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Simulation Study on Thermal Characteristics and Temperature Distribution of Lithium-Ion Battery Pack in Electric Trike

机译:电动三轮车锂离子电池组热特性和温度分布的仿真研究

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The lithium-ion batteries (LIB) frequently being used in the electric vehicle due to high energy density, high power density, and fairly long-life cycles. In this paper, LIB applied to electric trike which becoming very popular recently. Performance and life cycles of LIB sensitive to temperature, so it is necessary to maintain the temperature condition in the range of -̅20°C to 40°C. Temperature significantly affects the performance of the LIB battery and also limits the applications of the LIB battery. To be able to maintain the temperature of LIB at optimum temperature, the temperature distribution inside the LIB pack should be investigated first. This paper study the temperature distribution of the LIB pack used in the electric trike. Pack geometry, as well as the surrounding condition, first build in Solidworks. The geometry model then imported to Comsol Multiphysics to study phenomena of mass transport and heat transfer within the LIB pack and surrounding area. The main objective of this study is to lay the foundation to design the battery thermal management system (BTMS) in the LIB pack for the electric trike.
机译:由于高能量密度,高功率密度和相当长的使用寿命,锂离子电池(LIB)经常用于电动汽车。本文将LIB应用于近来非常流行的电动三轮车。 LIB的性能和生命周期对温度敏感,因此有必要将温度条件保持在-̅20°C至40°C的范围内。温度会严重影响LIB电池的性能,并限制LIB电池的应用。为了能够将LIB的温度保持在最佳温度,应首先研究LIB组件内部的温度分布。本文研究了用于电动三轮车的LIB电池组的温度分布。装填几何图形以及周围条件首先在Solidworks中构建。然后将几何模型导入Comsol Multiphysics,以研究LIB组件和周围区域内的传质和传热现象。这项研究的主要目的是为电动三轮车的LIB电池组设计电池热管理系统(BTMS)奠定基础。

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