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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Dynamic Modeling and Analysis of a Wind Turbine Drivetrain Using the Torsional Dynamic Model
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Dynamic Modeling and Analysis of a Wind Turbine Drivetrain Using the Torsional Dynamic Model

机译:风力机动力传动系统的动力学模型动态建模与分析

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摘要

A mathematical model for a horizontal axial wind turbine drivetrain was developed using the torsional multibody dynamic model. The drivetrain in this study consisted of a low-speed planetary gear stage (three identical planets with spur teeth, sun and fixed ring gears) and two high-speed spur gear stages. This typical arrangement has been commonly used in the wind turbine industry. The governing equation of the drivetrain was derived by using the Lagrange's equation, which takes into account the kinetic and potential energies and the work from the input torque. The governing equation was solved numerically by direct numerical integration. Dynamic analysis was carried out to investigate the transient response of the drivetrain system.
机译:使用扭转多体动力学模型开发了水平轴流式风力涡轮机传动系统的数学模型。本研究中的动力传动系统由一个低速行星齿轮级(三个具有直齿,太阳轮和固定齿圈的相同行星)和两个高速正齿轮级组成。这种典型的布置已在风力涡轮机行业中普遍使用。传动系统的控制方程式是通过使用拉格朗日方程式得出的,该方程式考虑了动能和势能以及输入扭矩产生的功。通过直接数值积分对控制方程进行数值求解。进行了动力学分析以研究传动系统的瞬态响应。

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