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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Electrochemical thermal modeling and experimental measurements of 18650 cylindrical lithium-ion battery during discharge cycle for an EV
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Electrochemical thermal modeling and experimental measurements of 18650 cylindrical lithium-ion battery during discharge cycle for an EV

机译:18650圆柱形锂离子电池的电化学热建模和实验测量在EV下放电循环期间的电池

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摘要

Study of thermal performance in lithium-ion battery cell is crucial which directly affects the safety. Even though the operation of a lithium-ion battery cell is transient phenomena in most cases, most available thermal models for lithium-ion battery cell predicts only steady-state temperature fields. This paper presents a mathematical model to predict the transient temperature and voltage distributions of 18650 cylindrical lithium-ion battery at different discharge rates. For this, the 18650 cylindrical lithium-ion battery cell is tested inside the lab with an air-cooling method by four thermocouples mounted on the battery surface under four constant current discharge rates of 1 C, 2 C, 3 C, and 4 C in order to provide quantitative data regarding thermal behavior of lithium-ion batteries. Later, the numerical model is developed using ANSYS CFD software and it is found that the model predictions are in good agreement with experimental data for temperature and voltage profiles. The highest temperature is 46.86 C-degrees at 4 C discharge rate as obtained from simulation. The results also show that the increased C-rates results in increased temperature on the principle surface of the battery.
机译:锂离子电池电池的热性能研究至关重要,直接影响安全性。尽管在大多数情况下,锂离子电池单元的操作是瞬态现象,但锂离子电池单元的最可用的热模型仅预测稳态温度场。本文介绍了一种数学模型,以预测不同放电率的18650圆柱形锂离子电池的瞬态温度和电压分布。为此,通过空气冷却方法在实验室内测试了18650个圆柱形锂离子电池,通过安装在电池表面上的四个热电源,在4℃,2c,3c和4c的四个恒定电流放电速率下为了提供关于锂离子电池的热行为的定量数据。稍后,使用ANSYS CFD软件开发了数值模型,并发现模型预测与温度和电压型材的实验数据很好。从模拟中获得的4c放电率,最高温度为46.86℃。结果还表明,增加的C速率导致电池原理表面的温度升高。

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