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Numerical continuation applied to nonlinear rotor dynamics

机译:应用于非线性转子动力学的数值延续

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Besides the synchronous oscillations due to unbalance, high-speed rotors in oil film bearings are known to show whirl/whip instabilities which exhibit various types of subsynchronous oscillations. Here, the methods of numerical continuation are applied to study the subsynchronous oscillations in detail. The main scope is to analyze the stability and bifurcation behavior of the unbalanced Laval/Jeffcott rotor supported in semi-floating ring bearings. Characteristic bifurcation scenarios prove the existence of two different types of Hopf bifurcations which represent whirl/whip instabilities due to the inner or the outer oil films. Furthermore, it is shown that the critical limit cycle of non-tolerable amplitude is born at a saddle-node bifurcation. Finally, the influence of unbalance on the subsynchronous oscillations is investigated by tracing the occurring bifurcations in the parameter plane of the unbalance load and the rotor speed. The obtained bifurcation curves provide extended stability charts which illustrate the global solution behavior of the considered rotor bearing systems.
机译:除了由于不平衡引起的同步振荡之外,还已知油膜轴承中的高速转子显示旋转/鞭型稳定性,其呈现各种类型的次生振荡。这里,应用数值延续的方法来详细地研究次同步振荡。主要范围是分析在半浮环轴承中支撑的不平衡拉瓦尔/ Jeffcott转子的稳定性和分叉行为。特征分叉场景证明了两种不同类型的Hopf分叉的存在,其代表由于内部或外部油膜引起的旋转/鞭型无限度。此外,示出了不可允许幅度的临界极限循环出生在鞍座节点分叉处。最后,通过在不平衡负荷的参数平面和转子速度的参数平面中跟踪发生的分叉来研究不平衡对次同步振荡的影响。所获得的分叉曲线提供扩展的稳定性图表,其示出了所考虑的转子轴承系统的全局解决方案行为。

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