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李金钊

2025-11-10

教师基本信息表

1、个人基本信息:

 名:李金钊

 别:

 

出生年月:1989.3

技术职称:副研究员

毕业院校北京交通大学  

学历(学位):博士

所在学科:港口、海岸及近海工程

2、学习和工作经历:

教育经历

2016.09—2017.09:丹麦科技大学(QS世界排名Top100),海岸工程,联合培养,

导师:David R. Fuhrman教授(《Applied Ocean Research》主编)

2011.09—2017.12:北京交通大学,桥梁与隧道工程,博士(硕博连读)

2007.09—2011.06:山东科技大学,交通工程,学士

工作经历

2025.10至今:长沙理工大学 水利与海洋工程学院

2021.012025.09:湖南大学,土木工程学院,博士后,副研究员

2019.03—2020.12:山东科技大学,交通学院,讲师,副系主任

2018.03—2019.02:交通运输部天津水运工程科学研究院,海岸河口中心,助理研究员

 

3、目前研究领域:

主要从事水动力与冲刷AI智能计算物理编码深度学习计算机视觉测量洪水灾害智能监测领域的研究。入选湖南省优秀博士后创新人才计划、获首届湖南省博士后创新创业大赛银奖。曾任交通运输部天津水运工程科学研究院助理研究员,参与多项包括港珠澳大桥、深中通道等国家重大工程项目,与丹麦科技大学、荷兰代尔夫特理工大学、日本东京大学等国际知名学术机构开展了深度合作研究,作为核心成员参与水下悬浮隧道(中国科协面向未来的60个重大科学问题之一)等前沿科技项目的攻关。

主持国家自然科学青年基金国家重点研发计划子课题、湖南省科技创新人才计划、湖南省自然科学基金、中国博士后基金等国家及省部级科研项目5项,主持及参与企业委托项目9项,参与编写行业规范1部。已发表学术论文60余篇,其中SCI论文40余篇,Nature子刊1篇,授权发明专利15项,成果转化(专利实施许可)3项。获得中国铁道学会科学技术二等奖湖南省公路学会科学技术一等奖,担任Advances in Bridge Engineering》、Smart Construction、《铁道科学与工程学报》(EI)、《科技通报等期刊青年编委,Sustainability》、《WaterSCI期刊客座主编Guest Editor),担任20余种SCI期刊审稿人

4、主持在研或已完成主要课题:

纵向课题:

[1] 国家自然科学青年基金:近岸波浪作用下桥梁局部冲刷演变机理及发展预测(主持结题

[2] 湖南省科技创新人才计划优秀博士后创新人才项目(主持优秀结题)

[3] 中国博士后基金面上项目:基于视觉测量的近海桥梁冲刷及预测研究(主持,结题

[4] 湖南省自然科学基金青年项目:基于精细化数值模拟的海岸桥梁冲刷研究(主持,结题

[5] 中央高校基本科研业务费专项资金优秀博士创新基金(1万,主持

[6] 国家自然科学基金面上项目:近岸跨海桥群桩基础波流冲刷过程研究(主研)

[7] 中国铁路总公司科研计划重点项目:采沙河流铁路桥梁汛期防控技术研究(主研)

[8] 武汉市重点研发计划:复杂服役工况下高负载仿生爬壁机器人关键技术研究(主研)

[9] 国家自然科学基金青年项目:基于三维同步测量的墩柱周围水沙作用机理研究(参与)

横向课题:

[10] 企业委托科技项目:基于无人机的桥梁流场监测及洪灾预警技术(主持

[11] 中铁十二局集团有限公司:新建广州(新塘)至汕尾铁路站前GSSG7标跨深汕西高速大桥健康监测系统与拱塔检测机器人项目(共同主持

[12] 交通运输部天津水运工程科学研究院:悬浮隧道水动力特性物理模型试验

[13] 交通运输部天津水运工程科学研究院:悬浮隧道小比尺波浪水槽试验

[14] 交通运输部天津水运工程科学研究院:悬浮隧道结构水动力耦合基本行为机理试验研究

[15] 河北省交通规划设计院:公路工程防洪减灾标准及水平研究

[16] 河北省交通规划设计院:公路工程水文勘测设计规范编制

[17] 河北省交通规划设计院:桥台冲刷试验研究

[18] 江西省地质局:岩土工程智慧勘察大数据分析技术和安全管理系统

 

5、主要科研成果(发表学术论文、出版著作、授权发明专利):

发表学术论文累计60余篇,其中SCI论文40余篇,一作/通讯SCI论文20Nature子刊1篇),论文累计引用1000次,H指数18;授权发明专利15项。

一作/通讯作者或二作(导师一作)SCI论文如下:

[1] Weiwei He, Jinzhao Li (共同一作), Xuan Kong*, Lu Deng. Multi-level physics informed deep learning for solving partial differential equations in computational structural mechanics. Nature Communications Engineering, 2024, 3, 151. (Nature首个工程领域子刊,入选2024下载量Top25)

[2] Xuan Kong, Qipei Fan, Jinzhao Li*(通讯作者), Weiwei He. Reconstructing flow field from sparse sensor data: a deep learning framework combining autoencoder and cross-attention mechanism. Physics of Fluids, 2025, 37, 9. (入选编辑精选Editor’s Pick)

[3] Jinzhao Li, Xuan Kong*, Yilin Yang, Zhiwen Yang, Jiexuan Hu. Computer vision-based measurement of wave force on the rectangular structure. Ocean Engineering, 2023, 270, 113624.

[4] Jinzhao Li, Xuan Kong*, Yilin Yang, Zhiwen Yang, Jiexuan Hu. Optical flow based measurement of flow field in wave-structure interaction. Ocean Engineering, 2022, 263, 112336.

[5] Jinzhao Li, Xuan Kong*, Yilin Yang, Lu Deng, Wen Xiong. CFD investigations of tsunami-induced scour around bridge piers. Ocean Engineering, 2022, 244, 110373.

[6] Jinzhao Li, David R. Fuhrman, Xuan Kong, Mingxiao Xie*, Yilin Yang*. Three-dimensional numerical simulation of wave-induced scour around a pile on a sloping beach. Ocean Engineering, 2021, 233, 109174.

[7] Jinzhao Li, Meilan Qi*, David R. Fuhrman, Qigang Chen. Influence of turbulent horseshoe vortex and associated bed shear stress on sediment transport in front of a cylinder. Experimental Thermal and Fluid Science, 2018, 97: 444-457.

[8] Yilin Yang, Jinzhao Li* (通讯作者). Experimental study of flow field around pile groups using PIV. Experimental Thermal and Fluid Science, 2021, 120, 110223.

[9] Jinzhao Li, Meilan Qi*, David R. Fuhrman. Numerical modeling of flow and morphology induced by a solitary wave on a sloping beach. Applied Ocean Research, 2019, 82: 259-273.

[10] Jinzhao Li, Xuan Kong*, Yilin Yang, Jiexuan Hu. Numerical modeling of solitary wave-induced flow and scour around a square onshore structure. Journal of Marine Science and Engineering, 2023, 11(1), 198.

[11] Jinzhao Li, Yilin Yang*, Zhiwen Yang*. Influence of scour development on turbulent flow field in front of a bridge pier. Water , 2020, 12(9), 2370.

[12] Jinzhao Li, Meilan Qi*. Local scour induced by upstream riverbed level lowering. Natural Hazards, 2015, 77(3): 1811-1827.

[13] Yilin Yang, Jinzhao Li *(通讯作者), Waner Zou, Benshuang Chen. Numerical investigation of flow and scour around around complex bridge piers in wind-wave-current conditions. Journal of Marine Science and Engineering, 2024, 12(1), 23.

[14] Zhiwen Yang, Jinzhao Li*(通讯作者), Huaqing Zhang, Chunguang Yuan, Hua Yang. Experimental study on 2D motion characteristics of submerged floating tunnel in waves. Journal of Marine Science and Engineering, 2020, 8(2), 123.

[15] Yilin Yang, Jinzhao Li*(通讯作者). SPH-FE-based numerical simulation on dynamic characteristics of structure under water waves. Journal of Marine Science and Engineering, 2020, 8(9), 630.

[16] Xiangdong Wang, Wentao Li, Zhiwen Peng, Qianmi Yu, Yilin Yang*, Jinzhao Li*(通讯作者). Optimization of combined scour protection for bridge piers using computational fluid dynamics. Water , 2025, 17(18), 2742.

[17] Meilan Qi* (导师), Jinzhao Li, Qigang Chen, Qunfeng Zhang. Roughness effects on near-wall turbulence modelling for open-channel flows. Journal of Hydraulic Research, 2018, 56(5):648-661.

[18] Meilan Qi* (导师), Jinzhao Li, Qigang Chen. Applicability analysis of pier-scour equations in the field: error analysis by rationalizing measurement data. Journal of Hydraulic Engineering - ASCE, 2018, 144(8): 04018050.

[19] Meilan Qi* (导师), Jinzhao Li, Qigang Chen. Comparison of existing equations for local scour at bridge piers: parameter influence and validation. Natural Hazards, 2016, 82(3): 2089-2105.

[20] Meilan Qi* (导师), Jinzhao Li, Qigang Chen, Qunfeng Zhang. Closure to Roughness effects on near-wall turbulence modelling for open-channel flows. Journal of Hydraulic Research, 2019, 57(5): 746-746.

[21] Weiwei He, Jinzhao Li *(通讯作者), Xuan Kong*, Lu Deng. Physics-encoded graph deep learning for physical diffusion systems. Journal of Computational Physics. (2nd round review)

发表的非一作/通讯作者SCI论文:

[22] Zhiwen Yang*, Jinzhao Li, Yuwang Xu, Xinran Ji, Zhenxiang Sun, Huaqing Zhang. Experimental study on the wave-induced dynamic response and hydrodynamic characteristics of a submerged floating tunnel with elastically truncated boundary condition. Marine Structures, 2023, 88, 103339.

[23] Yilin Yang, Jinzhao Li, Haiquan Jing*. Experimental study of flow field and sediment suspension in the gap area of tandem piles under oscillatory flows. Ocean Engineering, 2022, 266, 113124.

[24] Yu Wang, Jinzhao Li, Xuan Kong*, Lu Deng. Physics-preserved graph learning of differential equations for structural dynamics. Mechanical Systems and Signal Processing, 2025, 236, 112956.

[25] Kui Luo, Xuan Kong*, Jinzhao Li, Jiexuan Hu, Lu Deng. Motion magnification for video-based vibration measurement of civil structures: a review. Mechanical Systems and Signal Processing, 2024, 220, 111681.

[26] Mingxiao Xie*, Chi Zhang*, Jinzhao Li, Shan Li, Huaqing Zhang*, Zhiwen Yang. Flow structure and bottom friction on the non-linear turbulent boundary layer under stormy waves. Coastal Engineering, 2021, 164, 103811.

[27] Huaqing Zhang, Zhiwen Yang*, Jinzhao Li, Chunguang Yuan, Mingxiao Xie, Hua Yang, Haiqing Yin. A global review for the hydrodynamic response investigation method of submerged floating tunnels. Ocean Engineering, 2021, 225, 108825.

[28] Yanrong Kuai, Meilan Qi*, Jinzhao Li. Numerical study on the propagation of solitary waves in the near-shore. Ocean Engineering, 2018, 165: 155-163.

[29] Jinxin Yi, Xuan Kong*, Jinzhao Li, Jiexuan Hu, Lu Deng. Full-field modal identification of cables based on double match tracking and video motion magnification method. Mechanical Systems and Signal Processing, 2025, 226, 112321.

[30] Zhiwen Yang*, Xinran Ji, Mingxiao Xie, Jinzhao Li, Huaqing Zhang, Daoru Wang. Experimental study on the dynamic response of a water ballast type floating breakwater. Ocean Engineering, 2021, 233, 109012

[31] Yilin Yang, Meilan Qi*, Xin Wang, Jinzhao Li. Experimental study of scour around pile groups in steady flows. Ocean Engineering, 2020, 195: 106651.

[32] Meilan Qi*, Yanrong Kuai, Jinzhao Li. Numerical simulation of water waves generated by seabed movement. Applied Ocean Research, 2017, 65: 302-314.

[33] Yilin Yang, Meilan Qi*, Jinzhao Li. Evolution of hydrodynamic characteristics with scour hole developing around a pile group. Water, 2018, 10(11): 1632.

[34] Kui Luo, Xuan Kong*, Jie Zhang, Jiexuan Hu, Jinzhao Li, Hao Tang. Computer Vision-based Bridge Inspection and Monitoring: a Review. Sensors, 2023 23(18):7863.

[35] Xuan Kong, Quanyu Tang, Kui Luo, Jiexuan Hu*, Jinzhao Li, C.S. Cai. Vehicle Response Based Bridge Modal Identification Using Different Time-Frequency Analysis Methods. International Journal of Structural Stability and Dynamics, 2024, 25(06):2550062.

[36] Yu Wang, Jinzhao Li, Xuan Kong*, Lu Deng. Spectral Feature-Encoded PINNs for Solving High-Frequency Dynamic Differential Equations. Structures.

[37] Jinxin Yi, Xuan Kong*, Jinzhao Li, Jiexuan Hu, Hong Zhang. Blind estimation of cable tension based on dual matching tracking and half-wavelength of mode shape. Engineering Structures

[38] Yilin Yang, Renjun Wang, Jinzhao Li, Haiquan Jing, Pengru Deng*. Scour Protection at Bridge Pier: Combined Spindle-Shaped Structures with Collars. International Journal of Sediment Research.

[39] Weiwei He, Jinzhao Li, Xuan Kong*, Lu Deng. Mechanics-inspired Message Passing Networks (PMPN) for Structural Bending Generalization Method. Engineering Structures

[40] Weiwei He, Jinzhao Li, Xuan Kong*, Lu Deng. Physics-guided Message-passing Network: load generalization meta-modeling of truss structure. Engineering Structures

[41] Zhenlong Liang, Jinzhao Li, Xuan Kong*, Lu Deng. Physics-encoded Temporal Integrator Graph Network for structural dynamics computation under seismic excitation. Engineering Application of Artificial Intelligence

[42] Yilin Yang, Zhou Yang, Jinzhao Li, Haiquan Jing, Shunyi Wang*. Numerical Investigation of Hydrodynamic Characteristics around Bridge Piers under Wind-Wave-Current Conditions. Physics of Fluids. (2nd round review)

[43] Yilin Yang, Zhiping Xia, Jinzhao Li, Haiquan Jing, Zhenru Shu*. Effect of layout on local scour around pile groups under combined wave and current conditions. Physics of Fluids.

 

发表的中文期刊论文:

[44] 齐梅兰,李金钊,郐艳荣. 波流作用的近岸圆柱局部床面侵蚀. 水利学报, 2015, 46(7): 783-791.EI

[45] 李金钊,齐梅兰,金亚昆. 水流对破坏后河床的作用. 中国科技论文2014, 9(5): 564-567.

[46] 郐艳荣,齐梅兰,李金钊. 近海岸桥梁下部结构与波浪力. 浙江大学学报(工学版), 2018, 52(12)EI

[47] 陈启刚,齐梅兰,李金钊. 明渠柱体上游马蹄涡的运动学特征研究. 水利学报2016, 47(2): 158-164.EI

[48] 陈启刚,齐梅兰,李金钊,王兴奎. 基于粒子图像测速技术的明渠圆柱上游行近流特征研究. 水利学报, 2015, 46(8): 967-973.EI

[49] 齐梅兰,刘茜,李金钊. 河床采沙挖槽的溯源冲刷影响规律. 水科学进展, 2016(6): 858-866.EI

[50] 阳志文,张华庆,李金钊, 袁春光, 季新然, 杨华. 波流作用下悬浮隧道运动响应纵向截断模型试验研究. 海洋工程, 2021, 39(2): 21-28.评为期刊年度优秀论文

[51] 雷练武,于钱米,李金钊,曹玉鹏,牛吉强,陈岁芳. 粒组尺寸缺陷对颗粒破碎极限分形维数的影响. 东华理工大学学报(自然科学版), 2020, 43(06): 546-552.

[52] 孔烜,唐浩,易金鑫,李金钊,邓露. 线结构光视觉引导的钢结构间歇角焊缝识别与跟踪方法. 中国公路学报, 2025, 38(6): 135-145.

会议论文:

[53] 李金钊,孔烜. 基于物理编码深度学习的流场智能计算. 第三届近海深水桥隧工程设计与研究进展学术研讨会, 2025, 中国哈尔滨.

[54] 王宇,李金钊,孔烜. 基于物理驱动图学习模型的结构动力响应计算. 首届全国智能流体力学会议, 2024, 中国西安

[55] 李金钊. 面向土木工程结构的智能计算. 2023年智能计算学术交流会:暨第三届博士后科学基金获得者研讨会,中国杭州

[56] 孔烜,李金钊. 基于视觉与PINN的流场监测及预测研究. 第二届近海深水桥隧工程设计与研究进展学术研讨会, 2023, 中国成都.

[57] 孔烜,李金钊. 面向实时数字孪生的结构智能计算. 第二届土木工程大数据研讨会, 2023, 中国杭州

[58] 李金钊,孔烜. 近海岸桥墩局部冲刷精细化数值模拟研究. 第一届近海深水桥隧工程设计与研究进展学术研讨会, 2021, 中国杭州

[59] 李金钊. 基于OpenFOAM的近岸单桩局部冲刷数值模拟. 2021年港口、航道、海岸与海洋工程中青年学术研讨会, 中国青岛

[60] Jinzhao Li. CFD simulation of scour around a monopile in coastal area using OpenFOAM. Proceedings of the 8th International Conference on the Application of Physical Modelling in Coastal and Port Engineering and Science, Zhoushan, China, 2020.

[61] Jinzhao Li, Meilan Qi*, Yakun Jin. Experimental and numerical investigation of riverbed evolution in post-damaged conditions. Proceedings of the 35th IAHR World Congress, Chengdu, China, 2013: 4229-4240.

授权/公开发明专利:

[1] 孔烜,李金钊,王秀艳,韩振勇,胡掲玄. 基于机器视觉的结构波浪冲击力非接触式测量方法和系统(ZL202211000262.9

[2] 孔烜,李金钊,邓露. 一种模拟桥墩局部冲刷大变形的动网格修复方法ZL202111187879.1

[3] 王秀艳,李金钊,孔烜,韩振勇,胡掲玄. 基于视频识别的精细化水流速度场获取方法和系统(ZL202211227093.2

[4] 胡揭玄,李金钊,孔烜,邓露. 复杂风环境下车辆行驶安全预测方法及系统(ZL202210082981.3

[5] 胡揭玄,李金钊,孔烜,邓露. --桥全动态耦合分析方法及系统(ZL202210089438.6

[6] 苏会锋, 李金钊, 赵硕, 仇建芳. 一种建筑施工用输送轨道(ZL201810681391.6

[7] 齐梅兰,刘茜,李金钊. 一种陡坎河床洪水冲刷演变模拟方法及系统(ZL201510312373.7

[8] 孔烜,何伟伟,李金钊,邓露,戴剑军,刘卓. 基于AI算法的大件运输车辆运输路径规划方法及系统CN118761535B

[9] 孔烜,范琪培,李金钊,邓露,胡揭玄. 基于稀疏传感数据与物理知识融合的流场重构方法及系统(CN202411117276.8

[10] 孔烜,王宇,李金钊,何伟伟,邓露,胡揭玄. 基于内嵌物理信息图神经网络的结构模态计算方法(CN118504151A

[11] 孔烜,刘桢雯,李金钊,胡揭玄,邓露. 基于太赫兹的缆索内部腐蚀定量检测方法CN202410515879.7

[12] 孔烜,刘进,王宇,李金钊,邓露,戴剑军. 基于自适应物理基网络的结构动力响应计算方法和系统(CN202510022928.8

[13] 孔烜,易金鑫,罗奎,李金钊,胡揭玄,邓露. 一种拉索全场模态分析和索力识别方法及系统(ZL202410348707.5

[14] 孔烜,易金鑫,罗奎,李金钊,胡揭玄,邓露,戴剑军,郑祖恩,朱全军. 基于多源数据融合的结构全场精细位移识别方法及系统(ZL202311800294.1

[15] 孔烜,邓海龙,罗奎,李金钊,胡揭玄,邓露. 一种基于无人机的结构振动监测方法及系统(CN202410100659.8

[16] 孔烜,陈逸民,陈定平,李金钊,邓露. 一种基于轨道的桥塔检测机器人行走系统(CN202410566629.6

 

6、所获学术荣誉及学术影响:

荣誉及奖励

2025 湖南省公路学会科学技术等奖(4/15

2025Editor’s Pick paper, AIP Physics of Fluids

2023年 首届湖南省博士后创新创业大赛 银奖

2023智能计算学术交流研讨会 优秀海报奖

2021年 首届湖南省优秀博士后创新人才计划

2018年 中国铁道学会科学技术二等奖(11/15

2016年 研究生出国访学基金

2015年 博士研究生国家奖学金

学术兼职

l Advances in Bridge Engineering》青年编委

l Smart Construction》青年编委

l 铁道科学与工程学报》(EI青年编委

l 科技通报青年编委

l Sustainability》(SCI,影响因子3.3特刊主编Guest Editor

l WaterSCI,影响因子3.0特刊主编(Guest Editor

l Coastal EngineeringOcean EngineeringJournal of HydrologyMarine StructuresPhysics of FluidsAdvances in Water ResourcesEngineering StructuresJournal of Hydraulic ResearchInternational Communications in Heat and Mass TransferMarine Georesources & Geotechnology20余种SCI期刊审稿人

 

7、联系电话:18874043245 联系邮箱:lijinzhao@csust.edu.cn; kingle@hnu.edu.cn

 

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