海上浮式风力机运动及水弹性分析

A. Lamei, M. Hayatdavoodi, C. Wong, B. Tang
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引用次数: 3

摘要

本文研究了浮式海上风力机在波浪荷载作用下的运动分析和水弹性响应。新颖的浮动结构,由预应力混凝土制成,设计用于支撑多个风力涡轮机,并根据环境荷载旋转以面对来风。浮动结构与系泊线相连,该系泊线允许结构根据环境载荷进行旋转。浮动结构是一个等边三角形平台。风力涡轮机位于顶点。由于结构的尺寸特性,浮动平台的弹性在其动力学中起着重要的作用。虽然结构的动力响应是由气动和水动力载荷共同驱动的,但本研究只关注了新型浮式结构在水动力载荷作用下的运动和弹性响应。在线性系泊载荷作用下,采用格林函数法的常面板法得到浮式结构的三维水动力载荷。对结构的弹性响应进行了有限元分析计算。利用专为刚柔体线性动力分析编写的HYDRAN程序,在频域上进行了整体线性结构-流固耦合问题的计算。本文给出的结果包括刚体和柔体对不同频率和方向的入射波的响应幅度算子。同时给出了浮体上的波动应力和弹性变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On Motion and Hydroelastic Analysis of a Floating Offshore Wind Turbine
This study is concerned with motion analysis and hydroelastic response of a floating offshore wind turbine to wave loads. The novel floating structure, made of prestressed concrete, is designed to support multiple wind turbines, and it rotates according to the environmental loads to face the incoming wind. The floating structure is attached to a mooring line that allows the rotation of the structure in response to the environmental loads. The floating structure is an equilateral triangular platform. The wind turbines are located at the vertices. Due to the dimensional characteristics of the structure, elasticity of the floating platform plays an important role in its dynamics. While the dynamic response of the structure is driven by both aerodynamic and hydrodynamic loads, this study focuses on the motion and elastic response of the novel floating structure to the hydrodynamic loads only. The three dimensional hydrodynamic loads on the floating structure are obtained by use of the constant panel approach of the Green function method, subject to linear mooring loads. A finite element analysis is carried out for the calculation of the elastic response of the structure. Computations of the integrated linear structure-fluid-structure interaction problem are performed in frequency domain using HYDRAN, a computer program written for the linear dynamic analysis of rigid and flexible bodies. Results presented here include the response amplitude operators of both the rigid and flexible bodies to incoming waves of various frequencies and directions. Also presented are the wave-induced stresses on the floating body, and the elastic deformations.
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