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Thermal performance investigation of an air-cooled lithium-ion battery pack considering the inconsistency of battery cells

机译:考虑电池电池不一致的空气冷却锂离子电池组的热性能研究

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摘要

A lithium-ion battery pack is the power source of an electric vehicle, and its temperature rise is one of the main concerns. Existing research mainly focused on the design of cooling systems, and always used computational fluid dynamics to analyze the thermal behavior of batteries, regardless of the individual differences of batteries. In this paper, the heat dissipation performance of air-cooled battery packs considering the different thermal performance of different batteries was studied. A more realistic thermal model of the battery pack at 1C discharge rate was obtained through equivalent calculation and experimental verification. The results showed that the temperature of batteries with different thermal performance rose faster and the temperature difference was larger. At the same time, the thermal performance of the battery can be improved by placing the outlet and inlet on the same side. The thermal performance was more sensitive to the inlet exhaust height than to the outlet exhaust height. The research results can provide a basis for exploring the design method of battery packs with better heat dissipation performance, lower energy consumption, and a smaller volume.
机译:锂离子电池组是电动车辆的电源,其温度升高是主要问题之一。现有研究主要集中在冷却系统的设计上,始终使用计算流体动力学来分析电池的热行为,无论电池的个体差异如何。本文研究了考虑到不同电池的不同热性能的空气冷却电池组的散热性能。通过等效计算和实验验证获得1C放电率的电池组的更现实的热模型。结果表明,具有不同热性能的电池温度越来越快,温度差异较大。同时,通过将出口和入口放置在同一侧,可以提高电池的热性能。热性能对入口排气高度更敏感而不是出口排气高度。研究结果可以为探索电池组设计方法提供基础,具有更好的散热性能,降低能耗和较小的体积。

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