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Preliminary evaluation of monopile foundation dimensions for an offshore wind turbine by analyzing hydrodynamic load in the frequency domain

机译:通过分析频域中的水动力载荷来初步评估海上风机的单桩基础尺寸

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摘要

Although design of offshore wind turbines has many similarities to that of onshore turbines, a lot of considerations should be made for the additional substructure imposed on hydrodynamic loads. The additional substructure prolongs the total tower length, increasing the tower bending moment and lowering the natural bending frequencies of the tower. Accordingly, system dynamic analyses associated with hydrodynamic load should be performed in the frequency domain in order to avoid bending modes of tower from the operation frequency ranges. In this paper, a method to generate hydrodynamic load for a finite element analysis is introduced, considering the characteristics of sea conditions for a candidate site of demonstration offshore wind farm in the west sea of Korea. In addition, a wind energy conversion system with a monopile foundation is fully modeled using the finite element method to simulate the various conditions based on IEC standard. Based on the FEM analyses of tower bending modes, optimal dimensions of the monopile for the candidate site are proposed.
机译:尽管海上风力涡轮机的设计与陆上风力涡轮机的设计有很多相似之处,但对于施加在水力负载上的附加下部结构,仍应作很多考虑。附加的子结构延长了塔架的总长度,增加了塔架的弯矩,并降低了塔架的自然弯曲频率。因此,应在频域中进行与水动力负载相关的系统动力学分析,以避免塔架在工作频率范围内发生弯曲模式。本文考虑了韩国西海示范海上风电场候选地点的海况特点,介绍了一种用于有限元分析的产生动水载荷的方法。此外,基于IEC标准,使用有限元方法对具有单桩基础的风能转换系统进行了完全建模,以模拟各种条件。基于塔架弯曲模式的有限元分析,提出了候选场地单桩的最佳尺寸。

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