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Chaotic and Subharmonic Motion Analysis of Floating Ring Gas Bearing System by Hybrid Numerical Method

机译:浮动环气体轴承系统的混沌与次谐波运动混合数值分析。

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This paper studies the nonlinear dynamic behaviors including chaotic, subharmonic, and quasi-periodic motions of a rigid rotor supported by floating ring gas bearing (FRGB) system. A hybrid numerical method combining the differential transformation method and the finite difference method used to calculate pressure distribution of FRGB system and rotor orbits. The results obtained for the orbits of the rotor center are in good agreement with those obtained using the traditional finite difference approach. Moreover, the hybrid method avoids the numerical instability problem suffered by the finite difference scheme at low values of the rotor mass and computational time-step. Moreover, power spectra, Poincare maps, bifurcation diagrams and Lyapunov exponents are applied to examine the nonlinear dynamic response of the FRGB system over representative ranges of the rotor mass and bearing number, respectively. The results presented summarize the changes which take place in the dynamic behavior of the FRGB system as the rotor mass and bearing number are increased and therefore provide a useful guideline for the bearing system.
机译:本文研究了由浮动环气体轴承(FRGB)系统支撑的刚性转子的非线性动力学行为,包括混沌,次谐波和准周期运动。一种结合了微分变换法和有限差分法的混合数值方法,用于计算FRGB系统和转子轨道的压力分布。转子中心轨道获得的结果与使用传统有限差分法获得的结果非常吻合。此外,该混合方法避免了在转子质量较低和计算时间步长较低时有限差分方案所遭受的数值不稳定问题。此外,分别使用功率谱,庞加莱图,分叉图和Lyapunov指数来检查FRGB系统在转子质量和轴承数量的代表性范围内的非线性动态响应。呈现的结果总结了随着转子质量和轴承数量的增加,FRGB系统的动态行为发生的变化,因此为轴承系统提供了有用的指导。

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  • 来源
    《Mathematical Problems in Engineering》 |2013年第6期|145716.1-145716.14|共14页
  • 作者单位

    Department of Mechanical Engineering, Far East University, Hsin-Shih, Tainan 74448, Taiwan;

    Department of Electrical Engineering, National Chin-Yi University of Technology, Taiping, Taichung 41170, Taiwan;

    Department of Mechanical and Computer-Aided Engineering, Feng Chia University, Seatwen, Taichung 40724, Taiwan;

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