删除或更新信息,请邮件至freekaoyan#163.com(#换成@)

哈尔滨工程大学航天与建筑工程学院研究生考研导师简介-孙海

本站小编 Free考研网/2019-05-26

孙海部门:航天与建筑工程学院

学科:航空宇航科学与技术

职务:

职称:副教授

指导
资格:硕士生导师
电话:

传真:

邮箱:sunhai2009@gmail.com

邮编:150001

地址:Harbin Engineering University, 11#5046
个人简介
孙海,博士,副教授,硕士生导师。2009年哈尔滨工程大学力学博士毕业,2013-2018年密西根大学安娜堡 (University of Michigan, Ann Arbor) 博士后研究员。研究方向为流体力学、涡激振动、新能源、振动控制、系统可靠性。以第一作者及通讯作者发表论文30余篇,其中SCI检索论文20篇,包括《Energy》、《Renewable Energy》等;省科技技术进步一等奖1项,发明专利1项。2017年担任ASME (美国机械工程师协会),海洋风电分会主席。

教育经历
(1) 2013/03-2018/03,密西根大学(University of Michigan, Ann Arbor),博士后,合作导师:Michael M. Bernitsas

(2) 2014/03-至今,Vortex Hydro Energy (Ann Arbor, U.S.) ,技术员

(3) 2010/10-至今,哈尔滨工程大学,航天与建筑工程学院,副教授

(4) 2009/12-2012/01,哈尔滨工程大学,船舶工程学院,博士后,合作导师:孙丽萍




工作经历
Mar. 2013 – Present Research fellow of University of Michigan, Ann Arbor, Michigan, U.S. Advisor: Michael Bernitsas
· Developing the Virtual Spring-Damping system, for optimization of the VIVACE for green energy
· Flow-Induced Motion (FIM) experiments
· Flow visualization using class IV lasers
· Experimental research of hydrodynamic response of fluid-structure interactions

Dec. 2009 – Present Assistant professor of Quality and Reliability Engineering, College of Aerospace and Civil Engineering, Harbin Engineering University, HeiLongJiang, China
· Teaching two Courses: Reliability Software Application; System Analysis of Testability
and Authentications

Dec. 2009 – Jun. 2012 Post-doctor of Offshore Engineering, College of Shipbuilding Engineering, Harbin Engineering University
· Deepwater Engineering Technology Center, Advisor: Liping Sun

研究方向
Flow-Induced Vibration; VIV; Galloping; Hydrokinetic energy conversion; Alternating Lift Technologies; nonlineardynamics; risk and reailability analysis




承担项目
1. 国家自然科学基金青年科学基金项目,**,基于Vck系统的圆柱流致振动及其能量收集与转换效率参数化研究,2017/01-2019/12,21万元,在研,主持

2. 美国能源部项目,DE-EE**,Synergy of Multiple Cylinders in Flow Induced Motion to Harness Horizontal Hydrokinetic, 2015/10-2019/09,在研,参与

3. 美国密西根大学UROP项目,JE**, Control Scheme of Virtual Spring-Damping System,2014/1-2015/10,已结题,主持

4. 政府间国际科技创新合作重点专项,YS2017YFGH00163,基于被动耦合控制的流致振动新型可再生能源研发,2018/01-2020/12,在研,参加(排名2)

5. 高技术船舶科研项目,GK**, FPSO失效数据库及风险评估软件研发,2015/01-2018/6,2400万元,在研,参加

6. 国家国际科技合作专项项目,2013DFE73060,海上浮式风电系统风险评估软件研发,2013/12-2016/11,已结题




学术交流
2013 ~ Present, University of Michigan, Ann Arbor
招生信息
Graduate: Work on Flow-Induced Vibration of linear and nonlinear oscillator; coding on nonlinear dynamics

本科生授课课程
Reliability and Risk Software Design

研究生授课课程
实践性教学
教学研究课题
社会兼职
Regular reviewer for journals including: Ocean Engineering; Renewable Energy; Applied Energy; Journal of Wind Engineering & Industrial Aerodynamics; Journal of Ocean Engineering and Marine Energy.



专利成果
1. 一种自复位摇摆内筒减震水箱;中国:CN ** B;2017.04.12;2/4

出版著作
(1) 孙海,郭峰,吴限德,空中机器人(四旋翼)专项教育教材,哈尔滨工程大学出版社,63千字,2015

发表论文
以第一作者或第一通讯作者发表SCI论文15篇。其他论文10篇
Selective Publications (First and Contact Author):


1. Sun, H., Ma, C., Bernitsas M. M. (2018) Hydrokinetic power conversion using Flow Induced Vibrations with cubic restoring force. Energy, 153, 490-508, (IF: 4.968)
2. Sun H, Ma, C., Bernitsas, M. M. (2018). Hydrokinetic power conversion using Flow Induced Vibrations with nonlinear (adaptive piecewise-linear) springs. Energy, 143, 1085-1106. (IF: 4.968)
3. Sun, H., Kim, E. S., Nowakowski, G., Mauer, E., & Bernitsas, M. M. (2016). Effect of mass-ratio, damping, and stiffness on optimal hydrokinetic energy conversion of a single, rough cylinder in flow induced motions. Renewable Energy, 99, 936-959. (IF: 4.900)
4. Sun, H., Ma, C., Kim, E. S., Nowakowski, G., Mauer, E., & Bernitsas, M. M. (2017). Hydrokinetic energy conversion by two rough tandem-cylinders in flow induced motions: Effect of spacing and stiffness. Renewable Energy, 107, 61-80. (IF: 4.900)
5. Ma, C., Sun, H., Nowakowski, G., Mauer, E., & Bernitsas, M. M. (2017). Nonlinear piecewise restoring force in hydrokinetic power conversion using flow induced motions of single cylinder. Ocean Engineering, 128, 1-12. (IF: 2.214)
6. Wu, W., Sun, H., Lv, B., & Bernitsas, M. M. (2018). Modelling of a hydrokinetic energy converter for flow-induced vibration based on experimental data. Ocean Engineering, 155, 392-410. (IF: 2.214)
7. Dahai Zhang, Hai Sun, Wenhao Wang, Michael M. Bernitsas, “Rigid Cylinder with Asymmetric Roughness in Flow Induced Vibrations”, Ocean Engineering 150 (2018) pp. 363–376 (IF: 2.214)
8. Ma, C., Sun, H., Bernitsas, Marinos M., “Nonlinear Piecewise Restoring Force in Hydrokinetic Power Conversion Using Flow Induced Motions of Two Tandem Cylinders”, Journal of Offshore Mechanics and Arctic Engineering, ASME Transactions, (Jan. 2018) DOI: 10.1115/1.**. (IF: 1.044)
9. Kai, L., Sun, H., Bernitsas, M. M., “Two Tandem Cylinders with Passive Turbulence Control in FIV: Relation of Oscillation Patterns to Frequency Response”, Journal of Offshore Mechanics and Arctic Engineering, ASME Transactions, Vol. 140 /031801. (IF: 1.044)
10. Ji, C., Xu, W., Sun, H., Xu, W., Wang, W., Ma, C., Bernitsas, M. M., “Interactive Flow-Induced Vibrations of Two Staggered, Low Mass-Ratio Cylinders in the TrSL3 Flow Regime (2.5x104Journal of Offshore Mechanics and Arctic Engineering, ASME Transactions, (in-press), March 2017. (IF: 1.044)
11. Xu, Wanhai, Ji, Chunning, Sun, Hai, Ding, Wenjun, Bernitsas, Michael M., “Flow Induced Vibration (FIV) and Hydrokinetic Energy Conversion of Two Staggered, Mass-Ratio Cylinders, with Passive Turbulence Control in the TrSL3 Flow Regime (2.5?104Journal of Offshore Mechanics and Arctic Engineering, ASME Transactions, Vol. 140 / 021905. (IF: 1.044)
12. Sun, H., Kim, E. S., Bernitsas, M. P., & Bernitsas, M. M. (2015). Virtual Spring–Damping System for Flow-Induced Motion Experiments. Journal of Offshore Mechanics and Arctic Engineering, 137(6), 061801. (IF: 1.044)
13. Kang, J., Sun, L., Sun, H., & Wu, C. (2017). Risk assessment of floating offshore wind turbine based on correlation-FMEA. Ocean Engineering, 129, 382-388. (IF: 2.214)
14. Zhang, X., Sun, L., Sun, H., Guo, Q., & Bai, X. (2016). Floating offshore wind turbine reliability analysis based on system grading and dynamic FTA. Journal of Wind Engineering and Industrial Aerodynamics, 154, 21-33. (IF: 2.689)
15. Sun, H., Sun, L. P., & FAN, H. (2011). Reliability and risk analysis of broken FPSO cable in tandem. Journal of Harbin Engineering University, 32(1), 11-15.
16. Kinaci, O. K., Lakka, S., Sun, H., & Bernitsas, M. M. (2016). Effect of tip-flow on vortex induced vibration of circular cylinders for Re< 1.2* 10 5. Ocean Engineering, 117, 130-142. (IF: 2.214)
17. Zhang, X., Sun, L., Ma, C., Fassezke, E., & Sun, H. (2016). A reliability evaluation method based on the weakest failure modes for side-by-side offloading mooring system of FPSO. Journal of Loss Prevention in the Process Industries, 41, 129-143. (IF: 1.982)


荣誉


奖励
(1) 孙海 (11), 新型海洋立管系统设计及安装关键技术研究, 黑龙江省政府, 科学技术进步奖, 一等奖, 2016




自定义模块1



自定义模块2



自定义模块3





相关话题/系统 哈尔滨工程大学 论文 博士后 密西根