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Thermal-electrochemical coupled simulations for cell-to-cell imbalances in lithium-iron-phosphate based battery packs

机译:用于锂 - 磷酸锂基电池组细胞对细胞不平衡的热电化学耦合模拟

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摘要

A thermal-electrochemical coupled model framework considering mass balance, charge balance, reaction kinetics, and energy balance is developed to evaluate thermally-driven imbalance among cells of a commercialized lithium-iron-phosphate battery pack consisting of a combination of series and parallel connections. Current distribution and joule heat generation of copper alloy sheets connecting several cells within a battery pack are also considered in the simulation. A running management built in MATLAB, R2010a (2010) is applied to deliver the coupling of the thermal-electrochemical model, among different Modulus of COMSOL Multiphysics 5.0 (2014). Simulated voltage variation and temperature distribution of an individual cell during charge/discharge are validated with the corresponding experiments. The developed model is further applied to study the non-uniform temperature distribution and electrical imbalance among cells within the 4S6P LFP battery pack. Simulation results show that thermal imbalance could magnify the deviation of discharge current and capacity among individual cells and may accelerate the capacity losses of the cells within a battery pack. Our model can facilitate understanding of the impact of electrical imbalance on the battery pack and assist thermal management systems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:考虑质量平衡,电荷平衡,反应动力学和能量平衡的热电化学耦合模型框架是为了评估由串联和平行连接组成的商业化锂铁 - 磷酸盐电池组细胞中的热驱动不平衡。在模拟中也考虑了连接电池组内的几个电池的铜合金板的电流分布和焦耳发热。应用于MATLAB的运行管理,R2010A(2010)应用于提供热电化学模型的耦合,不同的COMSOL Multiphysics 5.0(2014)。用相应的实验验证在充电/放电期间各个电池的模拟电压变化和温度分布。开发的模型进一步应用于研究4S6P LFP电池组内的细胞之间的非均匀温度分布和电气不平衡。仿真结果表明,热不平衡可以放大各个细胞中放电电流和容量的偏差,并可以加速电池组内电池的容量损耗。我们的模型可以促进了解电池组件对电池组的影响,并辅助热管理系统。 (c)2017 Elsevier Ltd.保留所有权利。

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