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Numerical Analysis of Coupled Lateral and Torsional Vibrations of a Vertical Unbalanced Rotor

机译:垂直不平衡转子耦合横向和扭转振动的数值分析

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A model for the coupled lateral and torsional vibrations of a vertical unbalanced rotor is developed. The equation of motion is obtained using Lagrangian dynamics without considering the external actuating forces and torque. The equation showed coupling and nonlinear interaction between the rotor lateral and torsional vibrations. Most of the earlier work on coupled vibrations has been done for the horizontal rotor model. The coupled vibrations for a vertical rotor have not been reported in the past. An attempt is made to reveal dynamic characteristics of vertical rotor. The results of the simulation showed the coupled between torsional and lateral vibrations is induced by mass eccentricity. Coupled vibrations have appeared in the start period of the vibration. After a transient vibration process, the vibrations are not coupling. The lateral vibration becomes equal amplitude with shafting speed. And the torsional vibration keeps on attenuating until it stops. When the vibration is coupled, the coupling effect on which torsional vibration to lateral vibration is evident. But there's no coupling effect on the lateral to the torsional. It is also shown that for some operational parameters, the controlling action may excite large lateral vibrations due to coupling with the torsional motion.
机译:开发了一种用于垂直不平衡转子的耦合横向和扭转振动的模型。使用拉格朗日动力学获得运动方程,而不考虑外部致动力和扭矩。等式显示转子横向和扭转振动之间的耦合和非线性相互作用。已经为水平转子模型完成了耦合振动的大部分工作。尚未报道垂直转子的耦合振动。尝试揭示垂直转子的动态特性。模拟结果表明,通过质量偏心诱导扭转和横向振动之间的耦合。耦合振动在振动的开始时段中出现。在瞬态振动过程之后,振动不耦合。横向振动与轴向速度变得相同的幅度。并且扭转振动保持衰减,直到它停止。当振动耦合时,显而易见的是横向振动的扭转振动的耦合效应。但对扭矩的横向没有耦合效应。还表明,对于一些操作参数,控制动作可以激发由于与扭转运动的耦合而引起的大的横向振动。

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