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范骏
发布人: 港航院     发布时间: 2021-05-21     访问次数: 5287

范骏,男,副研究员,硕士生导师



教育经历

2012/09-2019/09  博士,河海大学,港口、海岸及近海工程专业,导师:郑金海 教授,陶爱峰 教授

2016/10-2018/07  联合培养博士,美国麻省理工学院(MIT),导师:Dr. Yuming Liu

2008/09-2012/06  学士,河海大学,港口航道与海岸工程专业



科研与学术工作经历

2023/11-至今  河海大学,港口海岸与近海工程学院,副研究员

2020/11-2023/11  河海大学,港口海岸与近海工程学院,博士后(助理研究员)



研究方向

河口海岸水波动力学;波--地形共振相互作用;基于自然的海岸防灾减灾



科研项目

1.连续起伏地形上非稳态流生波的共振特性与动力机制研究,国家自然科学基金青年项目(52101308),2022.01-2024.12,项目负责人;

2.气候变化下海洋动力灾害及海岸防护重现期变化规律,国家重点研发计划项目子课题,所属项目:基于自然的海洋动力灾害综合防护关键技术与应用(2023YFC3007900),2023.11-2026.10,子课题负责人;

3.基于机器学习的三维随机海浪场重构过程研究,南京市2022年留学人员科技创新项目,2022.10-2023.10,项目负责人;

4.波浪、水流与连续起伏地形的共振作用对水面波浪场的影响特性研究,河海大学中央高校基本科研业务费项目,2024.01-2025.12,项目负责人。



论文发表

[1] Fan Jun, Tao Aifeng*, Liu Jianhao, Wang Gang, Zheng Jinhai. Detuning of triad resonance induced by steady free-surface flow over rippled bottoms. Physics of Fluids, 2025, 37(1): 017145. https://doi.org/10.1063/5.0250307

[2] Fan Jun, Zheng Jinhai*, Tao Aifeng, Liu Yuming*. Upstream-propagating waves induced by steady current over a rippled bottom: theory and experimental observation. Journal of Fluid Mechanics, 2021, 910: A49. https://doi.org/10.1017/JFM.2020.1006

[3] Fan Jun, Tao Aifeng*, Xie Shuya, Wu Di, Wang Gang. Numerical investigation on nonlinear evolution behavior and water particle velocity of wave crests for narrow-band wave field with Gaussian spectrum, Ocean Engineering, 2023, 268: 113518. (https://doi.org/10.1016/j.oceaneng.2022.113518)

[4] Fan Jun, Tao Aifeng*, Shi Moquan, Li Ying, Peng Ji. Flume experimental investigation on propagation characteristics of tidal bore in a curved channel, China Ocean Engineering, 2023, 37(1):131-144. (https://doi.org/10.1007/s13344-023-0011-9)

[5] Fan Jun, Tao Aifeng*, Zheng Jinhai, Peng Ji. Numerical investigation on temporal evolution behavior for triad resonant interaction induced by steady free-surface flow over rippled bottoms. Journal of Marine Science and Engineering. 2022; 10(10):1372. (https://doi.org/10.3390/jmse10101372)

[6] Fan Jun, Tao Aifeng*, Zheng Jinhai. Preliminary numerical investigation on spatial distribution of triad resonant interaction for steady free-surface flow over rippled bottoms. Journal of Coastal Research, 2024, SI113: 675-679. (https://doi.org/10.2112/JCR-SI113-133.1)

[7] Fan Jun, Zheng Jinhai*, Tao Aifeng, Yu Haofeng, Wang Yi, Experimental study on upstream-advancing waves induced by currents. Journal of Coastal Research, 2016, SI75:846-850. (https://doi.org/10.2112/SI75-170.1)

[8] Qin Shufang, Fan Jun*, Zhang Haiming, Su Junwei, Wang Yi, Flume experiments on energy conversion behavior for oscillating buoy devices interacting with different wave types. Journal of Marine Science and Engineering, 2021, 9: 852. (https://doi.org/10.3390/jmse9080852)

[9] Fan Jun, Tao Aifeng*, Zheng Jinhai, Preliminary discussion on the turbulent behaviors of the flow field during the resonance among wave, current and rippled bottoms. The 11th International Conference on Coastal and Ocean Engineering, 2025, Yantai, China. (In Press)

[10] Fan Jun, Tao Aifeng*, Zheng Jinhai, Resonance among waves, current, and rippled bottoms in coastal zones - flow field response under intensive resonance. Proceedings of 38th International Conference on Coastal Engineering, 2025, Rome, Italy. (In Press)

[11] Fan Jun, Zheng Jinhai, Tao Aifeng, Gao Peng, Li Shuo. Experimental study on critical resonant state of upstream-advanced waves. Proceedings of the 34th International Conference on Coastal Engineering, 2014, 1(34), posters.11.

[12] 范骏, 陶爱峰, 郑金海, 徐伟. 连续起伏地形上波流共振作用的流场特性研究. 第二十一届中国海洋(岸)工程学术讨论会论文集, 山东青岛, 2024: 585-588.

[13] 范骏, 陶爱峰, 郑金海. 恒定流经过周期起伏地形的水波共振特性研究.第十一届全国流体力学学术会议论文摘要集.2020: 336.

[14] 范骏, 郑金海, 陶爱峰, 余豪丰, 王懿. 周期性起伏地形上流生波的实验研究. 第十七届中国海洋(海岸)工程学术讨论会论文集, 南宁, 2015, 520-524.

[15] 范骏, 王宇楠, 杨斯汉, 严士常*, 王伟, 钱学生. 双挡板透空堤透浪与反射系数实验研究. 海洋工程, 2011, (04): 60-67.



学术专著

《基于波浪-水流-水底起伏地形作用的水波共振特性研究:以逆流行进波的产生与成长机制为例》,范骏(著),河海大学出版社, 2022. (ISBN: 978-7-5630-7723-6)



表彰奖励

海洋工程科学技术奖二等奖(2013年度,排名6/6):“波浪-海工结构物-海床相互作用全动态耦合数值模拟理论与方法”,中国海洋工程咨询协会,(郑金海; 张继生; 郑东生; 张弛; 隋倜倜; 范骏),2014.01



联系方式

邮箱:fanjun@hhu.edu.cn

本人致力于河口海岸水波动力学领域及其中关于波浪、水流与水底非平整地形共振动力作用、基于自然的海岸防灾减灾等方面的科学研究工作,欢迎对此方向有研究兴趣的学者与我联系,共同探讨、学习与合作。





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