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首页> 外文期刊>Journal of Applied Electrochemistry >Analytical solution for electrolyte concentration distribution in lithium-ion batteries
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Analytical solution for electrolyte concentration distribution in lithium-ion batteries

机译:锂离子电池电解液浓度分布的解析溶液

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In this article, the method of separation of variables (SOV), as illustrated by Subramanian and White (J Power Sources 96:385, 2001), is applied to determine the concentration variations at any point within a three region simplified lithium-ion cell sandwich, undergoing constant current discharge. The primary objective is to obtain an analytical solution that accounts for transient diffusion inside the cell sandwich. The present work involves the application of the SOV method to each region (cathode, separator, and anode) of the lithium-ion cell. This approach can be used as the basis for developing analytical solutions for battery models of greater complexity. This is illustrated here for a case in which non-linear diffusion is considered, but will be extended to full-order nonlinear pseudo-2D models in later work. The analytical expressions are derived in terms of the relevant system parameters. The system considered for this study has LiCoO2–LiC6 battery chemistry.
机译:在本文中,采用Subramanian和White(J Power Sources 96:385,2001)所示的变量分离方法(SOV)确定三区域简化锂离子电池中任意点的浓度变化。三明治,经历恒流放电。主要目的是获得一种解析解决方案,该解决方案解决了细胞三明治内部的瞬态扩散问题。目前的工作涉及将SOV方法应用于锂离子电池的每个区域(阴极,隔板和阳极)。此方法可以用作开发复杂度更高的电池模型分析解决方案的基础。这是在考虑了非线性扩散的情况下进行说明的,但在以后的工作中将扩展到全阶非线性伪2D模型。解析表达式是根据相关系统参数得出的。本研究考虑的系统具有LiCoO2 –LiC6 电池化学成分。

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