5MW海上风力发电机重力子结构结构分析

Min-Su Park, Y. Jeong, Y. You
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摘要

特别是海上风力发电以其巨大的能源容量和无限的能源应用增长潜力而受到许多国家的重视。海上风力发电机的下部结构受波浪力的影响很大,因为塔架和转子机舱的尺寸会变大,以增加风力发电机的总发电量。因此,准确计算作用在子结构上的波浪力是十分重要的。本文采用三维线性势理论的本征函数展开法来计算波浪力。将Morison方程得到的波浪力与本研究得到的波浪力进行比较,以便在子结构相对于波长较小的情况下,比较衍射理论与Morison方程。本文还介绍了作用在子结构上的波浪上升。利用本研究得到的波浪力,通过ANSYS力学软件对重力子结构进行结构分析。对结构的强度和变形行为进行了评估,以研究重力子结构的最终结构安全性和使用性能。此外,还对风力机与重力子结构之间的共振进行了模态分析。结果表明,所提出的重力子结构可以作为5MW海上风力发电机的有效子结构。
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Structural analysis of a gravity substructure for 5MW offshore wind turbines
The offshore wind power generation especially has gained attention from many countries because of its huge amount of energy and infinite growth potential of application of its energy. The substructure for offshore wind turbines is strongly influenced by the effect of wave forces since the size of a tower and a rotor-nacelle becomes larger to increase the gross generation of wind turbines. Therefore, it is very important to accurately calculate the wave force acting on substructures. In the present study Eigen-function expansion method with using three-dimensional linear potential theory is used to evaluate the wave forces. The comparison between wave forces obtained from Morison equation and wave forces obtained from this study is made to compare the diffraction theory with Morison equation in case of the small substructure compared to the wave length. The wave run-up acting on the substructure is also presented. Using the wave forces obtained from this study, the structural analysis of the gravity substructure is carried out through ANSYS mechanical. The structural behaviors of the strength and deformation are evaluated to investigate an ultimate structural safety and serviceability of gravity substructure. Moreover, the modal analysis is carried out to investigate the resonance between the wind turbine and the gravity substructure. It is found that the suggested gravity substructure can be an effective substructure for 5MW offshore wind turbines.
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