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个人简历 2007 Ph.D. University of British Columbia 10/2013-Present, 上海交通大学,教授,上海交通大学多功能拖曳水池主任, 09/2011–Present 荣誉教授, 能源和气候变化中心, 英国南安普顿大学,University of Southampton, U.K. 07/2009 – 10/2013 美国国家可再生能源国家实验室(National Renewable Energy Laboratory, USA),高级研究员,海洋组首任组长 12/2007 - 07/2009 美国西北太平洋国家实验室(Pacific Northwest National Laboratory, USA),海洋科学组和能源技术组,双聘研究员 研究方向 Applied Mathematics, Fluid Mechanics,Fluid Structure Interaction,Vortical Flow Optimization,Renewable Energy System 学术兼职 中国科学院数理学部风能咨询项目委员会委员 Associate Editor IEEE Power Engineering Letters Associate Editor IEEE Transaction on Sustainable Energy Associate Editor American Institute of Physics Journal of Renewable and Sustainable Energy Guest Editor IEEE Journal of Oceanic Engineering Editorial Board Member Renewable Energy Editorial Board Member PLOS One Editorial Board Member International Journal of Marine Energy Editorial Board Member Renewable and Sustainable Energy Review 科研项目 2007.12-2013.10 Several U.S. Department of Energy Project 2013.10-Present,Young 1000 Talent Plan 代表性论文及专著 Li,Y.,Yi,J.,Song,H.,Wang,Q.,Yang,Z.,Kelley,N., and Lee K. “On Natural Frequency of Tidal Power Systems” Applied Physics Letters, 105(2), 023902 (2014) l Li,Y. Kerri,N. and Wang,Q. “Three-dimensional numerical analysis on blade response of vertical axis tidal current turbine AIP Journal of Renewable and Sustainable Energy, 6, 043123 (2014) l Yi J. and Li,Y. “ Effects of Rotor Control Algorithms and Wind Data on Optimal Blade Shape of Wind Turbines” Wind and Structures, 2014,18,195-213 l Li, Y. “On the definition of the efficiency of tidal current energy devices.” Renewable Energy,2014,68,868-875 Li,Y. “The Status of Large Scale Wind Turbine Technology Development” Applied Mathematics and Mechanics2013, 34(10): 1003-1011 l Churchfield, M., Li, Y. and Moriarty, P. “A LES simulation of a large-scale tidal current turbine farm and a large scale wind turbine farm.” Philosophical transaction of Royal Society A DOI: 10.1098/rsta.2012.0421 l Yu, Y. and Li, Y. “A numerical study of the heave response of a two-body floating point absorber wave energy system” Computer and Fluids DOI: 10.1016/j.compfluid.2012.10.007 l Maniaci, D. and Li.Y. “Preliminary investigation of introducing added mass effect into the general dynamic wake theory for tidal current turbines” Marine Technology Society Journal 2012,46(4),71-78 l Li, Y. and Yu, Y. “A comprehensive review of numerical methods on studying point absorber type of wave energy converter.” Renewable and Sustainable Energy Reviews,2012,16,4352-4364 l Li, Y. and Calisal, S. M. “Modeling of twin-turbine systems with vertical axis tidal current turbines: Part II-Torque Fluctuation.” Ocean Engineering, 2011,38,550-558 l Li Y. and Calisal, S. M. “Three-dimensional effects and arm effects on modeling a vertical axis tidal current turbine.” Renewable energy, 2010, 35(10), 2325-2334 l Li, Y. and Calisal, S.M. “Estimating power output from a tidal current turbine farm with first order approximation of hydrodynamic interaction between devices.” International Journal of Green Energy, 2010, 7(2), 153-163 l Li, Y. and Calisal, S. M. “Modeling of twin-turbine systems with vertical axis tidal current turbines: Part I-Power output.” Ocean Engineering, 2010, 37, 627-637 l Li, Y. and Calisal, S. M. “A discrete vortex method for simulating a stand-alone tidal current turbine: modeling and validation.” Journal of Offshore Mechanics and Arctic Engineering, 2010, 132(3),1102-1110 l Li, Y. and Calisal, S. M. “Numerical analysis of the characteristics of vertical axis tidal current turbines.” Renewable Energy, 2010, 35(2), 435-442 Li, Y. and Willman L. “Feasibility analysis of offshore renewables penetrating local energy systems in remote oceanic areas” Applied Energy,2014,117,42-53 l Li, Y. Lence, B. J. and Calisal, S. M. “An integrated model for estimating energy cost of a tidal current turbine farm.” Energy Conversion and Management, 2011,52,1677-1687 荣誉奖励
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