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DEVELOPMENT OF HIGH POWER LITHIUM-ION BATTERY PACK FOR HYBRID ELECTRIC VEHICLES

机译:混合动力电动汽车高功率锂离子电池组的研制

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We developed the compact battery pack with structural safety and high cooling performance based on numerical simulation for hybrid electric vehicle (HEV) applications. The most important requirement in HEV battery pack is high specific power (kW/kg), which makes lightweight design of battery pack essential. By applying optimization methodology combined with structural finite element analysis, robust and lightweight module frame, which binds dozens of batteries together, was designed to minimize the deformation of batteries in case of swelling or explosion. Efficient cooling system was also achieved through the Pugh decision matrix with computational fluid dynamic analysis, to have a uniform temperature distribution and a minimized pressure drop within the pack under normal charging/discharging conditions. By employing module frame and cooling system based on numerical simulation, the compact design of lithium-ion battery pack was obtained successfully to have structural safety and cooling performance. Experiments were implemented to further validate numerical simulation of thus obtained optimal battery pack design for HEV, and they were found to be in good agreement.
机译:我们开发了基于混合动力电动车(HEV)应用的数值模拟的结构安全和高冷却性能的紧凑型电池组。 HEV电池组中最重要的要求是高特定功率(KW / kg),这使得电池组的轻质设计是必不可少的。通过应用优化方法,结合结构有限元分析,鲁棒和轻量级模块框架,拟合数十次电池在一起,旨在最大限度地减少电池的变形,以便在膨胀或爆炸时。还通过具有计算流体动态分析的PUGH判定矩阵实现了高效的冷却系统,在正常充电/放电条件下具有均匀的温度分布和包装内的最小压降。通过基于数值模拟采用模块框架和冷却系统,成功地获得了锂离子电池组的紧凑设计,具有结构安全性和冷却性能。实施实验以进一步验证由此获得的HEV获得最佳电池组设计的数值模拟,并且发现它们非常一致。

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