标题: | 大型复合材料风力叶片设计与疲劳寿命分析 Fatigue Life Analysis and Design of Large Composite Wind Blades |
作者: | 李俊佑 金大仁 Li, Jyun-You Kam, Tai-Yan 机械工程系所 |
关键字: | 疲劳;复合材料风力叶片;fatigue;composite wind blades |
公开日期: | 2016 |
摘要: | 本研究之目的为探讨长度为四十米之大型风力叶片的疲劳寿命行为,而疲劳寿命之评估结果将与真实风机维修时程做比较。 疲劳寿命评估流程中,将风力分为两种风速状态分别作用于叶片上,即为风速稳定与风速变化两种情况。风速稳定时利用韦伯分布得到四季的风速与机率分布关系,透过各风速的机率分布,可计算得到各风速所持续的时间,并透过翼尖速度比算得叶片旋转之圈数,再将叶片考虑重力、风力与离心力后进行有限元素的分析,得到叶片旋转一圈所受到的应力值,找出各风速下最大的应力,并将此应力代入古德曼图与线性累积损伤公式,计算叶片的累积损伤以估算疲劳寿命。风速持续变化的状态,则透过快速傅立叶转换,得到不同频率的正弦波所合成的平均风速与振幅风速,透过分析得叶片之应力,再用如风速稳定之计算方法,计算其疲劳损伤值。 疲劳分析之结果可用于规画真实风机叶片之运作及维修时程,透过定期维护与检修,可延续风机叶片之寿命。 The purpose of the thesis is to establish a method for assessing the fatigue life of 40-meter large wind turbine blade. The correlation between the estimated fatigue life results and the real operation condition of wind blades is discussed. In the process of fatigue life assessment, wind speed is decomposed into two parts, namely, steady and variable wind speeds. Under steady wind speed, Weibull distribution is used to model the distributions of the wind data at different seasons. The number of blade rotation at each season is calculated. The blade finite element analysis is undertaken with the consideration of gravitational loading, wind loading and centrifugal force. The stress information is then used to assess the fatigue damage in the blade based on the Goodman diagram and Miner’s rule. Under variable wind speed, the averages and amplitudes of wind speeds at different frequencies are determined through Fast Fourier Transform. Through the analysis of stresses in the blade, using the similar method adopted for the case of steady wind speed, the cumulative damage is calculated. The results of fatigue life assessment can be applied to the real condition for planning blade operation and maintenance program. Through periodical maintenance, the fatigue life of a wind turbine blade can be extended. |
URI: | http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070351060 http://hdl.handle.net/11536/140001 |
显示于类别: | Thesis |