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首页> 外文期刊>Journal of Vibration and Acoustics >Parametric Resonances of a Three-Blade-Rotor System With Reference to Wind Turbines
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Parametric Resonances of a Three-Blade-Rotor System With Reference to Wind Turbines

机译:风力发电机组的三叶片转子系统参数共振

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Coupled blade-hub dynamics of a coupled three-blade-rotor system with parametric stiffness, which is similar to a horizontal-axis wind turbine, is studied. Blade equations have parametric and direct excitation terms due to gravity and are coupled through the hub equation. For a single degree-of-freedom blade model with only in-plane transverse vibrations, the reduced-order model shows parametric resonances. A small parameter is established for large blades, which enables us to treat the effect of blade motion as a perturbation on the rotor motion. The rotor speed is not constant, and the cyclic variations cannot be expressed as explicit functions of time. Therefore, it is more convenient to use the rotor angle as the independent variable. By expressing the system dynamics in the rotor angle domain and assuming small variations in rotor speed, the blade equations are decoupled from the rotor equation. The interdependent blade equations constitute a three-degree-of-freedom system with periodic parametric and direct excitation. The response is analyzed by using a first-order method of multiple scales (MMS). The system has a superharmonic and a subharmonic resonances due to direct and parametric effects introduced by gravity. Amplitude-frequency relations and stabilities of these resonances are studied. The MMS solutions are compared with numerical simulations for verification.
机译:研究了具有参数刚度的三叶片-转子耦合系统的叶片-轮毂动力学,该动力学类似于水平轴风力涡轮机。叶片方程由于重力而具有参数和直接激励项,并通过轮毂方程耦合。对于仅具有平面内横向振动的单自由度叶片模型,降阶模型显示出参数共振。为大叶片建立一个小参数,这使我们能够将叶片运动的影响视为对转子运动的扰动。转子速度不是恒定的,周期变化不能表示为时间的显式函数。因此,使用转子角作为自变量更为方便。通过在转子角域中表示系统动力学并假设转子速度有微小变化,叶片方程与转子方程解耦。相互依赖的叶片方程式构成具有周期参数和直接激励的三自由度系统。通过使用一阶多尺度(MMS)方法分析响应。由于重力引起的直接和参数效应,该系统具有超谐波和亚谐波谐振。研究了这些共振的幅频关系和稳定性。将MMS解决方案与数值模拟进行比较以进行验证。

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