Structure optimization of air cooling battery thermal management system based on lithium-ion battery

被引:58
作者
Yang, Chenyang [1 ]
Xi, Huan [1 ]
Wang, Meiwei [1 ]
机构
[1] Xi An Jiao Tong Univ, Minist Educ, Sch Energy & Power Engn, Key Lab Thermofluid Sci & Engn, Xian, Peoples R China
基金
中国国家自然科学基金;
关键词
BTMS; Air-cooled; Structure optimization; DESIGN; PACK; FLOW;
D O I
10.1016/j.est.2022.106538
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Air cooling is a common and valid method to improve the heat distribution of battery thermal management system (BTMS). To further improve the heat distribution in BTMS, the spoiler is applied to the air cooling BTMS. To investigate the applicability of this strategy, two common BTMSs, the Z-type BTMS (the BTMS I) and the U -type BTMS (the BTMS II), are selected as the study objects, then, two novel structures (i.e., the BTMS III and the BTMS IV) are proposed, where the spoiler is installed at the air inlet manifold of the two initial BTMSs, respectively. By studying three structural parameters (i.e., the spoiler length L, the spoiler height H and the offset distance of spoiler S) of two novel structures, two optimal BTMSs corresponding to them (the BTMS III-opt and the BTMS IV-opt) are obtained respectively. At the inlet velocity of 3.5 m/s, calculations have been conducted. The results demonstrate that after optimization, the maximum temperature (Tmax) and the maximum tempera-ture difference (Delta Tmax) of the BTMS III-opt are 327.43 K and 3.64 K respectively, decreased by 2.56 K and 3.44 K (48.61%), compared with the BTMS I. Meanwhile, in comparison with the BTMS II, Tmax and Delta Tmax of the BTMS IV-opt are 326.29 K and 1.19 K respectively, decreased by 2.79 K and 4.98 K (80.68%). The results illustrate that installing spoiler at the air inlet manifold is a valid way to improve the heat distribution of BTMS.
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页数:22
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  • [11] Experimental study on the thermal management performance of air cooling for high energy density cylindrical lithium-ion batteries
    Fan, Yuqian
    Bao, Yun
    Ling, Chen
    Chu, Yanyan
    Tan, Xiaojun
    Yang, Shuting
    [J]. APPLIED THERMAL ENGINEERING, 2019, 155 : 96 - 109
  • [12] Optimization of Thermal and Structural Design in Lithium-Ion Batteries to Obtain Energy Efficient Battery Thermal Management System (BTMS): A Critical Review
    Fayaz, H.
    Afzal, Asif
    Samee, A. D. Mohammed
    Soudagar, Manzoore Elahi M.
    Akram, Naveed
    Mujtaba, M. A.
    Jilte, R. D.
    Islam, Md. Tariqul
    Agbulut, Umit
    Saleel, C. Ahamed
    [J]. ARCHIVES OF COMPUTATIONAL METHODS IN ENGINEERING, 2022, 29 (01) : 129 - 194
  • [13] Experimental and simulation study of liquid coolant battery thermal management system for electric vehicles: A review
    Kalaf, Omer
    Solyali, Davut
    Asmael, Mohammed
    Zeeshan, Qasim
    Safaei, Babak
    Askir, Alyaseh
    [J]. INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2021, 45 (05) : 6495 - 6517
  • [14] Internal thermal network model-based inner temperature distribution of high-power lithium-ion battery packs with different shapes for thermal management
    Kang, Deokhun
    Lee, Pyeong-Yeon
    Yoo, Kisoo
    Kim, Jonghoon
    [J]. JOURNAL OF ENERGY STORAGE, 2020, 27
  • [15] Numerical investigation of cooling performance of a novel air-cooled thermal management system for cylindrical Li-ion battery module
    Kausthubharam
    Koorata, Poornesh K.
    Chandrasekaran, Neelakandan
    [J]. APPLIED THERMAL ENGINEERING, 2021, 193
  • [16] A surrogate thermal modeling and parametric optimization of battery pack with air cooling for EVs
    Li, Wei
    Xiao, Mi
    Peng, Xiongbin
    Garg, Akhil
    Gao, Liang
    [J]. APPLIED THERMAL ENGINEERING, 2019, 147 : 90 - 100
  • [17] Investigation on liquid cold plate thermal management system with heat pipes for LiFePO4 battery pack in electric vehicles
    Li, Yuan
    Guo, Hao
    Qi, Fei
    Guo, Zhiping
    Li, Meiying
    Tjernberg, Lina Bertling
    [J]. APPLIED THERMAL ENGINEERING, 2021, 185
  • [18] Thermal performance of battery thermal management system coupled with phase change material and thermoelectric elements
    Liao, Gaoliang
    Jiang, Kun
    Zhang, Feng
    Jiaqiang, E.
    Liu, Lijun
    Chen, Jingwei
    Leng, Erwei
    [J]. JOURNAL OF ENERGY STORAGE, 2021, 43
  • [19] Self-adapting J-type air-based battery thermal management system via model predictive control
    Liu, Yuanzhi
    Zhang, Jie
    [J]. APPLIED ENERGY, 2020, 263
  • [20] Research progress on power battery cooling technology for electric vehicles
    Lu, Mengyao
    Zhang, Xuelai
    Ji, Jun
    Xu, Xiaofeng
    Zhang, Yongyichuan
    [J]. JOURNAL OF ENERGY STORAGE, 2020, 27