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Influence of foundation model complexity on the design loads for offshore WTG on jacket foundation

机译:基础模型复杂性对护套基础海上风电机组设计荷载的影响

摘要

The present work investigates the influence of using different ways of interfacing wind turbine model and foundation on loads in the combined structure. In the design procedure for offshore wind turbines it is common that foundation and wind turbine design loads are obtained in two sequential steps where firstly; the wind turbine designer defines the interface forces and moments in the interface point to the foundation based on either fixed or flexible boundary condition at the interface, and secondly; the foundation designer then uses those loads combined with additional wave and current forces to obtain the design loads for the foundation. The dynamic interaction between the wind turbine and foundation is left out in that procedure. Herein, three different design methodologies are applied to the same offshore wind turbine with identical turbulent wind (18 m/s) and irregular waves (Hs=6 m/Tp=10 s). The 5MW NREL reference turbine [1] on a jacket foundation from IEA Wind Task 30 OC4 [2] is used, and the differences in the design loads are compared using the aeroelastic code, HAWC2 [3].
机译:本工作研究了采用不同方式连接风力涡轮机模型和基础的方式对组合结构中的载荷的影响。在用于海上风力涡轮机的设计程序中,通常通过两个连续步骤来获得基础和风力涡轮机的设计载荷,首先:风力涡轮机设计人员根据界面处的固定边界条件或弹性边界条件,定义界面指向基础的界面力和力矩,其次。然后,基础设计人员将这些载荷与附加的波浪力和电流力结合使用,以获得基础的设计载荷。在该过程中,忽略了风力涡轮机和基础之间的动态相互作用。在此,将三种不同的设计方法应用于具有相同湍流风(18 m / s)和不规则波(Hs = 6 m / Tp = 10 s)的同一海上风力涡轮机。使用了IEA Wind Task 30 OC4 [2]的外套基础上的5MW NREL参考涡轮[1],并使用航空弹性代码HAWC2 [3]比较了设计载荷的差异。

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