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Battery thermal management comparison for orthogonal arrangement of battery modules in an EV battery pack

机译:电动汽车电池组中电池模块的正交排列的电池热管理比较

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In recent years, environment concerns led to rise of electrification of vehicles across the globe. OEMs started adopting hybrid and battery electric vehicle technologies and even found the economic viability for their usage. Electric vehicle batteries, which contains lithium-ion chemistry, requires specific operating temperature range for effective power and energy output. The battery operating range is generally considered between 25°C to 35°C depending on battery internal chemistry. Thus, it necessitates use of battery thermal management which refers to heating and cooling of batteries by various methods such as air cooling – both active and passive strategies, liquid cooling and refrigeration cooling [1]. This paper describes performance comparison between air and liquid cooling for a prototype battery box based on specific parameters such as temperature variation within cell and within pack, rate of temperature drop and parasitic losses during their operations. Based on the comparison, it is found that liquid cooling meets most of the battery thermal requirements. Also, a simple control logic is elaborated which then can be use for triggering of liquid cooling during vehicle running conditions
机译:近年来,环境担忧导致全球车辆电气化的升高。 OEM开始采用混合动力和电池电动汽车技术,甚至发现其使用的经济可行性。含有锂离子化学的电动车辆电池需要特定的工作温度范围,以获得有效的功率和能量输出。根据电池内部化学,电池操作范围通常在25°C至35°C之间。因此,需要使用电池热管理,这是指通过诸如空气冷却的各种方法加热和冷却电池 - 既积极和被动策略,液体冷却和制冷冷却[1]。本文介绍了基于特定参数的原型电池盒的空气和液体冷却之间的性能比较,例如细胞内的温度变化,在其运行过程中的温度下降和寄生损失。基于比较,发现液体冷却符合大部分电池热要求。而且,阐述了简单的控制逻辑,然后可以用于触发车辆运行条件期间的液体冷却

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