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首页> 外文期刊>Journal of Mechanical Science and Technology >Dynamic modeling and analysis for transmission system of high-power wind turbine gearbox
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Dynamic modeling and analysis for transmission system of high-power wind turbine gearbox

机译:大功率风力发电机齿轮箱传动系统动力学建模与分析

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摘要

As a key component to adjust the speed and torque, double-fed speed up gearbox plays a vital role in reliability and stability for the wind turbine system. Considering the base helix angle, normal pressure angle, position angle, rotation of carrier and the mesh of the ring gear and planet gear, a coupled dynamic model for high-power wind turbine gearbox transmission system, which consists of two helical planetary stages and one helical gear stage was established using the lumped parameter method in this paper. Numerical integration applying the explicit 4/5th order Runge-Kutta algorithm was used to solve the proposed model and the dynamic responses of transmission system were investigated. Results show that the modal frequencies for the system are not coincided with the gear mesh frequencies of the stages. Then, the dynamic mesh forces of the 1(st) stage in different models are compared and analyzed in frequency domain.
机译:作为调节速度和扭矩的关键组件,双馈变速箱对风力涡轮机系统的可靠性和稳定性起着至关重要的作用。考虑到基本螺旋角,法向压力角,位置角,行星架的旋转以及齿圈和行星齿轮的啮合,为大功率风力发电机齿轮箱传动系统提供了一个耦合动力学模型,该模型包括两个螺旋行星级和一个本文采用集总参数法建立了斜齿轮传动级。应用显式4/5阶Runge-Kutta算法进行数值积分,对所提出的模型进行求解,并对传输系统的动力响应进行了研究。结果表明,系统的模态频率与各级的齿轮啮合频率不一致。然后,在频域上比较和分析了不同模型中第一阶段的动态啮合力。

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