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Accounting for hydroelasticity in the analysis of offshore wind turbine spar-type platforms

机译:核对海洋风力涡轮机旋转型平台分析中的水力弹性核算

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摘要

In this paper, linear frequency-domain hydroelastic analysis is performed to investigate the behavior of the spar-type supporting platform of a floating offshore wind turbine, considering the platform's flexibility. A "dry" mode superposition approach is used, wherein the flexible mode shapes are determined through the application of a finite element method (FEM)-based structural model. The diffraction/radiation problem is solved by using the boundary integral equation method. Focus is given to the flexible modes' generalized hydrodynamic forcing and responses, the spar's hydroelastic response, and the coupling effects between the flexible and the rigid-body modes. For irregular waves, the effect of the peak period on the response spectra and the hydroelastic response is analyzed.
机译:在本文中,考虑到平台的灵活性,进行了线性频率域液压加强分析,以研究浮动海上风力涡轮机的翼梁型支撑平台的行为。 使用“干”模式叠加方法,其中通过应用有限元方法(FEM)结构模型来确定柔性模式形状。 利用边界积分方程方法解决了衍射/辐射问题。 焦点是柔性模式的广义式流体动力学强制和响应,柔性水力弹性响应,以及柔性和刚体模式之间的耦合效应。 对于不规则波,分析了峰期对响应光谱和水力弹性响应的影响。

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