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河海大学港口海岸与近海工程学院导师教师师资介绍简介-连宇顺

本站小编 Free考研考试/2021-02-20


连宇顺,男,副研究员,硕士生导师
全国博管会“博士后国际交流计划”派出****

主要经历
2020.09至今 获聘硕士生指导老师
2019.09至今 河海大学港口海岸与近海工程学院,副研究员
2017.10~2019.09 美国俄勒冈州立大学(Oregon State University),全国博管会“博士后国际交流计划”派出项目,导师:Prof. Solomon C. Yim
2016.09~2019.09 水文水资源与水利工程科学国家重点实验室博士后,导师:郑金海教授
2010.10~2016.01 天津大学,港口海岸及近海工程专业,博士生,导师:刘海笑教授
2006.09~2010.07 重庆交通大学,港口航道与海岸工程专业,本科,(获第二届全国水利优秀毕业生)


研究方向
1)波能发电装置的设计分析技术
2)浮式海藻牧场的系泊响应研究
3)深海系泊系统的安全可靠性评估
4)浮式风机的系泊安全可靠性评估
5)船舶靠泊码头的安全可靠性评估
6)海洋系泊缆绳的安全可靠性测试和评估技术




主讲课程
研究生课程:锚泊系统设计与分析、《Mooring System Engineering for Offshore Structures》、船舶水动力学、《Ocean Structural Dynamcis》


科研项目
(1)浮式海洋可再生能源装置的系泊安全研究,江苏省面上项目,2020.07-2022.12, 项目负责人。
(2)浮式风机聚酯系泊系统非线性动力特性研究, 国家自然科学基金面上项目(**), 2019.01-2022.12, 合作单位负责人。
(3)耦合纤维缆绳复杂力学性能的系泊分析技术, 天津大学水利工程仿真与安全国家重点实验室开放基金(HESS-1910), 2019.10-2021.12, 项目负责人。
(4)深海合成纤维缆绳全寿命服役安全评估及系泊分析, 国家自然科学基金青年项目(**), 2017.01~2019.12, 项目负责人。
(5)浮式海洋可再生能源发电装置的系泊定位研究, “博士后国际交流计划”派出项目(**), 2017.10~2019.10, 项目负责人。
(6)河海大学中央高校基本科研业务费项目,2017B11314,嵌入式板锚和纤维系缆的长期承载性能及系泊安全评估,2018/01-2019/12,项目负责人。

论文论著

(1)Yushun Lian, Solomon C. Yim, Jinhai Zheng, Haixiao Liu, NanZhang. Effects of damaged fiber ropes on the performance of a hybrid taut-wire mooring system. Journal of Offshore Mechanics and Arctic Engineering, 2020, 142(1).
(2)Yushun Lian, Haixiao Liu, Solomon C. Yim, Jinhai Zheng, Pengfei Xu. An investigation on internal damping behavior of fiber rope. Ocean Engineering, 2019, 182: 512-526.
(3)Solomon C. Yim, N. Adami, B. Bosma, T. Brekken, Ming Chen, L. Ghorban Zadeh, Yushun Lian, P. Lomonaco, A. Mohtat, T. Ozakan-Haller, J. Thomson. A preliminary study on the modeling and analysis of nonlinear effects of ocean waves and power-take-off control on wave energy conversion system dynamic. Proceedings of the 38th International Conference on Ocean, Offshore and Arctic Engineering. Scotland, UK, 2019.
(4)Yushun Lian, Jinhai Zheng, Haixiao Liu, Pengfei Xu. A study of the creep-rupture behavior of HMPE ropes using viscoelastic-viscoplastic-viscodamage modeling. Ocean Engineering, 2018, 162: 43-54.
(5)Yushun Lian, Haixiao Liu, Linan Li, Yuming Zhang. An experimental investigation on the bedding-in behavior of synthetic fiber ropes. Ocean Engineering, 2018, 160: 368-381.
(6)Yushun Lian, Jinhai Zheng, Haixiao Liu. An investigation on creep and creep-rupture behaviors of HMPE ropes. Journal of Offshore Mechanics and Arctic Engineering–Transactions of the ASME, 2018, 140(2): 21401-8.
(7)Yushun Lian, Haixiao Liu, Linan Li, Zhang Yuming. An experimental investigation on fatigue behaviors of HMPE ropes. Ocean Engineering, 139(2017):237-249.
(8)Yushun Lian, Haixiao Liu, Jinghai Zheng. Numerical investigation on dynamic responses of HMPE mooring system with damaged lines. Proceedings of the Twenty-seventh (2017) International Offshore and Polar Engineering Conference, Hawaii, USA, 2017.
(9)Yushun Lian, Haixiao Liu, Wei Huang, Linan Li. A creep-rupture model of synthetic fiber ropes for deepwater moorings based on thermodynamics. Applied Ocean Research, 2015, 52: 234-244.
(10)Haixiao Liu, Yushun Lian, Linan Li, Zhang Yuming. Experimental investigation on dynamic stiffness of damaged synthetic fiber ropes for deepwater moorings. Journal of Offshore Mechanics and Arctic Engineering–Transactions of the ASME, 2015, 137 (6): 061401-061401-8.
(11)Wei Huang, Haixiao Liu, Yushun Lian, Linan Li. Modeling nonlinear time-dependent behaviors of synthetic fiber ropes for deepwater moorings under cyclic loading. Ocean Engineering. 2015,109,207-216.
(12)Yushun Lian, Haixiao Liu, Liming Hu. Feasibility analysis of a new hybrid mooring system applied for deep waters. Proceedings of the Twenty-fifth (2015) International Offshore and Polar Engineering Conference, Hawaii, USA, 2015.
(13)Wei Huang, Haixiao Liu, Yushun Lian, Linan Li. An experimental investigation on nonlinear behaviors of synthetic fiber ropes for deepwater moorings under cyclic loading. Applied Ocean Research, 2014, 45: 22-32.
(14)Wei Huang, Haixiao Liu, Yushun Lian, Linan Li. Modeling nonlinear creep and recovery behaviors of synthetic fiber ropes for deepwater moorings. Applied Ocean Research, 2013, 39: 113-120.
(15)连宇顺, 刘海笑. 海洋系泊工程中合成纤维系缆研究述评. 海洋工程, 2019, 37:146-158.
(16)徐鹏飞,程红霞,赵作鹏,连宇顺,刘鑫. 球形底栖潜水器概念设计研究. 中国造船,2018,59(02):169-177.
(17)李伟男, 刘海笑, 连宇顺. 系缆损伤对绷紧式系泊系统动力响应的影响. 海洋工程, 2017, 3:11-20.
(18)连宇顺, 郑金海, 刘海笑.长期循环载荷作用下高强聚乙烯系缆绳的动刚度演变. 第十八届中国海洋(岸)工程学术讨论会论文集, 2017,375-382.
(19)连宇顺, 刘海笑. 深水系泊高强聚乙烯缆绳的蠕变及破断实验研究. 海洋工程, 2016, 3:10-18
(20)俞俊, 刘海笑, 连宇顺. 损伤聚酯纤维系缆动刚度特性实验研究. 海洋工程, 2016, 1:10-17.
(21)崔华, 刘海笑, 连宇顺. 聚酯系缆损伤对绷紧式系泊系统动力响应影响的数值考察. 海洋工程, 2016 , 4:71-79.
(22)连宇顺, 刘海笑, 黄维. 超深水混合缆绷紧式系泊系统非线性循环动力分析. 海洋工程, 2013, 3:1-8.


授权专利
(1)连宇顺, 郑金海, 徐鹏飞. 一种袋状网缆式重力锚, 发明专利,专利号: ZL1.5, 授权日: 2019.08.01.
(2)连宇顺,郑金海, 徐鹏飞. 一种纤维缆绳蠕变实验装置, 发明专利,专利号: ZL0.6, 授权日: 2020.05.08.
(3)连宇顺,郑金海,一种适用于海藻种植的单点方框式系泊装置,实用新型专利,专利号: ZL3.9,授权日: 2019.08.07.


学术兼职
(1)《Ocean Engineering》、《Marine Structure》、《International Journal of Ocean and Coastal Engineering》等期刊审稿人
(2)《海洋工程》、《防灾减灾学报》等国内核心期刊审稿人


奖励和表彰
(1)第十八届中国海洋(岸)工程学术讨论会青年优秀论文奖,2017
(2)第二届全国水利优秀毕业生,2010

联系方式
联系电话: **
电子信箱: yushunlian@hhu.edu.cn
Researchgate个人网址:https://www.researchgate.net/profile/Yushun_Lian2


“海洋浮式结构物的系泊技术”是船舶与海洋工程学科、港口海岸及近海工程学科的重要研究方向之一。目前,海洋可再生能源开发是本学科的热点和前沿课题,其中浮式海洋能源发电装置的系泊问题亟待解决。因此,本团队将针对“海洋浮式结构物的系泊技术”这一研究方向,着力解决海洋能源发电装置、大型浮式海洋结构物的系泊锚定问题,欢迎有此方向研究兴趣的同学报考我的研究生。
For International Students:
Dr. Yushun Lian obtained his Ph. D degree in Harbour Coastal and Offshore engineering from TianJin University at 2016. Then, he continued to work as a Post-Doc at Hohai University from 2016-2019. From 2017-2019, he came to OSU (Oregon State University) for an exchanged Post-doc research which was co-funded by China Post-doctoral Council and Oregon State University. He is currently an associate professor at Hohai University. His research interest lies but not limited in fluid structural interaction, ocean structural dynamics, MacroAlage Farming Technology, Floating Wind Farming, Mooring Technolgoy for Wave energy converters and floating plantfoam. Interested students who want to work with me in pursuing Master Project, are welcome to contact me by email. More information can be found by visiting my website: https://www.researchgate.net/profile/Yushun_Lian2









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