段强领
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科研项目
锂金属电池热孕育演化机制及其热安全边界研究:国家自然科学基金集成项目课题,主持,执行期:2026.01-2029.12
高比能动力锂电池热失控孕育机制及其火灾演化规律研究:国家自然科学基金面上项目,主持,执行期:2026.01-2029.12
电池系统热蔓延防控和主动热隔离技术:国家重点研发计划课题,主持,执行期:2024.12-2027.11
XXX安全防护技术研究:国家重大工程关键技术攻关项目,主持,执行期:XXX-XXX
XXX数采与控制设施:国家重大工程条保项目,主持,执行期:XXX-XXX
XXX演化仿真与原理试验:国家重大工程科研项目,主持,执行期:XXX-XXX
新能源装备中核心器件绿色循环利用新方法:中国科学院稳定支持基础研究领域青年团队计划,研究骨干,执行期:2023.7-2028.6
高压氢气泄漏自燃诱发喷射火的微观动力学机理及行为规律研究:国家自然科学基金面上项目,主持,执行期:2023.01-2026.12
新能源汽车动力电池热失控火灾监测预警关键技术研究:合肥市自然科学基金项目,主持,执行期:2022.07-2024.06
受限空间氢气泄漏扩散诱发爆燃灾害动力学机理研究:中国科学技术大学青年创新重点基金,主持,执行期:2022.01-2023.12
受限空间氢气泄漏扩散动力学特性与可燃气云爆燃致灾机理研究:安徽省自然基金面上项目,主持,执行期:2021.01-2023.12
机载动力锂电池热失控多参数监测预警及热安全管理技术:国家自然科学基金民航联合基金重点项目课题,主持,执行期:2021.01-2024.12
锂浆料电池储能系统火灾危险性评估研究:国家重点研发计划项目子课题,主持,执行期:2019.12-2024.11
高压氢泄漏过程中激波诱导自燃发生的内在机理与预测模型研究:国家自然科学基金青年项目,主持,执行期:2018.1-2020.12
管道内障碍物对高压氢气泄漏自燃的影响及其机理研究:中国博士后科学基金特别资助项目,主持,执行期:2017.6-2018.04
管道几何结构对高压氢气泄漏自燃的影响机制研究:中国博士后科学基金项目,主持,执行期:2016.11-2018.09
代表性论著
以第一/通讯作者在Combustion and Flame、Proceedings of the Combustion Institute、Energy Storage Materials等国际燃烧、能源领域权威期刊发表SCI论文68篇(截止到2026年1月)。
Google Scholar:
https://scholar.google.com/citations?hl=zh-CN&user=WO7RumMAAAAJ
部分代表性论文:
1. Zeng, W., Mei, W., He, X., Wang, J., Fang, Z., Zhou, J., Zheng, T., Duan, Q.*, Sun, J., Wang, Q. (2026). Insights into the coupled thermal behavior of silicon/graphite composite anodes in high energy density lithium-ion battery. Energy Storage Materials, 84, 104841
2. Jiang, G., Jiang, Y., Duan, Q.*, Zhang, S., Xiao, H., Jin, K., & Sun, J.* (2025). Origin of self-ignition in transient release of pressurized hydrogen into a rectangular tube: Flow visualization and numerical research. Combustion and Flame, 280, 114361.
3. Jiang, G., Jiang, Y., Duan, Q.*, Zhang, S., Xiao, H., Jin, K., & Sun, J.* (2025). Effect of tube wall geometry on self-ignition patterns and consequent flame propagation following pressurized hydrogen transient release. Proceedings of the Combustion Institute, 41, 105979.
4. Li, Y., Mei, W.*, Yu, Y., Liu, C., Zhang, Y., Zhuo, P., Chen, Y., Sun, J., Jin, K., Wang, Q. & Duan, Q.* (2025). Revealing the self-ignition mechanism of lithium iron phosphate battery modules: the coupling effect of battery inconsistency and BMS failure. eTransportation, 100484.
5. He, X., Li, Z., Liu, Y., Wang, H., Tian, J., Mei, W., Duan, P., Wang, Q., Sun, J. & Duan, Q.* (2025). Unveiling the thermal degradation mechanisms of co-free Ni-rich cathode: A comparative study of LiNi0. 9Mn0. 1O2 versus LiNi0. 8Co0. 1Mn0. 1O2 from macroscopic behavior to atomic-scale bonding. Chemical Engineering Journal, 169673.
6. Duan, Q.#*, Zeng, Q.#, Tang, J., Zhang, S., & Sun, J.* (2025). Dynamic mechanisms of high-pressure hydrogen self-ignition and flame evolution in obstructed tubes: Experimental insights and implications. Fire Safety Journal, 151, 104295.
7. Duan, Q.#*, Xin, J.#, Zhang, H., Hou, Z., Duan, P., Jin, K., Li, M. & Sun, J.* (2025). Hydrogen leakage in underground garages: Impact of leakage locations on gas diffusion and safety considerations. Journal of Energy Storage, 117, 116123.
8. Duan, Q.#*, Xin, J.#, Zhang, H., Hou, Z., Duan, P., Jin, K., & Sun, J.* (2024). Experimental and numerical studies on hydrogen leakage and dispersion in underground parking garages: Impact of leakage direction on safety considerations. Safety Science, 180, 106643.
9. Tian, J., Mei, W., Tang, J., Wang, H., Wang, L., Wang, Q., Sun, J. & Duan, Q.* (2024). Numerical study on heat dissipation and structure optimization of immersed liquid cooling mode used in 280Ah LiFePO4 batteries. Process Safety and Environmental Protection, 185, 446-457.
10. Tang, J., Jiang, G., Zhang, S., Zeng, Q., Tian, J., Jin, K., Sun, J. & Duan, Q.* (2024). Effects of internal intervention in tubes on shock wave attenuation, formation and propagation of flame during high-pressure hydrogen release. Process Safety and Environmental Protection, 192, 313-320.
11. Duan, Q.*, Wu, Y., Jiang, G., Tang, J., Zeng, Q., Zhang, S., Jin, K., Chen, J. & Sun, J.* (2023). Experimental investigation on the shock wave and spontaneous ignition of high-pressure hydrogen released into a tube through different narrowness inlets. International Journal of Hydrogen Energy, 48(85), 33346-33357.
12. Fang, Z., Duan, Q.*, Peng, Q., Wei, Z., Jiang, L., Sun, J., & Wang, Q. (2023). A sustainable delamination method to completely separate spent cathode foils via biomass-derived γ-valerolactone. Green Chemistry, 25(4), 1546-1558.
13. Duan, Q.*, Cao, H., Li, X., & Sun, J.* (2023). Effects of urea on the thermal decomposition behavior of ammonium nitrate: A reliable thermal safety performance enhancer. Process Safety and Environmental Protection, 171, 482-492.
14. Duan, Q.*, Tang, J., Jin, K., Zeng, Q., Wu, Y., Zhang, S., Wang, Q., & Sun, J.* (2022). Experimental investigation of shock wave propagation, spontaneous ignition, and flame development of high-pressure hydrogen release through tubes with different obstacles arrangements. International Journal of Hydrogen Energy, 47(89), 38075-38086. .
15. Duan, Q., Zeng, Q., Jin, K., Wang, Q., & Sun, J.* (2022). Mechanism of self-ignition and flame propagation during high-pressure hydrogen release through a rectangular tube. Process Safety and Environmental Protection, 164, 283-290.
16. Zeng, Q., Duan, Q.*, Jin, K., Zhu, M., & Sun, J. (2022). Effects of nitrogen addition on the shock-induced ignition of high-pressure hydrogen release through a rectangular tube of 400 mm in length. Fuel, 308, 122016.
17. Wu, D.*, Tan, X., Wei, A., Duan, Q.*, Huang, W., & Schmidt, M.* (2021). Ignition temperature and mechanism of carbonaceous dust clouds: The roles of volatile matter, CH4 addition, O2 mole fraction and diluent gas. Journal of Hazardous Materials, 405, 124189.
18. Huang, Z., Li, X., Wang, Q., Duan, Q.*, Li, Y., Li, L., & Wang, Q.* (2021). Experimental investigation on thermal runaway propagation of large format lithium ion battery modules with two cathodes. International Journal of Heat and Mass Transfer, 172, 121077.
19. Cao, H., Li, X., Jin, K., Duan, Q.*, Chai, H., & Sun, J.* (2021). Experimental and theoretical study of the effect of typical halides on thermal decomposition products and energy release of ammonium nitrate based on microcalorimetry and FTIR. Chemical Engineering Journal, 410, 128405.
20. Gong, L., Li, Z., Jin, K., Gao, Y., Duan, Q.*, Zhang, Y., & Sun, J.* (2020). Numerical study on the mechanism of spontaneous ignition of high-pressure hydrogen during its sudden release into a tube. Safety Science, 129, 104807.
21. Zeng, Q., Duan, Q.*, Sun, D., Li, P., Zhu, M., Wang, Q., & Sun, J.* (2020). Experimental study of methane addition effect on shock wave propagation, self-ignition and flame development during high-pressure hydrogen sudden discharge from a tube. Fuel, 277, 118217.
22. Chai, H., Duan, Q.*, Cao, H., Li, M., & Sun, J.* (2020). Effects of nitrogen content on pyrolysis behavior of nitrocellulose. Fuel, 264, 116853.
23. Cao, H., Jiang, L., Duan, Q.*, Zhang, D., Chen, H., & Sun, J.* (2019). An experimental and theoretical study of optimized selection and model reconstruction for ammonium nitrate pyrolysis. Journal of Hazardous Materials, 364, 539-547.
24. Duan, Q., Xiao, H., Gong, L., Li, P., Zeng, Q., Gao, W., & Sun, J.* (2019). Experimental study of shock wave propagation and its influence on the spontaneous ignition during high-pressure hydrogen release through a tube. International Journal of Hydrogen Energy, 44(40), 22598-22607.
25. Duan, Q., Xiao, H., Gong, L., Jin, K., Gao, W., Chai, H., & Sun, J.* (2018). Experimental study on spontaneous ignition and subsequent flame development caused by high-pressure hydrogen release: coupled effects of tube dimensions and burst pressure. Fire Safety Journal, 97, 44-53.
26. Duan, Q., Zhang, F., Xiong, T., Wang, Q., Xiao, H., Wang, Q., Gao, W., Gong, L., Jin, K., & Sun, J.* (2017). Experimental study of spontaneous ignition and non-premixed turbulent combustion behavior following pressurized hydrogen release through a tube with local enlargement. Journal of Loss Prevention in the Process Industries, 49, 814-821.
27. Duan, Q., Xiao, H., Gao, W., Gong, L., Wang, Q., & Sun, J.* (2016). Experimental study on spontaneous ignition and flame propagation of high-pressure hydrogen release via a tube into air. Fuel, 181, 811-819.
28. Duan, Q., Xiao, H., Gao, W., Gong, L., & Sun, J.* (2016). Experimental investigation of spontaneous ignition and flame propagation at pressurized hydrogen release through tubes with varying cross-section. Journal of Hazardous Materials, 320, 18-26.
29. Duan, Q., Xiao, H., Gao, W., Shen, X., Wang, Q., & Sun, J.* (2015). Experimental investigation on shock waves generated by pressurized gas release through a tube. Journal of Loss Prevention in the Process Industries, 36, 39-44.
30. Duan, Q., Xiao, H., Gao, W., Wang, Q., Shen, X., Jiang, L., & Sun, J.* (2015). An experimental study on shock waves and spontaneous ignition produced by pressurized hydrogen release through a tube into atmosphere. International Journal of Hydrogen Energy, 40(25), 8281-8289.
著作/教材
[1] 段强领、孙金华、弓亮,高压氢气泄漏自燃动力学,科学出版社,2026.
[2] 孙金华、王青松、段强领、肖华华、姜林、姜学鹏,火灾风险评估与控制方法学,机械工业出版社,2020. (副主编)
[3] 孙金华、段强领,中国大百科全书(第三版)安全科学与工程卷火灾安全分支,中国大百科全书出版社(网络版),2023.