杨毅锋
发布时间: 2026-05-26

 ▎基本信息

  • 职称:教授 (博士生导师)

  • 人才称号: 国家高层次青年人才计划入选者

  • 办公地址:交通大楼 512

 ▎研究方向 

  1. 线性与非线性水弹性力学

  2. 海洋结构物波浪响应及超大型浮体动力学

  3. 极地冰区水波动力学                           

 ▎学术兼职 

  1. 英国高等教育学会会士

  2. 英国皇家造船工程学会会员

  3. 美国机械工程师学会会员                                     

招生专业 

博士生:船舶与海洋工程,土木水利(土木与交通学院)

硕士生:船舶与海洋工程(土木与交通学院)

专业学位硕士:土木水利(国际校区海洋科学与工程学院)

 ▎教育与工作经历  

教育经历

20199月~202311月,英国伦敦大学学院(UCL),机械工程,博士,导师:吴国雄教授、Giles Thomas教授                        

20159月~20196月,浙江大学,船舶与海洋工程,学士                

工作经历

20265月至今,华南理工大学,土木与交通学院,船舶与海洋工程系,教授

20244月~20264月,英国伦敦大学学院(UCL),博士后,合作教授:吴国雄教授

202312月~20243月,英国克兰菲尔德大学,研究助理

 ▎教学与科研情况 

  • 教学              

本科生教学:                            

     讲授《海洋机器人与智能系统》和《流体力学》课程                          

研究生教学:                            

     讲授《Hydrodynamics》课程         

  • 科研              

科研兴趣:

聚焦于海洋与极地环境中的水动力学问题,重点关注波浪与浮体、海冰及海洋结构物之间的相互作用机理。研究方向涵盖水弹性力学、非线性波浪理论以及复杂海况下的流固耦合问题,并致力于发展理论分析、半解析方法、数值模拟与实验验证相结合的研究框架。近期,研究工作进一步拓展至海洋可再生能源领域,包括浮式光伏、浮式风机与波浪能装置的水动力性能与结构响应分析。同时,关注人工智能与数据驱动方法在流体力学中的理论与方法研究,尤其是物理约束神经网络、数据同化以及融合流体力学物理机理与智能算法的建模方法。                   

科研项目:                            

  1. 上海交通大学海洋工程全国重点实验室开放基金,波浪与薄膜型浮式光伏结构流固耦合动力特性研究,2025/01–2026/12,主持。

  2. 英国 Natural Environment Research Council (NERC)HyAIce-Dr: A Hybrid Hydrodynamic–AI Framework for Predicting Ice Floe Drift in the Arctic Marginal Ice Zone2025/06–2026/05,主持。

  3. UK National Clean Maritime Research Hub, EPSRCMultiscale Computational Modelling for Maximising the Energy Efficiency and Underwater Noise Reduction of Air Lubrication Systems2025/01–2026/01,子课题负责人。

  4. Sepuluh Nopember Institute of Technology (ITS), Indonesia, Global Learning Series Program – Inviting as a Visiting Lecturer,2025/05 – 2025/11, 主持。

代表性成果(论文、专利或专著、软件著作权、成果转化等) 

期刊论文 (* 通讯作者)

  1. Cen, Y. H., Zhuang, Q. Z., Liang, D. F., Tezdogan, T. and Yang, Y. F. *(2026). Performance of a novel axisymmetric wave-concentrator-integrated oscillating water column system. Ocean Engineering360, 126127. (JCR: Q1)

  2. Yang, Y. F. and Wu, G. X. (2025). Wave interaction with a large number of ice floes of arbitrary shapes. Physical Review Fluids, 10(12), 124804. (JCR: Q2)

  3. Yang, Y. F. and Wu, G. X. (2025). A uniform current passing bodies submerged beneath an ice sheet at critical Froude numbers. Journal of Fluid Mechanics, 1018, A45. (JCR: Q1)

  4. Deng, Y. F., Zhang, S. Y., Yang, Y. F.*, Zhang, B. F., Wang, Y. F., Chen, J. H. and Hou, W. P. (2025). Aerodynamic damping in decoupled dynamic modeling of floating offshore wind turbines. Ocean Engineering, 340, 122327. (JCR: Q1)

  5. Deng, Y. F., Zhu, C. Z., Zhang, S. Y., Yang, Y. F.* and Zhang, B. F. (2025). A novel coupling framework for integrating turbine and substructure dynamics of floating offshore wind turbines. Ocean Engineering, 340, 122307. (JCR: Q1)

  6. Mi, C. H., Verdin, P. G., Nair, A., Lyu, X. C., Yang, Y. F.*, Sherif, A., Silva, D. and Huang, L. F. (2025). An experimental study on the hydrodynamic performance of modular rope mesh floating solar platforms. Ocean Engineering, 339, 122175. (JCR: Q1)

  7. Yang, Y. F., Huang, L. F. and Meylan, M. H. (2025). Wave interaction with multiple floating elastic plates with arbitrary constraints near a sloping beach. Physics of Fluids, 37 (3). (JCR: Q1)

  8. Yang, Y. F., Mi, C. H., Ou, B. J., Wong, A., Duffy, J. G., Wood, T., Utama, I., Chen, W. C. and Huang, L. F. (2024) A comparative experimental study on the hydrodynamic performance of two floating solar structure with a breakwater in waves. Solar Energy, 284, 113029. (JCR: Q1)

  9. Yang, Y. F. and Huang, L. F. (2024). Waves and structural strain induced by a uniform current flow underneath a semi-infinite floating solar coverage. Physical Review Fluids, 9, 094804. (JCR: Q2)

  10. Yang, Y. F., Wu, G. X. and Ren, K. (2024). Hydroelastic wave interaction with a circular crack of an ice-cover in a channel. Journal of Fluids and Structures, 13, 104173. (JCR: Q1)

  11. Huang, L. F., Yang, Y. F.*, Khojasteh, D., Ou, B. J. and Luo, Z. H. (2024). Floating solar power loss due to motions induced by ocean waves: an experimental study. Ocean Engineering, 312, 118988. (JCR: Q1)

  12. Yang, Y. F., Wu, G. X. and Ren, K. (2024). Interaction between a uniform current and a submerged cylinder in a marginal ice zone. Journal of Fluid Mechanics, 984, A50. (JCR: Q1)

  13. Yang, Y. F., Ren, K., Zhou, B. Z., Sun, S. Y. and Huang, L. F. (2024). Wave interaction with multiple adjacent floating solar panels with arbitrary constraints. Physics of Fluids, 36, 3. (JCR: Q1)

  14. Sun, S. Y., Zeng, F. R., Yang, Y. F.* and Wang, W. L. (2023). Oblique water entry of a curved foil with varying speed. Physics of Fluids, 35, 122101. (JCR: Q1)

  15. Yang, Y. F., Zheng, Y. Q., Ge, H. and Wang, C. Z. (2023). Nonlinear interactions between solitary waves and structures in a steady current. Ocean Engineering, 274, 113920. (JCR: Q1)

  16. Yang, Y. F., Wu, G. X. and Ren, K. (2022). Hydroelastic wave diffraction by a vertical circular cylinder standing in a channel with an ice cover. Journal of Fluid Mechanics, 941, A13. (JCR: Q1)

  17. Yang, Y. F., Wu, G. X. and Ren, K., (2021). Three-dimensional interaction between uniform current and a submerged horizontal cylinder in an ice-covered channel. Journal of Fluid Mechanics, 928, A4. (JCR: Q1)

  18. Yang, Y. F. and Wang, C. Z. (2020). Finite element analysis of second order wave resonance by multiple cylinders in a uniform current. Applied Ocean Research, 100, 102132. (JCR: Q1)

会议论文 (* 通讯作者)

  1. Yang, Y. F.* and G. X. Wu (2026). Interaction of a uniform current with a cylinder submerged beneath a defective ice sheet. 41st International Workshop on Water Waves and Floating Bodies. Plitvice, Croatia

  2. Yang, Y. F.* and G. X. Wu (2025). Wave interaction with a large number of floating ice sheets of arbitrary shapes: exact and wide space-approximation approaches. 40th International Workshop on Water Waves and Floating Bodies. Shanghai, China

  3. Yang, Y. F.*, Ren, K., Huang, L. F. and Meylan, M. H. (2024). Long wave interaction with a moored elastic plate floating near an inclined beach. 39th International Workshop on Water Waves and Floating Bodies. St Andrews, Scotland, UK.

  4. Ren. K. and Yang, Y. F. (2023). Wave interaction with a floating finite rectangular plate in a channel. 38th International Workshop on Water Waves and Floating Bodies. Ann Arbor, MI, USA.

  5. Yang, Y. F.*, Lv, H. and Wang, C. Z. (2019). Time domain analysis of second-order wave interactions with multiple cylinders in a steady current. The 30th National Hydrodynamics Conference. Hefei University of Technology. Hefei, China.

  6. Yang. Y. F.*, Lu. S. Y., Wang, W. H. and Huang, C. F. (2018). Characterization of the effects of nodal eccentricity on the Strength of Tubular T-Y joints. The 32nd Asian-Pacific Technical Exchange and Advisory Meeting on Marine Structures. Wuhan University of Science and Technology. Wuhan, China.

 ▎其他 

博士后招聘启事:课题组长期招收具有船舶与海洋工程、水利工程、港口海岸及近海工程、力学等相关专业博士生加盟课题组开展博士后科研工作。优先考虑数学、力学、基础扎实,有编程经验、论文发表经验的申请人。若有意向,请发简历及代表作至邮箱yangyifeng@scut.edu.cn联系。依托于粤港澳大湾区的政策导向和经济优势,华南理工大学为博士后提供丰厚的待遇和配套条件,具体招聘启示请参考此链接:

土木与交通学院:http://www2.scut.edu.cn/postdoctor/2021/1102/c13590a449561/page.htm

海洋科学与工程学院:https://www2.scut.edu.cn/marine/2022/0914/c33631a480373/page.htm


学校鼓励和支持优秀的博士后出站后申请“准聘-长聘制”教研岗位,同等情况下,优先考虑考核结果特别优秀的博士后。


Research Gate: https://www.researchgate.net/profile/Yifeng-Yang-9

ORCID:https://orcid.org/0009-0006-6097-1679

Google Scholar: https://scholar.google.com/citations?hl=en&user=Rf6X9RYAAAAJ

Personal Web: https://yang-yifeng.github.io/

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