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Computational Study on Design of Battery Cooling System for Retrofitted EV Passenger Cars

机译:改装EV乘用车电池冷却系统设计的计算研究

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In this study, a prospect of employing electric fans in a battery cooling system was investigated by means of a computational fluid dynamic (CFD) analysis. The concept was to have the fans to stimulate appropriate air flows inside the battery compartment. A rear utility space behind back passenger seats was dedicated for the battery compartment containing 100 cells of Lithium Ion batteries. Due to limited working space, a battery arrangement was conceived as a double stacking configuration. In computational analysis, the heat source model of employed batteries was obtained from the experimental work. Several potential designs of cooling patterns were investigated. The design parameters of interest were locations of inlet/outlet, and air flow rate. The performance criteria of cooling system were resulting battery temperatures, temperature distribution uniformity, required pump pressure, and structural integrity. The optimum design comprising of position of electric fans and outlets will be discussed in relation to practical aspect of daily usage.
机译:在该研究中,通过计算流体动态(CFD)分析研究了在电池冷却系统中使用电动风扇的前景。该概念是让风扇刺激电池盒内的适当空气流。背部乘客座椅后面的后效空间专用于包含100个锂离子电池的电池盒。由于工作空间有限,构思了电池装置作为双堆叠配置。在计算分析中,从实验工作中获得了采用电池的热源模型。研究了几种潜在的冷却模式设计。感兴趣的设计参数是入口/出口的位置和空气流速。冷却系统的性能标准导致电池温度,温度分布均匀性,所需的泵压和结构完整性。将在日常使用的实际方面讨论包括电风扇和出口位置的最佳设计。

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