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研究生导师基本信息表

1、个人基本信息:

    名:许从昊

    别:

       

出生年月:1989

技术职称:副教授

毕业院校夏威夷大学

学历(学位):博士

所在学科:港口、航道与近海工程

2、学习和工作经历:

2019.10

至今

3308维多利亚检测线路 任教

2018.12

2019.07

University of Hawaii at Manoa 博士后

2014.01

2018.12

University of Hawaii at Manoa 博士

2011.08

2013.12

Nanyang Technological University 博士在读

2007.08


2011.06

3308维多利亚检测线路 学士

3、目前研究领域:

主要围绕海洋清洁能源、波浪与海岸和海洋结构物相互作用的试验与数值仿真以及海洋观测系统研发等方面开展研究,具体研究兴趣包括:

1.波浪能发电装置;

2.波浪与海岸、海洋结构物的相互作用;

3.泥沙输运与泥沙运动力学的实验与多相流数值仿真;

4.计算流体力学与高性能计算在海岸动力领域的应用;

5.新型智能算法(机器学习、数据挖掘与可视化)及其在海洋和海岸学科中的应用;

6.人工冲浪礁与冲浪板水动力学;

7.海洋原位观测系统研发。

                                                                                                        

                                                   

持有美国水下科学学会(AAUS)注册科学潜水员证、北美潜水教练员协会(NAUI)MSD、救生潜水员、富氧潜水员(EANx)、高级开放水域(AOW)等多项潜水资质,同时具备国家体育总局一级冲浪教练员技术水平,接受过帆船驾驶培训,擅长近海海域的现场观测调研。


4、主持在研或已完成主要课题:

纵向课题:

1.湖南省优秀青年科学基金项目,岛礁环境下越浪-振荡水柱式波浪能发电阵列的捕能护岸性能和环境水动力影响研究,2025-2027,在研,主持;

2.国家自然科学基金青年项目,群桩式波浪能装置附近水沙动力特性及其对岸滩演变影响研究,2021-2023,结项,主持;

3.国家重点研发计划专项项目子课题,**海岸防护工程应用,2021-2025,资助期满,主持;

4.国家重点研发计划专项项目课题,**海岸构型及材料研发,2021-2025,资助期满,参与;

5.国家重点研发计划子课题,可移动式码头后方导流技术与装备研发,2022-2024,结项,参与;

6.国家自然科学基金面上项目,岸礁剖面珊瑚砂输运及其对工程活动响应机制研究,2020-2023,结项,参与;

7.国家自然科学基金面上项目,高强度扰动下南海北部海岸带动力过程和地貌响应机制,2022-2025,资助期满,参与;

8. 美国国家科学基金项目,Controlling   Cross-shore Sediment Transport by Integrating Pile Breakwaters with Wave Energy Converters for Sustainable Coastal Management,2017-2021,结题,参与

横向课题:

1.强非线性波浪造浪技术与人工礁类虚拟地形优化技术研发,2026,在研,主持


5、主要科研成果(发表学术论文、出版著作、授权发明专利):

代表性论著(选取部分)

(1)Xu C, Wen Q, Li P, et al. An Experimental Study of Wave-Induced Local Scour at a Dual-Function OWC-Pile Breakwater. China Ocean Engineering, 2025, 39(6): 1097-1111. (SCI二区)

(2)Xu C, Liu H, Yao Y, et al. Wave attenuation and wave forcing of a modular artificial reef located on a coral reef topography considering coral canopy growth. Ocean Engineering, 2025, 341: 122585.(SCI二区Top)

(3)Xu C., Yang J., Yao Y., et al. Performance of a closely-spaced array of circular U-OWC devices for wave power extraction and breakwater applications. Ocean Engineering, 2025, 324: 120654. (SCI二区)

(4)Xu C., Zuo J., Yao Y., He Y., Li J. Characteristics of wave loading and viscous energy loss of a bottom-sitting U-OWC wave energy device: A validated numerical perspective. Energy. 2024:132898. (SCI一区)

(5)Xu C., He Y., Yao Y., Zuo J. Experimental and numerical study of a circular OWC with a U-shaped duct for wave energy conversion in long waves: Hydrodynamic characteristics and viscous energy loss. Renewable Energy. 2023;215:118901. (SCI一区)

(6)Xu, C., Huang, Z.; A dual-functional wave-power plant for wave energy extraction and shore protection: An experimental proof of concept study. Applied Energy2018, 229:963-976. (SCI一区)

(7)Xu C., Huang Z. A laboratory study of wave-induced local scour at an emergent pile breakwater. Ocean Engineering, 2023, 270: 113618. (SCI二区)

(8)Xu C, Huang Z. An experimental study of characteristics of solitary-wave-induced scour around a pile breakwater with a discussion on effects of the distance between piles. Journal of Earthquake and Tsunami, 2022, 16(03): 2240002. (SCI)

(9)Xu, C., Yao, Y., Guo, T., Deng, Z.; Study of flow characteristics around a row of oscillating water column pile under regular waves, Journal of Zhejiang University (Engineering Science), 2021, 55(7), 1308-1316. (EI)

(10)Xu C, Huang Z.; Three-dimensional CFD simulation of a circular OWC with a nonlinear power-takeoff: Model validation and a discussion on resonant sloshing inside the pneumatic chamber. Ocean Engineering, 2019, 176:184-98. (SCI一区)

(11)Xu, C., Huang, Z., Yao, Yu.; A wave-flume study of scour at a pile breakwater: solitary waves, Applied Ocean Research, 2019, 82:89-108. (SCI一区)

(12)Lee, C.-H., Xu, C., and Huang, Z.; A three-phase flow simulation of local scour caused by a submerged wall jet with a water-air interface. Advances in Water Resources, 2019, 129:373-384. (SCI二区)

(13)Yao, Y., Li, Z., Xu, C.,*(通讯) Jiang, C. A study of wave-driven flow characteristics across a reef under the effect of tidal current. Applied Ocean Research, 2023,130, 103430. (SCI二区)

(14)Yao, Y., Chen, X., Xu, C.,* (通讯) Jia, M., Jiang, C.; Numerical modelling of wave transformation and runnup over rough fringing reefs using VARANS equations, Applied Ocean Research, 2022, 118, 102952. (SCI二区)

(15)Yao, Y., Chen, X., Xu, C.,* (通讯) et al.; Modeling solitary wave transformation and run-up over fringing reefs with large bottom roughness, Ocean Engineering, 2020, 218(9):108208. (SCI二区)



6、所获学术荣誉及学术影响:

(1)湖南省优秀青年基金获得者,

(2)2024年度中国海洋工程科技二等奖,中国海洋工程咨询协会,岛礁防护及安全保障理论与方法研究

(3)2019年度中国航海科技奖一等奖,中国航海学会,珊瑚礁海岸防灾减灾机理与关键技术研究

(4)亚太地球科学学会(AOGS)会员(2018

(5)Energy,Renewable Energy, Ocean Engineering, Applied Ocean Research等国内外著名期刊审稿人

(6)指导学生获得国家级创新项目立项1项,省级创新项目立项1项,校级创新项目2项,国家级科创奖项一等奖1项,省级、校级科创与学科竞赛奖项合计3项.

7、联系电话:                  联系邮箱:conghaox@163.com

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