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Thermal issues about Li-ion batteries and recent progress in battery thermal management systems: A review

机译:锂离子电池的散热问题以及电池热管理系统的最新进展:回顾

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摘要

Electrical vehicles have the capability to lessen the severe threats of energy crisis and environment pollution. The Lithium ion battery as a promising solution for the energy storage in vehicular applications is briefly introduced in this paper. The adverse effects of improper temperature, including performance degradation, potential thermal runaway, temperature non-uniformity and low temperature performance are described afterwards. The thermal model, electrochemical model, equivalent circuit model and electrochemical/electrical-thermal coupling methods are also elaborated for the accurate battery modeling. More importantly, this review detailedly summarizes the progress on battery thermal management systems (BTMSs) including the air, liquid, boiling, heat pipe and solid-liquid phase change based strategies during recent years. Influence factors and development focus of different BTMSs are stated elaborately. Passive cooling systems utilizing the latent heat during the phase change process are more attractive options compared to the conventional single phase forced air and liquid cooling methods. However, there still exist some challenges to be addressed before commercializing. In addition, different methods could be combined to meet the requirements of various applications. The improvement of these existing BTMSs is supposed to be paid more attention to enhance Li-the performance and safety of Li-ion batteries.
机译:电动汽车具有减轻能源危机和环境污染的严重威胁的能力。本文简要介绍了锂离子电池作为汽车应用中能量存储的有希望的解决方案。随后描述了温度不合适的不利影响,包括性能下降,潜在的热失控,温度不均匀和低温性能。还详细说明了热模型,电化学模型,等效电路模型和电化学/电热耦合方法,以进行准确的电池建模。更重要的是,这篇综述详细总结了近年来电池热管理系统(BTMS)的进展,包括基于空气,液体,沸腾,热管和固液相变的策略。阐述了不同BTMS的影响因素和发展重点。相较于传统的单相强制空气和液体冷却方法,在相变过程中利用潜热的被动冷却系统是更具吸引力的选择。但是,在商业化之前仍然存在一些需要解决的挑战。另外,可以组合不同的方法以满足各种应用的需求。这些现有的BTMS的改进应该引起人们更多的关注,以增强锂离子电池的性能和安全性。

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