A Systematic Approach to Evaluation of Various Cooling Strategies for EV Battery Pack Prismatic Cell using Analytical and Numerical Methods

Y. dol, Vivek Anami, Yogesh R. Jaju
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Abstract

Technology to maximize energy density and life of Lithium-ion batteries at a gradually reducing cost is evolving day by day. Fast charging of the battery pack has become one of the major requirements of electric vehicles. Such a requirement invariably poses certain challenges to the cells of the EV battery pack. One of them is to achieve an efficient and an optimal thermal management of the battery pack to maintain uniform operating temperature of the cells and within the manufacturers’ allowable range to ultimately increase the lifespan and reliability of the battery pack. The current work discusses the design strategies of cell cooling, heat load estimation & features of different cooling strategies. A MS Excel spreadsheet-based design tool was developed to quickly estimate the cell temperature gradient. The results from the spreadsheet-based tool, which was based on fundamental equations, correlated well with 3D CFD simulation results. The results were analysed and the cooling strategy for the battery pack was decided based on the analytical and numerical values obtained from the analysis of various cell parameters. 
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基于解析和数值方法的电动汽车电池组柱状电池冷却策略系统评估
在逐渐降低成本的情况下,最大限度地提高锂离子电池的能量密度和寿命的技术正在日益发展。电池组的快速充电已成为电动汽车的主要要求之一。这样的要求总是给电动汽车电池组的电池带来一定的挑战。其中之一是实现电池组的高效和最佳热管理,以保持电池的均匀工作温度,并在制造商的允许范围内,最终提高电池组的使用寿命和可靠性。本文讨论了电池冷却的设计策略、热负荷的估计以及不同冷却策略的特点。开发了基于MS Excel电子表格的设计工具,用于快速估算细胞温度梯度。基于电子表格的工具基于基本方程,其结果与三维CFD模拟结果吻合良好。根据对电池各参数的分析得到的解析值和数值,对结果进行了分析,并确定了电池组的冷却策略。
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