储能科学与技术 ›› 2023, Vol. 12 ›› Issue (11): 3369-3378.doi: 10.19799/j.cnki.2095-4239.2023.0471

• 储能系统与工程 • 上一篇    下一篇

特种储能方舱电池系统低温快速预热研究

谭伟(), 马克(), 徐伟晶, 米林, 陈楷翼   

  1. 重庆理工大学车辆工程学院,重庆 400054
  • 收稿日期:2023-07-07 修回日期:2023-07-21 出版日期:2023-11-05 发布日期:2023-11-16
  • 通讯作者: 马克 E-mail:wtan@cqut.edu.cn;mark@cqut.edu.cn
  • 作者简介:谭伟(1981—),男,工学博士,副教授,研究方向为电池储能与热管理,E-mail:wtan@cqut.edu.cn
  • 基金资助:
    国家电网公司总部科技项目(5418-202040248A-0-0-00)

Design of a low-temperature rapid preheating system for an energy storage container battery system

Wei TAN(), Ke MA(), Weijing XU, Lin MI, Kaiyi CHEN   

  1. School of Vehicle Engineering, Chongqing University of Technology, Chongqing 400054, China
  • Received:2023-07-07 Revised:2023-07-21 Online:2023-11-05 Published:2023-11-16
  • Contact: Ke MA E-mail:wtan@cqut.edu.cn;mark@cqut.edu.cn

摘要:

针对高原高寒环境无外界供能条件下,特种储能方舱电池系统冷启动困难,启动时间长,供电性能衰减严重导致的应急支援保障能力下降问题,进行特种储能方舱低温快速预热自启动方法研究。通过分析储能方舱电池系统容量需求、温度边界条件与低温启动时间需求,计算储能电池组和低温启动电池组的容量配比;建立电池组三维产热模型,采用数值模拟方法,确定热管最佳布置方式。通过正交试验法探究预热结构中各因素对电池系统升温性能的影响,并进行参数选优。设计了采用闭环液体预热耦合加热管的预热系统并建立仿真分析模型,对热管对流换热下的电池系统升温性能进行了仿真,结果表明:在-20 ℃的环境温度下,储能方舱电池系统可在10 min内快速预热至5 ℃以上的正常工作温度,满足应急支援保障需求。

关键词: 储能方舱, 锂离子电池, 低温预热, 闭环热耦合

Abstract:

This study proposes a low-temperature rapid start-up scheme for mobile energy storage containers to address the problem of decreased emergency support capabilities caused by the long cold start time and severe performance degradation of mobile energy storage container batteries in high-altitude and cold environments. The capacity ratio and low-temperature start-up battery group were calculated based on the capacity requirements of the energy storage container battery system, temperature boundary conditions, and low-temperature start-up time requirements. A standard battery module model and a liquid preheating structure were established. An orthogonal experiment method was used to explore the influence of various factors in the preheating structure on the heating performance of the battery system, and the parameters were optimized. A preheating system with closed-loop liquid preheating coupled with heating-film preheating was designed, and the preheating effect of closed-loop preheating was investigated. The results show that in an environment with a temperature of -20 ℃, the energy storage container can preheat the energy storage battery to above 5 ℃ within 10 minutes.

Key words: energy storage container, lithium-ion battery, low-temperature preheating, closed-loop thermal coupling

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