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LOADS ON A JACKET-SUPPORTED WIND TURBINE DURING HURRICANE SANDY SIMULATION

机译:飓风沙质模拟过程中夹克支撑的风轮机的载荷

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The dynamic response of a jacket-supported offshore wind turbine under coupled wind, wave, and current fields during Hurricane Sandy is the subject of this study. To illustrate the detailed procedure related to the response evaluation of a 5-MW offshore wind turbine with a jacket support structure, we consider a single site where the water depth is 50 m. Loads are computed using two simulation tools, FAST and Abaqus, with partial coupling. Aerodynamic loads on the turbine rotor are first evaluated using a wind turbine model in FAST with a fixed base; then, these rotor aerodynamic loads are applied as point loads at the top of a model of a tower that is supported by a jacket structure in Abaqus. Based on stochastic simulations, we discuss the applicability of the Abaqus jacket modeling and describe the characteristics and comparisons of the aerodynamic and hydrodynamic effects on loads on the jacket members. Details related to the structural model and soil-pile interaction model employed in the analyses are also discussed.
机译:本研究的主题是在飓风桑迪期间,由夹套支撑的海上风力涡轮机在风,波和流场耦合下的动态响应。为了说明与具有夹套支撑结构的5兆瓦海上风机的响应评估有关的详细程序,我们考虑水深为50 m的单个站点。使用两个具有部分耦合的仿真工具FAST和Abaqus计算载荷。首先使用固定基数的FAST中的风力涡轮机模型评估涡轮机转子上的空气动力学负载;然后,将这些转子空气动力负载作为点负载应用到由Abaqus中的夹套结构支撑的塔架模型的顶部。基于随机模拟,我们讨论了Abaqus护套模型的适用性,并描述了气动和流体动力效应对护套构件载荷的特性和比较。还讨论了与分析中使用的结构模型和土桩相互作用模型有关的细节。

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