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Nonlinear torsional vibrations of a wind turbine gearbox

机译:风力发电机齿轮箱的非线性扭转振动

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This paper studies the torsional vibrations of wind turbine gearbox having two planetary gear stages and one parallel gear stage. The nonlinear dynamic model developed considers the factors such as time-varying mesh stiffness, damping, static transmission error and gear backlash. Both the external excitation due to wind gust and the internal excitation due to static transmission error are included. With the help of time history, FFT spectrum, phase portrait, Poincare map and Lyapunov exponent, the effects of the static transmission error, mean-to-alternating force ratio and time-varying mesh stiffness on the dynamic behaviour of wind turbine gearbox components are investigated by using the numerical integration method. It is found that the external excitation has the most influence on the torsional vibrations of the wind turbine gearbox components. The mesh stiffness, being another significant factor, has more influence than the other internal excitation source, the static transmission error. The static transmission error has the least influence.
机译:本文研究了具有两个行星齿轮级和一个平行齿轮级的风力发电机齿轮箱的扭转振动。所开发的非线性动力学模型考虑了时变网格刚度,阻尼,静态传递误差和齿轮间隙等因素。包括由于阵风引起的外部激励和由于静态传输误差引起的内部激励。借助时间历史,FFT频谱,相图,庞加莱图和Lyapunov指数,静态传递误差,均值交流力比和时变网格刚度对风力涡轮机变速箱组件的动态性能产生了影响使用数值积分方法进行调查。发现外部激励对风力涡轮机变速箱组件的扭转振动影响最大。网格刚度是另一个重要因素,它比其他内部激励源(静态传递误差)的影响更大。静态传输错误的影响最小。

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