Research on performance test and evaluation of thermal management system of power battery module under harsh conditions

被引:4
|
作者
Li, Jingjing [1 ,2 ]
Qiao, Lulu [3 ]
Chen, Meng [3 ]
Zeng, Xiaohua [1 ,2 ]
机构
[1] Jilin Univ, Coll Automot Engn, Changchun 130025, Peoples R China
[2] Jilin Univ, State Key Lab Automot Simulat & Control, Changchun 130025, Peoples R China
[3] Northeast Forestry Univ, Coll Mech & Elect Engn, Harbin 150040, Peoples R China
基金
中国国家自然科学基金;
关键词
Power battery module; Harsh conditions; TiO2-CLPHP; Thermal management strategy; Efficiency analysis; HEAT-PIPE; PACKS;
D O I
10.1016/j.applthermaleng.2024.122406
中图分类号
O414.1 [热力学];
学科分类号
摘要
Under harsh conditions, the battery module (BM) used for Ev ' s power system has issues of local overheating, continuous high temperature, and spontaneous combustion causing thermal accidents. This problem is directly related to the safety of life and property of drivers and passengers. What ' s more, it also seriously restricts the high -quality development and promotion of Evs. To solve the limitations and drawbacks of the BM. this paper designs the thermal management structure with TiO 2 nanofluids closed loop pulsating heat pipe (TiO 2 -CLPHP) as the key component and constructs the thermal management system with TiO 2 -CLPHP (TiO 2 -CLPHP TMS). On the basis, the temperature optimal thermal management strategy (TOS) and energy consumption optimal thermal management strategy (ECOS) is proposed. To investigate the performance response of TiO 2 -CLPHP TMS, the performance test of TiO 2 -CLPHP TMS is carried out. The results show that in terms of thermal management performance, the TiO 2 -CLPHP TMS with TOS and ECOS (TOS-TiO 2 -CLPHP TMS, ECOS-TiO 2 -CLPHP TMS) can effectively suppress the highest temperature, temperature rise and improve temperature uniformity of the PM. Of these, the minimum improvement rates of TOS-TiO 2 -CLPHP TMS can reach 29.41%, 78.37%, 65.88%, 58.82%, and 64.95%. The minimum improvement rates of ECOS-TiO 2 -CLPHP TMS can reach 27.24%, 72.65%, 64.71%, 55.88%, and 68.04%, respectively. In terms of the thermal management economy, compared with TOS-TiO 2 - CLPHP TMS, ECOS-TiO 2 -CLPHP TMS has lower energy consumption. The efficiency values of the ECOS-TiO 2 - CLPHP TMS are not less than 87.72%. It can be concluded that the proposed TiO 2 -CLPHP TMS has excellent thermal management performance. The ECOS-TiO 2 -CLPHP TMS can maximize the dual requirements of the thermal management performance and thermal management economy. This study innovatively proposed a thermal management method for nanofluids PHP used in BM. Compared with previous studies, the proposed TiO 2 -CLPHP TMS reduced the temperature difference from the traditional 5.00 degrees C to less than 3.40 degrees C, greatly improving the temperature uniformity of the BM. The completion of this research provides a new idea of battery thermal management based on metal oxide nanofluids PHP, and the constructed performance evaluation method provides a referral scheme for the performance test and evaluation of thermal management technology.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] Performance improvement of thermal management system of lithium-ion battery module on purely electric AUVs
    Wang, Yan-Feng
    Wu, Jiang-Tao
    APPLIED THERMAL ENGINEERING, 2019, 146 : 74 - 84
  • [32] Performance analysis and optimization of two-way thermal management system for power battery
    Liang K.
    Mi G.
    Xu H.
    Gao C.
    Dong B.
    Li Y.
    Wang M.
    Huagong Xuebao/CIESC Journal, 2021, 72 (08): : 4146 - 4154
  • [33] Thermal Management for Battery Module with Liquid-Cooled Shell Structure under High Charge/Discharge Rates and Thermal Runaway Conditions
    Xu, Kangdi
    Zhang, Hengyun
    Zhu, Jiajun
    Qiu, Guojun
    BATTERIES-BASEL, 2023, 9 (04):
  • [34] Experimental investigation on thermal performance of battery thermal management system with heat pipe assisted hybrid fin structure under fast charging conditions
    Han, Ukmin
    Lee, Seunghoon
    Jun, Yong Joo
    Lee, Hoseong
    APPLIED THERMAL ENGINEERING, 2023, 230
  • [35] Experimental study on the performance of power battery module heating management under a low-temperatures charging scenario
    Zeng, Xiaohua
    Li, Jingjing
    Qiao, Lulu
    Chen, Meng
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2024, 225
  • [36] Performance evaluation of PV module under various parametric conditions
    Tabish, Shahbaz
    Ashraf, Imtiaz
    INTERNATIONAL JOURNAL OF AMBIENT ENERGY, 2018, 39 (04) : 317 - 322
  • [37] Research of Battery Management System for Integrated Power Supply
    Zhang, Aixiang
    Song, Shizhan
    Wang, Chuanyong
    Zhang, Jian
    Wang, Kun
    Li, Liwei
    2017 CHINESE AUTOMATION CONGRESS (CAC), 2017, : 3178 - 3181
  • [38] Design and Research of Power Lithium Battery Management System
    Yuan, Zhonglin
    Zhang, Haichuan
    Niu, Yueling
    3RD INTERNATIONAL SYMPOSIUM ON MECHATRONICS AND INDUSTRIAL INFORMATICS, (ISMII 2017), 2017, : 208 - 213
  • [39] Boundary conditions for Onboard thermal-management system of a battery pack under ultrafast charging
    Wu, Xiaogang
    Du, Jiuyu
    Guo, Haoqi
    Qi, Mingshan
    Hu, Fangfang
    Shchurov, N. I.
    ENERGY, 2022, 243
  • [40] STATISTICAL-ANALYSIS OF POWER MODULE THERMAL TEST EQUIPMENT PERFORMANCE
    HOUF, RE
    BERMAN, DB
    IEEE TRANSACTIONS ON COMPONENTS HYBRIDS AND MANUFACTURING TECHNOLOGY, 1988, 11 (04): : 516 - 520