池电化学工艺数值模拟分裂算法

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In this paper we present a splitting algorithm for a numerical simulation of Li-ion battery electrochemical processes. Liion battery consists of three domains: anode, cathode and electrolyte. Mathematical model of electrochemical processes is described on a microscopic scale, and contains nonlinear equations for concentration and potential in each domain. On the interface of electrodes and electrolyte there are the Lithium ions intercalation and deintercalation processes, which are described by Butler-Volmer nonlinear equation. To approximate in spatial coordinates we use finite element methods with discontinues Galerkin elements. To simplify numerical simulations we develop the splitting algorithm, which split the original problem into three independent subproblems. We investigate the numerical convergence of the algorithm on 2D model problem.
机译:本文介绍了一种用于锂离子电池电化学工艺数值模拟的分裂算法。 LIION电池由三个域组成:阳极,阴极和电解质。 在微观尺度上描述了电化学过程的数学模型,并在每个结构域中含有非线性方程,其浓度和电位。 在电极和电解质的界面上,存在锂离子嵌入和脱嵌工艺,由Butler-Volmer非线性方程描述。 在空间坐标中近似我们使用具有中断Galerkin元件的有限元方法。 为了简化数值模拟,我们开发了分割算法,将原始问题分成三个独立的子问题。 我们研究了算法对2D模型问题的数值汇聚。

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