随机环境条件下海上风力发电机的可控动力分析——实验研究

R. Manikandan
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引用次数: 0

摘要

如今,海上风力涡轮机被用来将风速转化为电能。最近的发展包括在近海安装风力涡轮机。单桩、三脚架和3或4腿夹套平台主要用于安装涡轮机。本文对安装在固定夹套平台上的海上风力机进行了试验分析。目前研究中使用的是一个四脚平台。采用有限元法对夹套进行了数值分析。通过对代码结果的比较研究,最终确定了结构。制作了一个按比例缩小的钢护套模型。一个按比例缩小的风力涡轮机模型安装在夹克的顶部。夹套和涡轮机是一个整体。作用在涡轮机上的任何力或动量都传递给导管套,反之亦然。整个装置安装在能够产生规则波和随机波的波池中。波池长30m,宽30m,水深3.0m。一端为襟翼式波发生器,用于产生波,另一端为吸波器,用于吸收波,防止反射。报告了在各种荷载条件下作用在结构上的力和力矩。计算结果包括作用于夹套支撑结构底部的力随不同波浪参数变化的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controlled dynamic analysis of offshore wind turbines under random environmental conditions-An experimental investigations
Offshore wind turbines are used now-a-days to tap and convert the wind speed to electrical energy. Recent developments include installation of wind turbines in offshore seas. Monopiles, Tripods and 3- or 4-legged jacket platforms are largely used for mounting the turbine. This paper deals with the experimental analysis of an offshore wind turbine mounted over a fixed jacket platform. A 4-legged platform is currently used for the present study. Finite element methods are used for the numerical analysis of the Jacket. Code to code comparison of the results is studied to finalize the structure. A scaled down model of a steel jacket is fabricated. A scaled down model of a wind turbine is mounted on top of the jacket. The jacket and the turbine act as an integral unit. Any force or momentum acting on the turbine is transferred to the jacket and vice versa. The whole setup is installed in a wave basin capable of generating regular and random waves. The wave basin is of the size 30m length by 30m width with a water depth of 3.0m. Flap type wave generator is located at one end for wave generation and absorbers are installed on the side ends for absorbing the waves to prevent the reflection. The forces and moments acting on the structure under various loading conditions are reported. The results include the variation of the forces acting at the base of the jacket support structure with respect to the variation in different wave parameters.
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