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Mechanical Characteristics of Some Deepwater Floater Designs for Offshore Wind Turbines

机译:海上风力发电机一些深水浮子设计的机械特性

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This paper presents an initial study of the mechanical characteristics of some deepwater floater designs for offshore wind turbines. Three different concepts (NREL TLP, Dutch Tri-floater, and Japanese SPAR) are summarized, based on data from the available studies. A 5 MW Horizontal Axis Wind Turbine is used for the reference wind turbine and the steady wind load is calculated from the Blade Element Momentum method. These three concepts are simplified to 2D models and the static analyses of NREL TLP and Dutch Tri-floater are compared. The 2D NREL TLP model is selected for dynamic analysis, in which: (1) regular and irregular wave loads are calculated from the Morison equation for the relative motions in the time domain; (2) Airy's linear wave theory is applied to compute the wave kinematics; (3) The 10-minutes irregular waves are realized from the JONSWAP spectrum. For comparison, the same 2D NREL TLP floater model is also developed and implemented as a subsystem in the wind turbine simulation program, HAWC. The HAWC results are compared with those from our model.
机译:本文介绍了一些用于海上风力涡轮机的深水浮子设计的机械特性的初步研究。根据现有研究的数据,总结了三种不同的概念(NREL TLP,荷兰三叶草和日本SPAR)。 5 MW水平轴风力涡轮机用作参考风力涡轮机,并且稳定风荷载是通过叶片单元动量法计算得出的。将这三个概念简化为2D模型,并比较了NREL TLP和Dutch Tri-floater的静态分析。选择二维NREL TLP模型进行动态分析,其中:(1)根据时域的相对运动,根据莫里森方程计算规则和不规则的波浪荷载; (2)运用艾里线性波理论计算波运动学; (3)从JONSWAP光谱中获得了10分钟的不规则波。为了进行比较,还开发了相同的2D NREL TLP浮子模型并将其实现为风力涡轮机仿真程序HAWC中的子系统。将HAWC结果与我们模型中的结果进行比较。

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