Qiao Dongsheng, Ou Jinping
Deepwater Engineering Research Center, Dalian University of Technology, Dalian 116024, China.
Deepwater Engineering Research Center, Dalian University of Technology, Dalian 116024, China ; State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian 116024, China.
ScientificWorldJournal. 2014;2014:840283. doi: 10.1155/2014/840283. Epub 2014 Aug 27.
The dynamic responses of mooring line serve important functions in the station keeping of a floating wind turbine (FWT). Mooring line damping significantly influences the global motions of a FWT. This study investigates the estimation of mooring line damping on the basis of the National Renewable Energy Laboratory 5 MW offshore wind turbine model that is mounted on the ITI Energy barge. A numerical estimation method is derived from the energy absorption of a mooring line resulting from FWT motion. The method is validated by performing a 1/80 scale model test. Different parameter changes are analyzed for mooring line damping induced by horizontal and vertical motions. These parameters include excitation amplitude, excitation period, and drag coefficient. Results suggest that mooring line damping must be carefully considered in the FWT design.
系泊缆绳的动态响应在浮式风力涡轮机(FWT)的定位中起着重要作用。系泊缆绳阻尼显著影响FWT的整体运动。本研究基于安装在ITI Energy驳船上的美国国家可再生能源实验室5兆瓦海上风力涡轮机模型,对系泊缆绳阻尼进行估计。一种数值估计方法是从FWT运动引起的系泊缆绳能量吸收中推导出来的。通过进行1/80比例模型试验对该方法进行了验证。分析了水平和垂直运动引起的系泊缆绳阻尼的不同参数变化。这些参数包括激励幅度、激励周期和阻力系数。结果表明,在FWT设计中必须仔细考虑系泊缆绳阻尼。