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DYNAMIC RESPONSE OF THE VERTICAL ROTOR SYSTEM TO BASE EXCITATION

机译:垂直转子系统对基础激励的动态响应

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The physical model of a high-speed vertical rotating machine was taken as the example. The motion differential equations of the rotor system were established by the Lagrange equation and numerically solved by the Wilson-θ method. The whirling characteristics of the rotor excited by the base's harmonic motions have been analyzed. The whirling directions are different between the rotor's upper and lower ends. And the whirling characteristics of the rotor vary with the frequency of the base's motion. Besides, there exists such a region of the rotor's rotary speed, in which the whirling characteristics and amplitudes of the rotor system are relatively steady, so the aseismic tests at a certain lower speed can be done to examine the aseismic capability of the rotor system at operating speed.
机译:作为示例采用高速垂直旋转机的物理模型。通过拉格朗日方程建立转子系统的运动微分方程,并由Wilson-θ方法进行数值求解。已经分析了由基部谐波运动激发的转子的旋转特性。转子的上端和下端之间的旋转方向是不同的。转子的旋转特性随着底座运动的频率而变化。此外,存在转子旋转速度的这样的区域,其中转子系统的旋转特性和幅度相对稳定,因此可以进行特定较低速度的抗空测试以检查转子系统的抗烈能力运行速度。

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