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Modeling studies on battery thermal behaviour, thermal runaway, thermal management, and energy efficiency

机译:电池热行为,热失控,热管理和能效建模研究

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Thermal management is crucial to the safe operation of, and the achievement of normal/optimal performance of, electric vehicle (EV) batteries. A thermal management system is responsible for maintaining the operational temperature and temperature uniformity across a battery stack (during battery operation and/or stand-by) either by active cooling or by electric heating. The main concern with the thermal behaviour of room-temperature batteries (e.g. lithium-ion batteries) is the possible significant temperature increase (e.g. during high power extraction) which may cause thermal runaway, while for some batteries (e.g. lithium/polymer-electrolyte batteries), the operating temperature of which is above ambient temperature, another concern is the long heat-up time before start-up and the reduced total energy efficiency. In this paper, we discuss the thermal management aspect of electric vehicle batteries, including the examination of battery thermal behaviour, the design of suitable thermal management systems, and the evaluation of battery energy efficiency and the possibility of the occurrence of thermal runaway due to battery abuse.
机译:热管理对于安全运行至关重要,以及电动车辆(EV)电池的正常/最优性能的实现。热管理系统负责通过主动冷却或通过电加热维持电池堆(电池操作和/或待机期间)的操作温度和温度均匀性。室温电池的热行为(例如锂离子电池)的主要关注值是可能的显着温度升高(例如,在高功率提取期间),这可能导致热失控,而对于一些电池(例如锂/聚合物 - 电解质电池) ),其工作温度高于环境温度,另一个问题是启动前的长升温时间和降低的总能效。在本文中,我们讨论了电动车电池的热管理方面,包括电池热行为的检查,适合热管理系统的设计,以及电池能量效率的评估以及由于电池而发生热失控的可能性虐待。

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