个人简介
李欢,男,工学博士,副教授,博士研究生导师,中南大学风工程研究中心副主任,中国建筑学会冰雪工程专业委员会和中国空气动力学会测控专业委员会委员。湖南“省优青”和中南大学“升华学者”人才计划项目获得者,湖南省优博。《Journal of Central South University》、《Advances in Wind Engineering》、《Advances in Bridge Engineering》和《长沙理工大学学报》青年编委;《Journal of Fluid Mechanics》,《Journal of Wind Engineering and Industrial Aerodynamics》,《Engineering Structures》和《土木工程学报》等权威期刊审稿人。主要从事于桥梁实时气动混合模拟、桥梁涡振流动机理揭示与智能控制、积冰覆雪铁路桥梁抗风性能提升等方面的研究工作,主持国家级项目/课题3项、海军预研课题和湖南省青B等;发表SCI/EI论文50余篇、其中一作/通讯近40篇(JFM和ESI高被引论文各1篇),授权发明专利15项,参编专著2部、标准4部;获得铁道学会特等奖和一等奖、西藏自治区科技进步奖、江苏省综合交通运输学会科学技术奖、詹天佑科学技术高校专项青年奖、国际桥梁协会最佳论文奖2次、湖南省优秀研究生导师团队奖、铁路工程结构防灾减灾创新团队“全国铁路五四青年集体奖章等奖励。 |
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E-mail: |
性 别: |
男 |
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电 话: |
(+86) 186-7037-7808 |
籍 贯: |
河南信阳 |
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地 址: |
湖南省长沙市韶山南路22号铁道学院 |
出生年月: |
1988/06 |
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研究方向: |
异构钝体气动干扰;扁平钝体绕流; 涡激振动;实时气动混合模拟 |
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教育经历 |
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2018/01-2020/01 |
University of Notre Dame |
土木环境工程与地球科学 |
公派留学 |
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导师:Ahsan Kareem教授(美国工程院院士,中国、印度工程院外籍院士,现任国际风工程协会主席) 主要研究内容:研究了列车、扁平箱梁和桁架主梁气动特性随风攻角的变化规律。发现了列车气动力的双稳态效应、扁平箱梁的静态失速特征和双St数现象,无量纲几何参数对扁平箱梁和桁架主梁气动特性的影响规律。通过流场显示和POD分析探索了上述气动现象的内在机理,并揭示了前缘旋涡脱落、碰撞剪切层和交替性旋涡脱落等三种流场形态控制下扁平箱梁周围脉动风压场的变化规律。 |
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2014/09-2020/06 |
中南大学 |
土木工程 |
博士 |
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导师:何旭辉教授(国家万人计划领军人才,国家杰出/优秀青年科学基金获得者,科技部中青年科技创新领军人才,教育部新世纪优秀人才,湖南省科技领军人才,湖南省普通高校学科带头人培养对象,中国土木工程学会桥梁及结构工程分会常务理事、风工程委员会委员) 博士论文题目:《强横风下高速铁路大跨度桥梁-列车系统气动干扰研究》 主要研究内容:研究了列车-扁平箱梁/桁架主梁之间的横风气动干扰规律,揭示了车-桥横风气动干扰的物理本质。首次提出了准雷诺数效应、列车车底涡脱抑制效应和扁平箱梁流场转捩促进效应等三种重要气动干扰规律。 |
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2010/09-2014/06 |
中南大学 |
土木工程 |
本科 |
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主要科研成果 |
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编号 |
在投期刊论文(*为通讯作者) |
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1 |
Huan Li, Rui Peng, Xuhui He, Yun Guo*, Yage Wu, Weiwei Zhu. Quantitative Investigation of Wind Field Characteristics at Bridge Site in Deep-Cut Gorge using PIV Wind Tunnel Tests. Journal of Wind Engineering and Industrial Aerodynamics, 2026. |
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2 |
Yun Guo, Huan Li*, Xuhui He, Zhiwen Huang, Dong Hou, BaifengSun, Zhao Hao. Field Measurement of Near-Surface Wind Characteristics during Snowfall in a High-altitude Deep Canyon[J]. Measurement, 2026. |
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3 |
Yage Wu, Xuhui He, Huan Li*, Borong Peng. Effects of ballast retaining wall-like attachments on the vortex-induced vibration of a flat-box bridge girder. Journal of Wind Engineering and Industrial Aerodynamics, 2026. |
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4 |
Yage Wu, Huan Li*, Xuhui He, Ziyang Zhao, Borong Peng. Mechanisms of double-lock-in vortex-induced vibration of the 5:1 rectangular cylinder. Engineering Structures, 2026. |
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6 |
Yage Wu, Xuhui He, Huan Li*, Borong Peng. Effects of wind barrier-like attachments on the vortex-induced vibration of a flat- box bridge girder. Nonlinear dynamics, 2026. |
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7 |
Zuyu Xie, Xuhui He, E Deng, Xinjie Zheng, Huan Li*. Aerodynamics of a flat box bridge deck: considering the effects of yaw angle and ballastless structure[J]. Physics of Fluids, 2026. |
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8 |
Lun Yang; Zhiwen Huang; Huan Li, pHD; Yiwen Cao; Xuhui He, pHD; Xugang Hua, pHD. Experimental and numerical study on the icing and aerodynamic characteristics of the iced hanger in rime[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2026 |
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编号 |
SCI期刊论文(*为通讯作者) |
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1 |
He X, Li H, Wang H*, et al. Effects of geometrical parameters on the aerodynamic characteristics of a streamlined flat box girder[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2017, 170: 56-67. |
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2 |
He X*, Li H. Review of aerodynamics of high-speed train-bridge system in crosswinds[J]. Journal of Central South University, 2020, 27(4): 1054-1073. |
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3 |
He X, Fang D*, Li H, et al. Parameter optimization for improved aerodynamic performance of louver-type wind barrier for train-bridge system[J]. Journal of Central South University, 2019, 26(1): 229-240. |
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4 |
Li H, He X*, Wang H, et al. Aerodynamics of a scale model of a high-speed train on a streamlined deck in cross winds[J]. Journal of Fluids and Structures, 2019, 91: 102717. |
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5 |
He X, Li H*, Hu L*, et al. Crosswind aerodynamic characteristics of a stationary interior railway carriage through a long-span truss-girder bridge[J]. Engineering Structures, 2020, 210: 110350. |
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6 |
Li H, He X*. Lateral aerodynamic interference between an interior train and a flat box bridge-deck[J]. Experimental Thermal and Fluid Science, 2020, 117: 110115. |
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7 |
Yin Y, Wang H, Li H*. Effects of flexible films on the aerodynamics of a 5: 1 rectangular cylinder[J]. Experimental Thermal and Fluid Science, 2023, 144: 110870. |
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8 |
Zhou Q, Shang J, Alam M M, et al. Effects of chamfering and spacing on aerodynamics of two tandem cylinders[J]. Physics of Fluids, 2024, 36(11). |
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9 |
Liu H, Li H*, Wang H, et al. Effects of a detached splitter on the vortex-induced vibration of a 5: 1 rectangular cylinder[J]. Physics of Fluids, 2024, 36(1). |
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10 |
Li H, He X*, Hu L, et al. Quantification of aerodynamic forces for truss bridge-girders based on wind tunnel test and kriging surrogate model[J]. Advances in Structural Engineering, 2021, 24(10): 2161-2175. |
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11 |
Li H, Peng R, Hu L*, et al. On the surface flow patterns and associated aerodynamics of an asymmetrical flat-box section[J]. Physics of Fluids, 2023, 35(9). |
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12 |
Li H, Jiang R, Liu Q*, et al. POD-based analysis of the pressure field of elongated hexagonal cylinders[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2024, 245: 105655. |
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13 |
Xie Z, He X, Wang H, et al. Aerodynamic characteristics of a high-speed train on flat-box girder for different yaw angles[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2024, 250: 105759. |
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14 |
Wang J, Deng E, Ni Y Q, et al. Mitigating inflow acceleration effects in twin mountains using air jets: Emphasis on anti-wind for high-speed railways[J]. Physics of Fluids, 2024, 36(5). |
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15 |
Li H, He X*, Wang H, et al. Aerodynamics of a two-dimensional bluff body with the cross-section of a train[J]. Advances in Structural Engineering, 2020, 23(12): 2679-2693. |
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16 |
Liu Z, Wang H, Li J, et al. Flapping dynamics of a flexible membrane attached to the leading edge of a forward-facing step[J]. Physics of Fluids, 2024, 36(5). |
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17 |
He X, Wu Y, Peng G, et al. Recent developments in the wind resistance of railway bridges in China[J]. Advances in Wind Engineering, 2024: 100027. |
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18 |
Wang H, Li H*, He X. Aerodynamics of a train and flat closed-box bridge system with train model mounted on the upstream track[J]. Applied Sciences, 2021, 12(1): 276. |
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19 |
Li H, Zheng X, Wang H, et al. Aerodynamics of a flat girder: Effects of its aspect ratio and angle of attack[J]. Physics of Fluids, 2024, 36(8). |
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20 |
Li H, He X, Hu L*, et al. Aerodynamic properties of a streamlined bridge-girder under the interference of trains[J]. Wind and Structures, 2022, 35(3): 177-191. |
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21 |
Guo Y, Tang S, Li H, et al. Field measurements of the typhoon near-surface wind characteristics under different precipitation intensities[J]. Atmospheric Research, 2025: 108583. |
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22 |
Y Wu, H Li, X He, et al. Aerodynamics of a circular cylinder near the leading-edge separated flow of an elongated rectangular cylinder[J]. Journal of Fluid Mechanics, 2025: S0022112025109919 |
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23 |
Yin Y, Wang H, Li H, et al. Experimental investigation of split flexible flags on vortex-induced vibration control for a rectangular cylinder[J]. Physics of Fluids, 2025, 37(8). |
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24 |
Xuhui He, Zuyu Xie, E Deng, Huan Li*. Effect of ballast track structures on the crosswind aerodynamics of a high-speed train on a bridge[J]. Physics of Fluids, 2026. |
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25 |
Huan Li, Ganshu Peng, Bo Yan, Xuhui He, Shuai Guan, Lingwei Zeng. Effects of wind and snow on the aerodynamic characteristics and flow dynamics of flat box girders[J]. Physics of Fluids, 2026. |
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26 |
Qinghong Wu, Guoji Xu, Peng Yuan, Huan Li*, Xuhui He. A Predictive Framework for Tsunami Impact Forces on a Seawall-Breakwater Protected Cylindrical Structure[J]. Structures, 2026. |
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27 |
Huan Li, Junjie Wang, Yuhang Li, Ganshu Peng, Rui Peng Hangzhao Liu. Effects of a Detached Splitter on the Aerodynamics and Flow Patterns of a 5:1 Rectangular Cylinder[J]. Physics of Fluids, 2026 |
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28 |
Huan Li, Ganshu Peng, Ce Li, Hanfeng Wang, Xuhui He, Hui Tang, Lingwei Zeng. Effect of vertical plate-like attachments on the flow and aerodynamic characteristics of a flat box girder[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2026. |
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29 |
Yage Wu, Xuhui He, Huan Li*, Hanfeng Wang, Borong Peng. Effects of maintenance vehicle track-like attachments on the vortex-induced vibration of a flat-box bridge deck[J]. Engineering Structures, 2026. |
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30 |
Huan Li, Ganshu Peng, Ce Li, Hanfeng Wang, Xuhui He, Shiqing Li, Lingwei Zeng*. Flow Modification and Nonlinear Vortex-Induced Vibrations in Flat Box Girders with Vertical Plate Attachments[J]. Experimental Thermal and Fluid Science, 2026 |
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31 |
Huan Li, Ganshu Peng, Ce Li, Hanfeng Wang, Shiqing Li, Lingwei Zeng. Effect of vertical plate porosity on the aerodynamic and vortex-induced vibration characteristics of flat box girders[J]. Ocean engineering, 2026. |
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32 |
Jialu Xu, Shiyao Zuo, Lixiao Li, Huan Li, Guoji Xu*, Xuhui He. Study on Aerodynamic Forces and Buffeting Response of Thin Flat Plates under Dynamic Wind-Wave Boundary Layer Effects at Various Wind Attack Angles[J]. Ocean engineering, 2026. |
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33 |
Jing Zhu, Hanfeng Wang, Md Mahbub Alam, Xiaoqing Du, Huan Li. Effects of the flexible vortex generators on vortex-induced vibration of a simplified separated-box girder[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2026. |
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34 |
Xuhui He, Ziyang Zhao, Huan Li*, Yage Wu, Borong Peng. On the allowable amplitude of long-span railway bridge in vortex-induced vibration considering train operational performance—a theoretical study[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2026. |
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编号 |
EI期刊论文(*为通讯作者) |
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1 |
李欢,何旭辉*,王汉封,等.π型断面超高斜拉桥涡振减振措施风洞试验研究[J].振动与冲击,2018,37(07):62-68. |
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2 |
龚永智,刘梦婷*,李欢,等.CFRP加固既有损伤RC板梁抗弯试验研究[J].天津大学学报(自然科学与工程技术版),2018,51(12):1246-1252. |
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3 |
何旭辉,方东旭*,王汉封,等.超高多肢斜拉桥桥塔气动力系数研究[J].中国铁道科学,2017,38(04):24-32. |
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4 |
史康,何旭辉*,邹云峰,等.大跨度高速铁路桥梁健康监测系统研发[J].铁道科学与工程学报,2015,12(04):737-742.DOI:10.19713/j.cnki.43-1423/u.2015.04.004. |
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5 |
邹云峰,何旭辉*,李欢,等.风屏障对车桥组合状态下中间车辆气动特性的影响[J].振动工程学报,2016,29(01):156-165.DOI:10.16385/j.cnki.issn.1004-4523.2016.01.020. |
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6 |
史康,褚杨俊,何旭辉*,等.轨道交通百叶窗型风屏障防风效果研究[J].振动工程学报,2017,30(04):630-637.DOI:10.16385/j.cnki.issn.1004-4523.2017.04.014. |
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7 |
何旭辉,秦红禧*,邹云峰,等.台风外围影响下的大跨度拱桥桥址区近地风特性实测研究[J].湖南大学学报(自然科学版),2017,44(01):23-31.DOI:10.16339/j.cnki.hdxbzkb.2017.01.004. |
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8 |
史康,何旭辉*,邹云峰,等.西江大桥桥位处实测良态风非平稳特性[J].中南大学学报(自然科学版),2017,48(05):1352-1359. |
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9 |
何旭辉,邹云峰*,周佳,等.运行车辆风环境参数对其气动特性与临界风速的影响[J].铁道学报,2015,37(05):15-20. |
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10 |
尹亚鹏,王汉封,李欢*,等.柔性附属结构对5:1矩形柱体气动特性的影响[J].中南大学学报(自然科学版),2023,54(04):1603-1612. |
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11 |
尹亚鹏,王汉封,李欢*,等.开缝式柔性膜结构对5∶1矩形柱体气动力的影响[J].铁道科学与工程学报,2022,19(11):3326-3334 |
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12 |
李文舒,王汉封,李欢*,等.矩形前缘剪切流对圆柱气动和绕流特性影响规律的研究[J].铁道科学与工程学报,2023,20(10):3638-3647. |
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13 |
闫渤,李欢*,李玲瑶,等.扁平箱梁阻力波动现象及其潜在机理[J/OL].工程力学,1-10[2025-12-10].https://link.cnki.net/urlid/11.2595.O3.20231226.1058.021. |
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14 |
李欢,蒋瑞祥,李文舒,等.矩形前缘剪切流对圆角方柱气动和绕流特性的影响研究[J].工程力学,2025,42(11):52-62. |
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15 |
李策,王汉封,李欢*,等.竖板状附属设施高度对扁平箱梁气动特性的影响[J].中南大学学报(自然科学版),2025,56(04):1385-1396. |
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16 |
何旭辉,赵紫阳,徐伟昌,等.龙卷风作用下铁路T梁步行板气动特性研究[J/OL].土木工程学报,1-11[2025-12-10].https://doi.org/10.15951/j.tmgcxb.24100807. |
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17 |
张艺,李欢,魏高翔,等.高铁大跨扁平箱梁桥涡振性能及抑振措施研究[J].中南大学学报(自然科学版),2025,56(02):560-574. |
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18 |
程飞,李欢*,赵紫阳,等.龙卷风对车-桥系统T梁步行板荷载的影响规律[J].铁道科学与工程学报,2025,22(11):5007-5016. |
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19 |
李欢;王俊杰;何旭辉;刘航钊. 百叶窗型风屏障对矩形断面涡振性能的影响研究[J].中南大学学报(自然科学版), 2026. |
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编号 |
会议论文(*为通讯作者) |
会议信息及获奖情况 |
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[10] |
Huan Li, Yage Wu., and Wenshu Li. Aerodynamic interference of a circular-rectangular cylinder system. The 5th international conference on engineering innovation and seismic mitigation of bridges (ICEISMB 2022). September 17-18, Online, China |
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[9] |
Huan Li. POD-based analysis of the pressure fields of streamlined bridge decks. The 4th international conference on engineering innovation and seismic mitigation of bridges (ICEISMB 2021). November 20-21, Online, China |
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[8] |
Huan Li. Aerodynamic interference between a high-speed train and a flat box bridge-deck. The 3rd international conference on engineering innovation and seismic mitigation of bridges (ICEISMB 2020). November 21-22, Online, China |
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[7] |
Xuhui He, Huan Li*, and Hanfeng Wang. Aerodynamic interference between high-speed train and truss girder long-span bridge in cross winds. BEI-2019, July 22-25, 2019, Honolulu, HI, USA |
SCI检索 最佳论文 |
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[6] |
Huan Li, Xuhui He*, Hanfeng Wang. Investigations on the Strouhal numbers of stationary flat-box girder. 4th Symposium on Fluid-Structure-Sound Interactions and Control, August 21-25, 2017, Tokyo |
SCI检索 |
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[5] |
李欢, 何旭辉, 王 慧, 李文舒. 宽高比对扁平箱梁风压场的影响. 第20届全国结构风工程学术会议, 2021. 12. 23, 广州, 中国 |
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[4] |
何旭辉, 李欢*, 王汉封. 高速列车-桥梁系统气动特性. 第19届全国结构风工程学术会议, 2019. 04, 厦门, 中国 |
大会特邀报告 |
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[3] |
李欢, 何旭辉*, 王汉封, 方东旭,周旭. 宽高比对大跨度扁平箱梁气动特性的影响. 第18届全国结构风工程学术会议, 2017. 08, 长沙, 中国 |
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[2] |
何旭辉, 李欢*, 邹云峰, 方东旭, 等. π形断面斜拉桥涡激振动及减振措施风洞试验研究. 第22届全国桥梁学术, 2016. 05, 广州, 中国 |
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[1] |
李欢, 何旭辉*, 邹云峰, 史康. 风屏障对车-桥系统颤振稳定性影响的风洞试验研究. 第17届全国结构风工程学术会议, 2015. 08, 武汉, 中国 |
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编号 |
专利 |
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1 |
发明 |
王汉封; 陈海洋; 李欢; 王祯伟; 李耀庄 |
ZL 2014 1 0061723.2 |
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2 |
发明 |
邹云峰; 何旭辉; 李欢; 史康; 周佳 |
ZL 2014 1 0605649.6 |
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3 |
发明 |
邹云峰; 何旭辉; 周佳; 王汉封; 李欢; 黄永明; 史康 |
ZL 2015 1 0023010.1 |
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4 |
发明 |
邹云峰; 何旭辉; 李欢; 贺俊; 周佳 |
ZL 2015 1 0011660.4 |
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5 |
发明 |
吴雅歌; 李欢; 何旭辉 |
ZL 2022 1 1154319.0 |
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6 |
发明 |
李欢;谢祖育;何旭辉;王汉封;吴雅歌;黄致睿 |
ZL 2022 1 1242205.1 |
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7 |
发明 |
李欢;谢祖育;何旭辉;王汉封;黄致睿;王慧;刘航钊 |
ZL 2022 1 1205517.5 |
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8 |
发明 |
谢祖育;李欢;何旭辉;王汉封;刘航钊;吴雅歌 |
ZL 2022 1 1205529.8 |
|||||||||||||||
9 |
发明 |
李欢; 吴雅歌; 何旭辉 |
ZL 2022 1 15789640.1 |
|||||||||||||||
10 |
发明 |
李欢;吴雅歌;何旭辉 |
ZL 2022 1 1674360.0 |
|||||||||||||||
11 |
发明 |
谢祖育;李欢;何旭辉 |
ZL 2023 1 0168779.7 |
|||||||||||||||
12 |
发明 |
李欢;蒋瑞祥;窦垭锡;蒋志勇 |
ZL 2024 1 1597207.1 |
|||||||||||||||
13 |
发明 |
何旭辉;李欢;魏高翔;赵紫阳 |
ZL 2025 1 0227766.1 |
|||||||||||||||
14 |
发明 |
何旭辉;李欢;魏高翔;赵紫阳 |
ZL 2025 1 0237574.9 |
|||||||||||||||
15 |
发明 |
李欢; 周贤豪; 何旭辉; 吴雅歌 |
ZL 2025 1 1935319.8 |
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主要学术兼职及获奖情况 |
||||||||||||||||||
编号 |
名称 |
|||||||||||||||||
1 |
中国铁道科技奖 |
多动力作用下高速铁路轨道-桥梁结构随机动力学研究及应用 |
行业协会/特等奖 |
2017040283-K0-002-R26 |
||||||||||||||
2 |
中国铁道科技奖 |
高速铁路车-桥系统抗风设计关键参数深化研究及应用 |
行业协会/一等奖 |
2018040362-K1-016-R15 |
||||||||||||||
3 |
湖南省优博 |
强横风下高速铁路大跨度桥梁-列车系统气动干扰试验研究 |
省部级/优秀博士论文 |
2023BY030 |
||||||||||||||
4 |
西藏自治区科学技术奖 |
高原峡谷桥梁建设期风灾预警关键技术及应用 |
省部级/二等奖 |
2023-JG-2-11-17 |
||||||||||||||
5 |
中国铁道学会科学技术奖 |
大跨度高速铁路桥梁抗风关键技术及工程应用 |
行业协会/一等奖 |
2024040765-K1-019-R06 |
||||||||||||||
6 |
詹天佑铁道科学技术奖高校专项青年奖 |
/ |
个人奖 |
/ |
||||||||||||||
7 |
江苏省综合交通运输学会科学技术奖 |
强风作用下铁路T梁步板抗风性能提升关键技术及应用 |
行业协会/三等奖 |
P2025-KJ-3-07-04 |
||||||||||||||
8 |
BEI-2019 Best Paper Award |
Aerodynamics interference between high-speed train and truss girder long-span brige |
行业协会 |
/ |
||||||||||||||
9 |
BEI-2020 Best Paper Award |
POD-based analysis of the pressure field of elongated hexagonal cylinders |
行业协会/ |
/ |
||||||||||||||
主持和参与科研项目 |
||||||||||||||||||
编号 |
名称 |
主持或参与 |
||||||||||||||||
[15] |
国家自然科学基金重大科研仪器项目(52327810),高速铁路车-桥系统实时气动混合模拟试验装备研制 |
参与 |
||||||||||||||||
[14] |
湖南省自然科学基金优秀青年基金项目(2024JJ4063),高速铁路桥梁抗风与车桥气动干扰 |
主持 |
||||||||||||||||
[13] |
国家重点研发计划项目(2022YFB2302702子课题):高海拔高寒山区千米级悬索桥冰雪防治技术 |
主持 |
||||||||||||||||
[12] |
国家自然科学基金青年基金项目(52208514):高速列车-扁平箱梁系统绕流机与气动优化研究 |
主持 |
||||||||||||||||
[11] |
湖南省自然科学基金青年基金项目(2021JJ40744):高速铁路缆索承重桥梁气动特性及其机理深化研究 |
主持 |
||||||||||||||||
[10] |
中南大学研究生教改(2022JGB086):研究生创新能力培养的“四阶段-六环节”新型项目教学法探索与实践 |
主持 |
||||||||||||||||
[9] |
国重实验室开放基金(KF2022-05):几何非对称对扁平箱梁气动和绕流特征影响规律研究 |
主持 |
||||||||||||||||
[8] |
*****项目:全*************风洞试验项目 |
主持 |
||||||||||||||||
[7] |
重庆铁投项目:渝湘高铁太子坪乌江大桥抗风性能研究 |
主持 |
||||||||||||||||
[6] |
北京华铁项目:多业务车载通信综合天线常规风洞试验 |
主持 |
||||||||||||||||
[5] |
中国中铁重大专项(2020-专项-04-2):多灾害耦合作用下桥梁结构致灾机理及安全防控关键技术研究 |
参与 |
||||||||||||||||
[4] |
国家重点研发计划项目(2017YFB1201204子课题):复杂环境下轨道交通土建基础设施防灾及能力保持技术 |
参与 |
||||||||||||||||
[3] |
高铁联合基金重点项目(U1534206):风雨作用下高速铁路车-轨-桥时变系统横向稳定性基础理论研究 |
参与 |
||||||||||||||||
[2] |
中国铁路总公司科技计划重点项目(2015G002-C):高速铁路桥梁-列车系统抗风设计关键参数深化研究 |
参与 |
||||||||||||||||
[1] |
US NSF Grants CMMI 1562244 and CMMI 1612843 |
参与 |
||||||||||||||||
