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Asymptotic reduction and homogenization of a thermo-electrochemical model for a lithium-ion battery

机译:锂离子电池热电化学模型的渐近减少和均匀化

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In this study, matched asymptotic expansions are used to systematically reduce a thermo-electrochemical model of a lithium-ion battery based on volume averaging the electrode microstructure. In the cases with a constant or oscillating applied current, explicit asymptotic solutions of the full model can be obtained. In the case with a constant cell potential, the reduced model comprises a low-order differential-algebraic system. The asymptotic and numerical solutions of the volume-averaged model are compared with the numerical solutions of a thermal pseudo-two-dimensional (P2D) model, which treats the electrode as a collection of spherical particles. Excellent agreement is found between the models at (dis)charge rates up to 2C, and reasonable agreement is found at 4C. Homogenization is then used to derive a thermal model of a battery comprising several connected lithium-ion cells. We derive a closed-form solution to the homogenized model when the effective Biot number is small, which corresponds to a spatially uniform battery temperature. By comparing simulation times, we show that the asymptotically reduced and homogenized models provide substantial computational savings compared with the full numerical simulations, thereby making them ideal for use in onboard thermal management systems. We also show that thermal runaway does not occur in the model, despite accounting for the Arrhenius dependence of the reaction coefficients. (C) 2019 Elsevier Inc. All rights reserved.
机译:在本研究中,匹配的渐近扩展用于基于体积平均电极微结构来系统地降低锂离子电池的热电化学模型。在具有恒定或振荡施加的施加电流的情况下,可以获得完整模型的显式渐近解。在具有恒定电池电位的情况下,降低的模型包括低阶差分代数系统。将体积平均模型的渐近和数值解与热伪二维(P2D)模型的数值溶液进行比较,其将电极视为球形颗粒的集合。在(DIS)收费率最高2C的模型之间发现了良好的协议,并且在4C中发现了合理的协议。然后使用均匀化来得出包含多个连接的锂离子电池的电池的热模型。当有效的BIOT数小时,我们将闭合形式的封闭式解决方案衍生给均质模型,这对应于空间均匀的电池温度。通过比较模拟时间,我们表明渐近减少和均质的模型与完整的数值模拟相比提供了大量的计算节省,从而使它们适用于船上热管理系统。我们还表明,尽管考虑到反应系数的依据,但是在模型中不会发生热失控。 (c)2019 Elsevier Inc.保留所有权利。

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