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Investigation of 3-D multilayer approach in predicting the thermal behavior of 20 Ah Li-ion cells

机译:三维多层方法预测20AH锂离子细胞的热行为

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摘要

Numerous research groups have adopted a 1D single-layer cell approach to model the thermal behavior of the Li-ion battery systems. However, as the size of a Li-ion cell increases, the 1D single-layer approach is not enough to determine the thermal behavior of the high capacity batteries. In this study, a multilayer approach is proposed to consider the effects of the number of layers on the thermal behavior of the cell. 3D electrochemical-thermal model with multilayer approach is designed and temperature predictions at various discharge rates are calculated. The results are validated at 30 degrees C for various discharge rates. Thermal behavior of the single-layer and multilayer cell approaches are compared with the experimental measurements. The results show that the error of estimates is halved if multilayer approach is applied. The proposed model is also used to study the effects of the number of layers on the temperature non-uniformity of the large sized Li-ion batteries. The results showed that multilayer cell approach represents the thermal behavior of the Li-ion cell more accurately. The study is promising for the development of an efficient thermal management system with a better prediction of the potential hot spots on the single cells and battery packs.
机译:许多研究组采用了1D单层电池方法来模拟锂离子电池系统的热行为。然而,随着Li离子电池的尺寸增加,1D单层方法不足以确定高容量电池的热行为。在本研究中,提出了一种多层方法,以考虑层数对细胞的热行为的影响。使用多层方法的3D电化学 - 热模型被设计和各种放电速率的温度预测。结果在30摄氏度下验证,以进行各种放电速率。将单层和多层电池方法的热行为与实验测量进行比较。结果表明,如果应用多层方法,估计误差会减半。所提出的模型还用于研究层数对大尺寸锂离子电池的温度不均匀性的影响。结果表明,多层电池方法更准确地表示锂离子电池的热行为。该研究在开发高效的热管理系统,更好地预测单个电池和电池组上的潜在热点。

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