洪琰
发布时间:2025-07-01   浏览次数:1260


洪琰  1996.12   博士研究生   讲师 硕士生导师

  • 联系方式:yan_hong6878@163.com

  • 研究方向:锂离子电池热安全

  • 教育背景:

  • 2021.09-2025.06 清华大学 车辆与运载学院 联合培养

  • 2020.09-2025.06 上海理工大学 机械工程 博士研究生(硕博连读)

  • 2016.09-2020.06 皖西学院 汽车服务工程 本科/学士

  • 工作经历:

  • 2025.06-现在,安徽工程大学机械与汽车工程学院,讲师

  • 科研成果:

  • 主持/参与国家自然科学基金、国家重点研发计划与企业委托横向课题8项;发表SCI/EI论文17篇,其中以第一作者或者通讯作者发表论文8篇,如下所示:

  • [1]Hong Y, Jin C,…, Zheng Y,Feng X & Ouyang M. Experimental study of the suppressing effect of the primary fire and thermal runaway propagation for electric bicycle batteries using flood cooling. Journal of Cleaner Production. 2024; 435:140392.(中科院一区top, IF10.7)

  • [2]Zhao J 1, Hong Y 1, …Ouyang M, Burke A & Sperling D. Battery System Integration: Opportunities and New Horizons for Electric Mobility. Joule. 2026.102445. (中科院一区topIF37.1; 1为共同第一作者)

  • [3]Hong Y 1, Wong S K 1, …, Zheng Y, Feng X & Ouyang M. Thickness-dependent of thermal runaway propagation velocity in lithium-ion batteries. Applied Thermal Engineering, 2025; 279; 127734 (中科院二区top, IF7.5;1为共同第一作者)

  • [4]Xia, Y., Hong, Y*., Zhu, Z., Liu, X., Shen, K., Feng, X., & Zheng, Y. Predicting thermal runaway propagation in lithium-ion batteries: an experimental and theoretical study. Applied Thermal Engineering, 2025; 127780.中科院top, IF7.5; *为通讯作者)

  • [5]Zhu, Z., Chen, Q., Qiao, D., Wu, W., Zheng, Y., Hong, Y*., ... & Liu, L.. Thermal runaway and propagation characteristics of sodium-ion and lithium-ion hybrid battery packs. Process Safety and Environmental Protection, 2025; 107664.中科院二区top, IF7.9; *为通讯作者)

  • [6]Hong Y, Wu H, …, Zheng Y, Feng X & Ouyang M.Dynamic thermophysical modeling and parametric sensitivity analysis of flood cooling suppressing the thermal runaway propagation for electric bicycle battery. Journal of Energy Storage.2024; 98:113084.中科院二区top, IF10.7

  • [7]Hong Y, Zhang Y…, Zheng Y, Wang H, Feng X & Ouyang M. High-security prismatic battery with cover filled agent. Journal of Energy Storage. 2023; 64:107133.中科院二区top, IF10.7

  • [8]洪琰,周龙,张俊…,郑岳久. 锂离子电池充放电机械压力特性研究.机械工程学报. 2022;58(20):410-420.北大核心,EI