1 |
李晋, 王青松, 孔得朋, 等. 锂离子电池储能安全评价研究进展[J]. 储能科学与技术, 2023, 12(7): 2282-2301. DOI: 10.19799/j.cnki.2095-4239.2023.0252.
|
|
LI J, WANG Q S, KONG D P, et al. Research progress on the safety assessment of lithium-ion battery energy storage[J]. Energy Storage Science and Technology, 2023, 12(7): 2282-2301. DOI: 10.19799/j.cnki.2095-4239.2023.0252.
|
2 |
李磊, 李钊, 姬丹, 等. 过充电触发的LFP和NCM锂离子电池的热失控行为: 差异与原因[J]. 储能科学与技术, 2022, 11(5): 1419-1427. DOI: 10.19799/j.cnki.2095-4239.2021.0548.
|
|
LI L, LI Z, JI D, et al. Overcharge induced thermal runaway behaviors of pouch-type lithium-ion batteries with LFP and NCM cathodes: The differences and reasons[J]. Energy Storage Science and Technology, 2022, 11(5): 1419-1427. DOI: 10.19799/j.cnki.2095-4239.2021.0548.
|
3 |
梅文昕, 段强领, 王青山, 等. 大型磷酸铁锂电池高温热失控模拟研究[J]. 储能科学与技术, 2021, 10(1): 202-209. DOI: 10.19799/j.cnki.2095-4239.2020.0249.
|
|
MEI W X, DUAN Q L, WANG Q S, et al. Thermal runaway simulation of large-scale lithium iron phosphate battery at elevated temperatures[J]. Energy Storage Science and Technology, 2021, 10(1): 202-209. DOI: 10.19799/j.cnki.2095-4239.2020.0249.
|
4 |
HUANG Z H, YU Y, DUAN Q L, et al. Heating position effect on internal thermal runaway propagation in large-format lithium iron phosphate battery[J]. Applied Energy, 2022, 325: 119778. DOI: 10.1016/j.apenergy.2022.119778.
|
5 |
YANG M J, RONG M Z, YE Y J, et al. Comprehensive analysis of gas production for commercial LiFePO4 batteries during overcharge-thermal runaway[J]. Journal of Energy Storage, 2023, 72: 108323. DOI: 10.1016/j.est.2023.108323.
|
6 |
程志翔, 曹伟, 户波, 等. 储能用大容量磷酸铁锂电池热失控行为及燃爆传播特性[J]. 储能科学与技术, 2023, 12(3): 923-933. DOI: 10.19799/j.cnki.2095-4239.2022.0690.
|
|
CHENG Z X, CAO W, HU B, et al. Thermal runaway and explosion propagation characteristics of large lithium iron phosphate battery for energy storage station[J]. Energy Storage Science and Technology, 2023, 12(3): 923-933. DOI: 10.19799/j.cnki.2095-4239.2022.0690.
|
7 |
JIA Z Z, WANG S P, QIN P, et al. Comparative investigation of the thermal runaway and gas venting behaviors of large-format LiFePO4 batteries caused by overcharging and overheating[J]. Journal of Energy Storage, 2023, 61: 106791. DOI: 10.1016/j.est.2023.106791.
|
8 |
张青松, 赵洋, 刘添添. 荷电状态和电池排列对锂离子电池热失控传播的影响[J]. 储能科学与技术, 2022, 11(8): 2519-2525. DOI: 10.19799/j.cnki.2095-4239.2022.0177.
|
|
ZHANG Q S, ZHAO Y, LIU T T. Effects of state of charge and battery layout on thermal runaway propagation in lithium-ion batteries[J]. Energy Storage Science and Technology, 2022, 11(8): 2519-2525. DOI: 10.19799/j.cnki.2095-4239.2022.0177.
|
9 |
王庭华, 翟宏举, 秦鹏, 等. 模组箱体空间内磷酸铁锂电池热失控及其传播行为研究[J]. 火灾科学, 2022, 31(1): 25-34. DOI: 10.3969/j.issn.1004-5309.2022.01.04.
|
|
WANG T H, ZHAI H J, QIN P, et al. Study on the thermal runaway and its propagation behaviors of lithium iron phosphate battery in module box space[J]. Fire Safety Science, 2022, 31(1): 25-34. DOI: 10.3969/j.issn.1004-5309.2022.01.04.
|
10 |
ZHOU Z Z, ZHOU X D, JU X Y, et al. Experimental study of thermal runaway propagation along horizontal and vertical directions for LiFePO4 electrical energy storage modules[J]. Renewable Energy, 2023, 207: 13-26. DOI: 10.1016/j.renene. 2023.03.004.
|
11 |
SONG L F, HUANG Z H, MEI W X, et al. Thermal runaway propagation behavior and energy flow distribution analysis of 280 Ah LiFePO4 battery[J]. Process Safety and Environmental Protection, 2023, 170: 1066-1078. DOI: 10.1016/j.psep. 2022.12.082.
|
12 |
WANG G Q, KONG D P, PING P, et al. Modeling venting behavior of lithium-ion batteries during thermal runaway propagation by coupling CFD and thermal resistance network[J]. Applied Energy, 2023, 334: 120660. DOI: 10.1016/j.apenergy. 2023.120660.
|
13 |
王俊, 贾壮壮, 秦鹏, 等. 磷酸铁锂离子电池模组热失控气体扩散仿真[J]. 储能科学与技术, 2022, 11(1): 185-192. DOI: 10.19799/j.cnki.2095-4239.2021.0193.
|
|
WANG J, JIA Z Z, QIN P, et al. Simulation of thermal runaway gas diffusion in LiFePO4 battery module[J]. Energy Storage Science and Technology, 2022, 11(1): 185-192. DOI: 10.19799/j.cnki.2095-4239.2021.0193.
|
14 |
朱艳丽, 徐艺博, 王聪杰, 等. 不同荷电状态磷酸铁锂电池热失控温度与产气特性分析[J]. 安全与环境学报, 2024, 24(1): 143-151. DOI: 10.13637/j.issn.1009-6094.2023.0588.
|
|
ZHU Y L, XU Y B, WANG C J, et al. Analysis of thermal runaway temperature and gas production characteristics of lithium iron phosphate batteries with different states of charge[J]. Journal of Safety and Environment, 2024, 24(1): 143-151. DOI: 10.13637/j.issn.1009-6094.2023.0588.
|