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Nonlinear Oscillations of High-Speed Rotor Systems in Semi-Floating Ring Bearings

机译:半浮环轴承高速转子系统的非线性振动

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Semi-floating ring bearings are preferred to be incorporated in high-speed rotor systems since they usually provide a better vibration and damping behavior than full-floating ring bearings. Nevertheless, such rotor bearing systems can show whirl/whip instabilities as well which lead to subsynchronous oscillations in addition to synchronous oscillations due to unbalance. Moreover, a critical bifurcation can take place into a regime of subsynchronous oscillations with extremely high amplitudes which resembles Total Instability known from investigations of full-floating ring bearings. To illustrate the various types of subsynchronous oscillations, different rotor models are investigated under the influence of semi-floating ring bearings. First, transient run-up simulations are performed to outline the nonlinear phenomena. Then, the stability and bifurcation behavior is analyzed in detail by using the methods of numerical continuation.
机译:半浮动环轴承优选地结合在高速转子系统中,因为它们通常提供比全浮环轴承更好的振动和阻尼行为。然而,这种转子轴承系统可以示出旋转/鞭型不稳定性,除了由于不平衡引起的同步振荡之外,除了同步振荡之外,还可以导致离子同步振荡。此外,临界分叉可以进入具有极高振幅的次同步振荡的制度,其类似于从全浮环轴承的研究中已知的总不稳定性。为了说明各种类型的子同步振荡,在半浮环轴承的影响下研究了不同的转子模型。首先,执行瞬态加速模拟以概述非线性现象。然后,通过使用数值延续的方法详细分析稳定性和分叉行为。

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