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Nonlinear dynamic modeling of a simple flexible rotor system subjected to time-variable base motions

机译:经过时间可变基础运动的简单柔性转子系统的非线性动态建模

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Rotor systems carried in transportation system or under seismic excitations are considered to have a moving base. To study the dynamic behavior of flexible rotor systems subjected to time-variable base motions, a general model is developed based on finite element method and Lagrange's equation. Two groups of Euler angles are defined to describe the rotation of the rotor with respect to the base and that of the base with respect to the ground. It is found that the base rotations would cause nonlinearities in the model. To verify the proposed model, a novel test rig which could simulate the base angular movement is designed. Dynamic experiments on a flexible rotor-bearing system with base angular motions are carried out. Based upon these, numerical simulations are conducted to further study the dynamic response of the flexible rotor under harmonic angular base motions. The effects of base angular amplitude, rotating speed and base frequency on response behaviors are discussed by means of FFT, waterfall, frequency response curve and orbits of the rotor. The FFT and waterfall plots of the disk horizontal and vertical vibrations are marked with multiplications of the base frequency and sum and difference tones of the rotating frequency and the base frequency. Their amplitudes will increase remarkably when they meet the whirling frequencies of the rotor system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在运输系统或地震激发下携带的转子系统被认为具有移动基座。为了研究经过时间可变基础运动的柔性转子系统的动态行为,基于有限元方法和拉格朗日等式开发了一般模型。定义两组欧拉角度以描述转子相对于基部的旋转和基座的旋转相对于地面。发现基础旋转将导致模型中的非线性。为了验证所提出的模型,设计了一种新型测试装置,可以模拟基座角运动。进行了基座角运动的柔性转子系统上的动态实验。基于这些,进行数值模拟以进一步研究柔性转子在谐波角基运动下的动态响应。通过FFT,瀑布,频率响应曲线和转子的频率响应曲线和轨道讨论基部角振幅,旋转速度和基础频率对响应行为的影响。磁盘水平和垂直振动的FFT和瀑布图标记为乘坐旋转频率和基本频率的基本频率和差调的乘法。当它们符合转子系统的旋转频率时,它们的幅度将显着增加。 (c)2017 Elsevier Ltd.保留所有权利。

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