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Nonlinear dynamic behavior and bifurcation analysis of a rigid rotor supported by a relatively short externally pressurized porous gas journal bearing system

机译:相对短的外部加压多孔气体轴颈轴承系统支撑的刚性转子的非线性动力学行为和分叉分析

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摘要

A numerical analysis of a rigid rotor supported by relatively short externally pressurized porous gas journal bearings is presented for nonlinear dynamic behavior and bifurcation. The compressible Reynolds' equation is solved by the finite differences method, and the successive over relaxation method and a time-dependent mathematical model for porous gas journal bearings are studied. A comparison of the results for the system state trajectory, Poincare maps, power spectra, and bifurcation diagrams is made, and the dynamic behavior of the rotor center in the horizontal and vertical directions under different operating conditions is analyzed. The analysis shows the existence of a complex dynamic behavior comprising periodic and quasi-periodic response of the rotor center. This paper shows how the dynamic behavior of this type of system varies with changes in rotor mass and bearing number.
机译:提出了由相对短的外部加压多孔气体轴颈轴承支撑的刚性转子的非线性动力学行为和分叉的数值分析。利用有限差分法求解可压缩的雷诺方程,研究了多孔气体轴颈轴承的逐次过松弛法和时变数学模型。比较了系统状态轨迹,庞加莱图,功率谱和分叉图的结果,并分析了在不同工作条件下转子中心在水平和垂直方向上的动态行为。分析表明存在复杂的动力学行为,其中包括转子中心的周期性和准周期性响应。本文显示了这种系统的动态行为如何随转子质量和轴承数量的变化而变化。

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