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Experimental study on a novel compact cooling system for cylindrical lithium-ion battery module

机译:圆柱形锂离子电池模块新型紧凑型冷却系统的实验研究

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摘要

Lithium-ion batteries generally require adequate thermal management to achieve optimal performance and avoid thermal runaway. Compactness and light-weight are of critical importance to the lithium-ion power battery system. A novel compact cooling system for thermal management of cylindrical lithium-ion battery packs is proposed, which is a hybrid of phase change material and heat pipe cooling systems. The heat pipe and phase-change-material tube are manufactured with aluminum (which is light in weight) and are specially designed to fully utilize the empty space in-between cylindrical batteries in tight contact. Some annular thin fins are integrally molded to the heat pipe condensation section to enhance convective heat removal to the ambient. The phase change material used is paraffin and the working fluid of heat pipe is acetone. A module contains 40 18650-type batteries, 13 phase-change-material tubes and 14 heat pipes is assembled. Experiments conducted testify the effectiveness of the hybrid thermal management system and reveal as well the effects of heat pipe and phase-change-material tube. It is found that the well-equipped hybrid cooling system can control the highest temperature and the maximum temperature difference in the battery module at about 47.7 degrees C and 2.5 degrees C respectively, during 2C discharge process and under the condition of natural air convection to 25 degrees C ambient. The heat pipe is found to be more effective at lowering the battery temperature rise while the phase-change-material tube appears to be more effective at reducing the temperature non-uniformity in the battery module. Moreover, the effects of phase-change-material tube are found to be sensitive to the ambient temperature; the phase-change-material tube appears to be most effective if the ambient temperature makes the battery module in operating experience a temperature range that can rightly ensure a complete melting of the phase change material.
机译:锂离子电池通常需要足够的热管理来实现最佳性能并避免热失控。紧凑性和轻质对锂离子电量电池系统至关重要。提出了一种用于圆柱形锂离子电池组热管理的小型冷却系统,是相变材料和热管冷却系统的混合动力。热管和相变材料管由铝(其重量轻)制造,并且专门设计用于在紧密接触中充分利用圆柱形电池之间的空空间。一些环形薄翅片与热管冷凝部分一体模制成,以增强对环境的热移除。所用的相变材料是石蜡,热管的工作流体是丙酮。模块包含40个18650型电池,组装了13个相变材料管和14个热管。实验进行证明了混合热管理系统的有效性,也是热管和相变材料管的效果。发现设备良好的混合式冷却系统可以在2C放电过程中分别在约47.7摄氏度和2.5摄氏度下控制最高温度和电池模块中的最高温度差。学位C环境。发现热管在降低电池温度上升时更有效,同时相变材料似乎在减少电池模块中的温度不均匀性时更有效。此外,发现相变材料管的影响对环境温度敏感;如果环境温度使电池模块在操作经验中使电池模块能够正确地确保相变材料完全熔化,则相变材料管似乎是最有效的。

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  • 作者单位

    Chinese Acad Sci Lab Adv Energy Syst Guangdong Key Lab New &

    Renewable Energy Res &

    De CAS Key Lab Renewable Energy Guangzhou Inst Energ Beijing Peoples R China;

    Chinese Acad Sci Lab Adv Energy Syst Guangdong Key Lab New &

    Renewable Energy Res &

    De CAS Key Lab Renewable Energy Guangzhou Inst Energ Beijing Peoples R China;

    Chinese Acad Sci Lab Adv Energy Syst Guangdong Key Lab New &

    Renewable Energy Res &

    De CAS Key Lab Renewable Energy Guangzhou Inst Energ Beijing Peoples R China;

    Chinese Acad Sci Lab Adv Energy Syst Guangdong Key Lab New &

    Renewable Energy Res &

    De CAS Key Lab Renewable Energy Guangzhou Inst Energ Beijing Peoples R China;

    China Southern Power Grid Co Ltd Guangzhou Guangdong Peoples R China;

    China Southern Power Grid Co Ltd Elect Power Res Inst Guangzhou Guangdong Peoples R China;

    China Southern Power Grid Co Ltd Elect Power Res Inst Guangzhou Guangdong Peoples R China;

    Chinese Acad Sci Lab Adv Energy Syst Guangdong Key Lab New &

    Renewable Energy Res &

    De CAS Key Lab Renewable Energy Guangzhou Inst Energ Beijing Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 热力工程、热机;热力工程理论;
  • 关键词

    Lithium-ion battery module; Battery thermal management system; Heat pipe; Phase change material; Battery safety;

    机译:锂离子电池模块;电池热管理系统;热管;相变材料;电池安全;

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