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作 者:CUI Jianhui ZHAI Yongjian GUO Ying DENG Wanru LIU Liqin
机构地区:[1]Maritime College,Tianjin University of Technology,Tianjin 300384,China [2]State Key Laboratory of Hydraulic Engineering Simulation and Safety,School of Civil Engineering,Tianjin University,Tianjin 300072,China
出 处:《Journal of Ocean University of China》2023年第2期365-376,共12页中国海洋大学学报(英文版)
基 金:The study is supported by the National Natural Science Foundation of China(No.51879190);the Tianjin Research Innovation Project for Postgraduate Students(No.2021YJSB185).
摘 要:The dynamic responses of a floating vertical axis wind turbine(VAWT)are assessed on the basis of an aero-hydro-mooring coupled model.The aerodynamic loads on the rotor are acquired with double-multiple stream tube method.First-and second-order wave loads are calculated on the basis of 3D potential theory.The mooring loads are simulated by catenary theory.The coupled model is established,and a numerical code is programmed to investigate the dynamic response of the semi-submersible VAWT.A model test is then conducted,and the numerical code is validated considering the hydrodynamic performance of the floating buoy.The responses of the floating VAWT are studied through the numerical simulation under the sea states of wind and regular/irregular waves.The effects of the second-order wave force on the motions are also investigated.Results show that the slow-drift responses in surge and pitch motions are significantly excited by the second-order wave forces.Furthermore,the effect of foundation motion on aerodynamic loads is examined.The normal and tangential forces of the blades demonstrate a slight increase due to the coupling effect between the buoy motion and the aerodynamic loads.
关 键 词:offshore wind power semi-submersible floating foundation vertical axis wind turbine numerical calculation model test
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