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黎燕文
发布时间: 2026-03-18

 ▎基本信息

  •  职称:教授

  •  职务:重实验室组长助理

  •  人才称号:国家级青年人才

  •  电子邮箱:yanwenli@scut.edu.cn

  •  办公地址:五山7号楼7112A

 ▎研究方向

高密度城市建筑抗灾韧性、结构抗火与智能消防、海洋基础结构

 ▎学术兼职

 亚热带建筑与城市科学全国重点实验室骨干成员

 广东省现代土木工程技术重点实验室骨干成员

广东省金属增材工程技术研究中心骨干成员

 中国硅酸盐学会建筑固废委员会委员

 国家自然科学基金委员会项目函评专家

 教育部学位中心学位论文评审专家

广东省科技项目函评专家

 建筑钢结构进展期刊青年编委

国际权威SCI期刊审稿人

招生专业

 博士生:学术型博士(结构工程/桥梁与隧道工程)、专业型博士

 硕士生:土木工程

专业学位硕士:土木水利

 ▎教育与工作经历  

教育经历                            

20149月~20196月,同济大学,结构工程,博士,导师:李国强 院士

20109月~20147月,西南交通大学,土木工程,学士,导师:李亚东 教授

工作经历                            

202311月至今,虎门体育app下载官网,土木与交通虎门体育app下载官网,教授             

20229月~202310月,虎门体育app下载官网,土木与交通虎门体育app下载官网,副教授             

202010月~20228月,京都大学,建筑工程系,JSPS博士后,导师:Yuji Koetaka教授                            

20197月~202010月,香港理工大学,建筑与房地产学系,助理研究员/博士后,导师:Michael C.H. Yam教授                            

 ▎教学与科研情况

  • 教学              

本科生教学:                            

 主讲《工程力学》必修课、讲授《绿色建材与低碳建造》限选课等课程。                            

虎门体育官方登录入口网教学:                            
主讲《能源基础设施》、讲授《高等钢结构》课程。
人才培养:                            

20233月开始招收博、硕士虎门体育官方登录入口网,目前在读博士4名,硕士7名,在读硕士生荣获国家奖学金。

 年均招收硕士生2~3名,博士生1~2名。                            

  • 科研              

 科研兴趣:高抗疲劳铁基SMA的加固及减震应用;结构抗火;海洋基础结构。

 科研项目:                            

1.国家自然科学基金面上项目(52678404),2027/01-2030/12,50万元,在研,主持;

2.国家自然科学基金青年项目(52308503),2024/01-2026/12,30万元,在研,主持;

3. 广东省“珠江人才计划”海上风电工程技术创新团队课题,2025/06-2030/06,在研,主持

4. 广东省基础与应用基础研究基金自然科学基金面上项目(2026A1515010935),2026/01-2028/12,10万元,在研,主持;

5. 广东省基础与应用基础研究基金自然科学基金面上项目(2025A1515010036),2025/01-2027/12,10万元,在研,主持;

6. 广州市基础与应用基础研究青年科技人员类项目(2024A04J01078),2024/04-2026/03,5万元,在研,主持;

7. 虎门体育app下载官网“双一流”建设项目科研启动基金(D6250670),100万元,在研,主持;

8. 国家重点研发计划课题(2017YFC0703607),2017/07-2020/12,120.6万元,已结题,参与;

9. 国家重点研发计划课题(2016YFC0701203),2016/07-2020/06,180万元,已结题,参与



代表性成果      

参编规范:

Steel structures - Execution of structural steelworkISO 17607:2023转化国家标准

审查标准:

《铁基形状记忆合金阻尼器》送审稿

《自复位钢框架结构技术规程》送审稿

 代表性论文*通讯作者:

  1. X.Y. Yu, Y.W. Li*, W.L Zhang. (2026) Multi-criteria seismic design for Fe-SMA slip-friction hybrid self-centering braced RC frames considering multi-stage yielding mechanism. Soil Dynamics and Earthquake Engineering, 211:110646.

  2. P. Zou, Y.W. Li*, C.Y. Li, Y.G. Wu, B.Z. Zhou. (2026) Experimental and numerical study of corrugated steel arches subjected to gradient hydrostatic pressure. Engineering Structures, 366:123434.

  3. Y.L. Ren, Y.W. Li*, P Zou, S.L. Zhang, L.Z. Wang, B.Z. Zhou. (2026) Low-velocity impact resistance of polyurea-retrofitted flat and corrugated steel plates: Experimental and numerical investigations. Ocean Engineering, 366:127755.

  4. Y.W. Li*, Y.L. Ren, S.L. Zhang, B.Z. Zhou, H. Guo. (2026) Experimental and numerical study on the out-of-plane low-velocity impact response of polyurea-coated corrugated steel plates. Thin-Walled Structures, 227:114985.

  5. Y.W. Li*, W.L. Zhang, X.Y. Yu. (2026) Experimental and numerical studies on Fe-SMA slip-friction hybrid self-centering braces. Engineering Structures, 359:122693.

  6. Y.W. Li*, J.S. Lai, B.Z. Zhou, L. Cheng. (2026) Mechanical Properties and Feasibility of GFRP from Decommissioned Large-Scale Wind Turbine Blades for Wave Energy Converter: A Case Study. Polymers, 18(7):892.

  7. Y.B. Wang, M.L. Chen, G.Q. Li, Y.W. Li*. (2025) Seismic-resilient high-strength steel column base using stiffened replaceable cover plates: experimental and numerical study. Journal of Building Engineering, 114(c):114291. (JCR1)

  8. X.Y. Yu, Y.W. Li*, J.X. Zhao, X.Y. Zhao. (2025) A unified low cycle fatigue model of axial-loaded buckling-restrained Fe-SMA plates in high-performance metallic dampers. Engineering Structures, 119461. (JCR1)

  9. Y.W. Li*, S.L. Zhang, J.X. Zhao, X.Y. Yu, Y.L. Ren. (2025) Experimental study on the strength of Fe-SMA to Q355 structural steel fillet welds. Journal of Constructional Steel Research, 109661. (JCR1)

  10. Y.W. Li*, S.L. Zhang, J.X. Zhao, X.Y. Yu. (2025) Experimental study on the strength of Fe-SMA to Q355 structural steel butt welded joints. Journal of Constructional Steel Research, 109277. (JCR1)

  11. J.X. Zhao, H. Qin, T. Okazaki, Y.W. Li*, C.H. Guo. (2024) Bidirectional Cyclic Loading Performance of a Prefabricated Self-Centering Metallic-Damped Steel Column Base. Journal of Structural Engineering, 04024143. (JCR1)

  12. Y.W. Li, G.Q. Li, L. Xiao*, Michael C.H. Yam, J.Z. Zhang. (2023) Shear resistance of corrugated web steel beams with circular web openings: test and machine learning-based prediction. Steel and Composite Structures, 47:103-117. (JCR1)

  13. Y.W. Li, Meng Wang*, Yang Xiang. (2023) Global optimization of locally installed adaptive negative stiffness amplifying damper in steel frames through rocking wall. Journal of Building Engineering, 60:105196. (JCR1)

  14. Y.W. Li, M. Wang*, Yang Xiang. (2022) Structural feasibility of braced damper system with adaptive negative stiffness devices in MDOF steel frames. Journal of Constructional Steel Research. (JCR1)

  15. Y.W. Li*, Yuji Koetaka. (2022) Seismic application of steel rocking column bases with replaceable cover plates in steel frames. Journal of Constructional Steel Research. (JCR1)

  16. Y.Z. Wang, Y.W. Li*, Y.B. Wang. (2022) Application of self-centring hybrid rocking columns in steel frames. Journal of Constructional Steel Research, 195:107349. (JCR1)

  17. Y.W. Li*, Yuji Koetaka. (2022) Steel rocking column bases with replaceable cover plates: cyclic loading behaviour and practical design. Engineering Structures, 264: 114467. (JCR1)

  18. Y.W. Li, Michael C.H. Yam, P. Zhang, K. Ke*. (2022) Development of Self-Centring Energy-Dissipative Rocking Columns with SMA tension braces. Structural Engineering and Mechanics, 76: 421-433. (JCR2)

  19. Y.W. Li, Y.Z Wang, Y.B. Wang*. (2022) Application of seismic resilient energy-dissipative rocking columns with HSS tension braces in steel frames. Engineering Structures, 253: 113821. (JCR1)

  20. Y.W. Li, Y.Z Wang, Y.B. Wang*. (2022) Experimental and numerical study of beam-through energy-dissipative rocking columns for mitigating seismic responses. Journal of Constructional Steel Research, 189: 107097. (JCR1)

  21. M. Wang, Y.W. Li*, S. Nagarajaiah*, Y. Xiang. (2022) Effectiveness and robustness of braced-damper systems with adaptive negative stiffness devices in yielding structures. Earthquake Engineering and Structural Dynamics 51: 2648-2667. (JCR1)

  22. Y.W. Li, K. Cao*. (2020) Seismic collapse risk of RC frames with irregular distributed masonry infills. Structural Engineering and Mechanics, 76: 421-433. (JCR2)

  23. Y.W. Li, K. Cao*. (2020) Establishment and application of intelligent city building information model based on BP neural network model. Computer Communications, 153:382-389. (JCR2)

  24. Y.W. Li, G.Q. Li*, J. Jiang, Y.B. Wang. (2019) Seismic Performance Improvement of Tension-Only-Braced Frames with Energy-Dissipative Rocking Columns. Engineering Structures, 196: 109286. (JCR1)

  25. Y.W. Li, G.Q. Li, J. Jiang, F.F. Sun*. (2019) Modelling of Behaviour of Continuous Energy-Dissipative Steel Columns Under Cyclic Loads. Journal of Earthquake Engineering, 23:1560-1583. (JCR1)

  26. G.Q. Li, Y.W. Li*, H.J. Wang, M.D. Pang, L.L. Li, J.Y. Sun. (2019) Experimental and numerical study on coupled shear walls with buckling restrained steel plates under cyclic loading. Engineering Structures, 199:109684. (JCR1)

  27. Y.W. Li, G.Q. Li*, J. Jiang, Y.B. Wang. (2019) Experimental Study on Seismic Performance of RC Frames with Energy-Dissipative Rocking Column System. Engineering Structures, 194:406-419. (JCR1)

  28. Y.W. Li, G.Q. Li*, J. Jiang, Y.B. Wang. (2019) Use of Energy-Dissipative Rocking Columns to Enhance Seismic Performance of Buckling Restrained Braced Frames. Journal of Constructional Steel Research, 159: 548-559. (JCR1)

  29. Y.W. Li, G.Q. Li*, J. Jiang, F.F. Sun. (2018) Mitigating Seismic Response of RC Moment Resisting Frames Using Steel Energy-Dissipative Columns. Engineering Structures, 174:586-600. (JCR1)

  30. Y.W. Li, G.Q. Li, F.F. Sun*, J. Jiang. (2018) Experimental study on continuous energy-dissipative steel columns under cyclic loading. Journal of Constructional Steel Research, 141: 104-117. (JCR1)

  31. Y.W. Li, G.Q. Li, F.F. Sun, J. Jiang*. (2018) Mitigating Inter-Story Drift Concentration of Concentrically Braced Steel Frames Using Energy-Dissipative Columns. Journal of Earthquake Engineering. 9:1-14. (JCR1)

  32.  张海燕, 杨致远, 黎燕文. 钢筋混凝土柱火灾下及火灾后受压承载力简化计算方法[J]. 土木与环境工程学报,2026. (EI)

  33.  王苑佐,刘笛,黎燕文*,杜修力. 三维应力状态下LYP225钢的循环本构模型及断裂准则研究[J]. 土木工程学报,2025,58(4):1-10. (EI)

  34.  黎燕文,李国强*. 双肢消能摇摆柱受力机理及应用于混凝土框架的减震性能[J]. 建筑结构学报,2021,42(12):65-75. (EI)

  35.  李国强,孙哲,张贵鹏,黎燕文. 一种可更换消能摇摆钢柱柱脚节点性能研究[J]. 土木工程学报,2022,55(01):10-20. (EI)

 专利成果:

  1.  王迪;卫洋;郑品铸;黎燕文;刘林青.一种增减材复合制造在线监测方法, 2026-01-30,中国,202511380009.4.  (发明专利)

  2.  黎燕文;余希洋;张文龙;张世乐;赵俊贤;孙瑛志;张惊宙.一种高抗疲劳自复位屈曲约束支撑, 2025-11-28,中国,202310494806.X. (发明专利)

  3.  黎燕文;张文龙;王迪;余希洋;张世乐.局部增减材Fe-SMA构件预应力疲劳加固钢结构的方法, 2025-11-07,中国,202511363942.0.  (发明专利)

  4.  黎燕文;余希洋;王彦博;龙进进.一种可替换盖板的外露式钢柱脚及其施工方法,2025-09-23,中国,202311285900.0.  (发明专利)

  5.  黎燕文;邹攀;孙瑛志;赖近昇;任奕霖.一种波纹钢-混凝土组合浮式箱梁及其施工方法, 2024-11-12,中国,202411307509.0. (发明专利)

  6. 李国强, 黎燕文, 侯兆新; 凸肋底座式铰支柱脚, 2017-12-15, 中国, ZL201610369212.6 (发明专利)

 ▎科研岗招聘

课题组长期招收土木、力学、材料及机械等相关专业博士毕业生加盟课题组开展博士后及专职科研工作。欢迎有意向者发送简历至邮箱yanwenli@scut.edu.cn。虎门体育app下载官网为博士后及专职研究系列人才提供丰厚的待遇和配套条件,具体招聘启示请参见:https://www2.scut.edu.cn/postdoctor/2021/1102/c13590a449561/page.htm

https://www2.scut.edu.cn/postdoctor/2023/1019/c13590a522104/page.htm

                          



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