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Thermal Management of Battery Module Consisting of Multiple Li-ion Cells for Hybrid Power Systems

机译:混合动力系统中由多个锂离子电池组成的电池模块的热管理

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Lithium ion (Li-ion) batteries are promising power sources for hybrid propulsion systems, and thermal management of batteries has been identified as a critical issues for their safe and efficient application. This work studied thermal management of Li-ion battery pack both experimentally and computationally. A battery pack consisting of multiple cells was fabricated and experimentally tested in a wind tunnel facility. Systematic tests were performed under various flow velocity, charging and discharging current, and pack configuration. Computationally, a high-fidelity two dimensional CFD-FEA (Computational Fluid Dynamics and Finite Element Analysis) model was developed to capture the detailed dynamics of thermal management of the cells. Temperature rise of cells and pressure measurements were recorded in the experiments, and compared with model simulations. Reasonable agreement was obtained, confirming the validity of the model and also revealing possible directions for future work.
机译:锂离子(Li-ion)电池是混合动力推进系统的有前途的动力源,电池的热管理已被认为是安全高效地应用的关键问题。这项工作通过实验和计算研究了锂离子电池组的热管理。制造了由多个电池组成的电池组,并在风洞设施中进行了实验测试。系统测试是在各种流速,充放电电流和电池组配置下进行的。通过计算,开发了高保真二维CFD-FEA(计算流体动力学和有限元分析)模型,以捕获电池热管理的详细动力学。在实验中记录了电池的温度升高和压力测量结果,并将其与模型仿真进行了比较。获得了合理的同意,证实了该模型的有效性,并揭示了未来工作的可能方向。

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