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Thermal characteristics of power battery pack with liquid-based thermal management

机译:基于液体热管理的动力电池组热特性

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Thermal management of a battery system is critical for maintaining energy storage capacity, driving range, cell longevity and safety, while lithium-ion battery electric vehicles are becoming increasingly popular. Thermal management studies at battery pack level have a practical guiding significance for the exploration of appropriate battery thermal management schemes and strategies, which are seldom taken into account in the study of liquid-based battery thermal management system (BTMS). The effects of heat capacitance, heat source characteristics, ambient temperature and charge-discharge ratio on the thermal performance of liquid-based BTMS are experimentally investigated in this study. The results indicate that active battery thermal management should be adopted, and self-discharge heating might be an appropriate way to warm up power battery pack uniformly. In the charging and discharging process of the battery, the temperature uniformity of the battery at 45 degrees C is better than that at 25 degrees C. What's more, during charging and near the end of discharging, the cell generates a tremendous amount of heat, in which case, cooling measurement should be enhanced and cooling should be maintained for 5 min at least after the end of charging.
机译:电池系统的热管理对于维持能量存储容量,驾驶范围,电池寿命和安全性至关重要,而锂离子电池电动车越来越受欢迎。电池组水平的热管理研究对于探索适当的电池热管理计划和策略具有实用的指导意义,这些方法很少考虑到液体电池热管理系统(BTMS)的研究中。本研究实验研究了热电容,热源特性,环境温度和电荷 - 放电比对液体基BTMS热性能的影响。结果表明,应采用有源电池热管理,自放电加热可能是一个适当的方法,可以均匀地加热电动电池组。在电池的充电和放电过程中,45摄氏度的电池温度均匀性优于25摄氏度。更重要的是,在充电和放电结束时,电池产生巨大的热量,在这种情况下,应增强冷却测量,并且至少在充电结束后至少保持冷却5分钟。

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