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Optimal design of passive-adaptive pendulum tuned mass damper for the global vibration control of offshore wind turbines

机译:近海风力涡轮机全球振动控制的无源自适应摆型质量阻尼器的最优设计

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This paper presents an optimal design procedure for a pendulum tuned mass damper (PTMD) to mitigate the global structural vibrations of offshore wind turbines (OWTs) in the fore-aft and side-side directions. The procedure is tested to the design of a PTMD to be applied to the 5-MW benchmark baseline monopile wind turbine proposed by the National Renewable Energy Lab (NREL). The computation of wind and wave spectra, as well as the evaluation of the hydrodynamic and aerodynamic loads, is conducted by using an in-house built MATLAB (R) routine working together with an ANSYS (R) 3-D finite element (FE) global model for evaluating the resultant peak displacement response at the OWT hub by a power spectral density (PSD) analysis. In order to validate the OWT FEM model, a result comparison is made with the NREL OpenFAST, finding good matches between the two codes. An in-house built genetic algorithm (GA) toolbox, coded in MATLAB (R), is then used to optimally design the parameters of a PTMD with a simplified 2-degrees-of-freedom (2DOF) model. The chosen GA fitness function targets the minimization of the peak response of the primary structure as evaluated by the 2DOF model. The design parameters of the PTMD are the flexural rigidity and damping, the mass ratio and pendulum length. After the 3-D FE model of the OWT without any control device has been validated, and the PTMD has been optimized by the simplified 2DOF model, the performances of the PTMD are examined on a 3-D global FE OWT + PTMD model in ANSYS (R).
机译:本文介绍了摆锤调谐质量阻尼器(PTMD)的最佳设计步骤,以减轻前后和侧向方向上的海上风力涡轮机(OWTS)的全局结构振动。该程序经测试了PTMD的设计,以应用于国家可再生能源实验室(NREL)提出的5 MW基准纪式纪式风力涡轮机。通过使用内部内置的MATLAB(R)与ANSYS(R)3-D有限元(FE)一起使用,通过使用内部内置的MATLAB(R)常规来进行风波光谱的计算以及流体动力学和空气动力学载荷的评估。通过功率谱密度(PSD)分析来评估OWT集线器的所得峰位响应的全局模型。为了验证OWT FEM模型,结果比较是用NREN Openfast进行的,在两种代码之间找到良好的匹配。然后,在MATLAB(R)中编码的内部内置遗传算法(GA)工具箱,以通过简化的2次自由度(2DOF)模型来最佳地设计PTMD的参数。所选择的GA Fitnvent功能针对由2DOF模型评估的主要结构的峰值响应的最小化。 PTMD的设计参数是弯曲刚性和阻尼,质量比和摆锤长度。在没有任何控制设备的OWT的3-D FE模型之后,PTMD通过简化的2DOF模型进行了优化,在ANSYS的3-D全球FE OWT + PTMD模型上检查了PTMD的性能(r)。

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