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Optimized retrofit design of in-service monopile foundation offshore wind turbine transition zone

机译:优化改造设计在近海风力涡轮机过渡区

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This study proposed a new retrofit solution using bolted connections for in-service offshore wind turbines (OWTs) with monopile foundation via a finite element analysis-based optimization approach. The monopile foundation 5 MW OWT provided by National Renewable Energy Laboratory (NREL) was selected for this study. The transition zone of the monopile OWT subjected to wind and wave loadings, the grout connection of the tower to the monopile, was specifically simulated with three different models using the ANSYS software. The three models included a plain model resembling the installed monopile, a shear key model considering the Det Norske Veritas (DNV) updated design, and a retrofit model incorporating the plain model with the bolted connection installed. Numerical results of three different transition models were compared to determine the efficacy of the proposed retrofit solution. Along with the numerical results, the proposed retrofit bolted con-nection was optimized through implementation of response surface methodology (RSM) with six input para-meters (e.g., bolt diameter) and three outputs (e.g., fatigue life). With the RSM data, the desirability function was employed on three different runs, in an attempt to obtain the most optimal retrofit bolted connection for the monopile OWT. A key finding indicated the optimized configuration of the bolted connection with high strength bolts of 0.036 m diameter to be installed in eight columns and five rows exceeded the required fatigue life.
机译:本研究提出了一种新的改造解决方案,其通过通过基于有限元分析的优化方法使用型近海风力涡轮机(OWTS)的螺栓连接的新改造解决方案。由国家可再生能源实验室(NREL)提供的Monopile Foundation 5 MW OWT用于本研究。经过风和波浪载荷的单一opile OWT的过渡区,塔对单潜行的植物连接,用三种不同的模型使用ANSYS软件模拟。这三种模型包括一个类似于安装的纪用的普通模型,考虑到DET NORSKE Veritas(DNV)更新的设计,以及安装了用螺栓连接的螺纹模型的改造模型。比较了三种不同的过渡模型的数值结果,以确定提出的改造溶液的功效。随着数值结果,通过实施响应面方法(RSM),通过实施具有六个输入仪表(例如,螺栓直径)和三个输出(例如,疲劳寿命)来优化所提出的改造螺栓连接。利用RSM数据,在三种不同的运行中采用期望功能,以试图获得Monopile OWT的最佳改装螺栓连接。一个关键的发现表明,具有0.036米直径为0.036米的高强度螺栓的优化配置,以便安装在八列中,五排超过所需的疲劳寿命。

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