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Dynamic characteristics of self-acting gas bearing-flexible rotor coupling system based on the forecasting orbit method

机译:基于预测轨道法的自作用气轴承-挠性转子耦合系统的动力特性

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This paper studies the nonlinear dynamic characteristics of a flexible rotor supported by self-acting gas bearings theoretically. The multiple degree freedom model of flexible rotor is established by the finite element method and analyzed coupled with the transient gas lubricated Reynolds equation by employing the forecasting orbit method. The Reynolds equation is solved by the alternating direction implicit method and the dynamic response of the rotor is calculated by the Newmark integral method. To settle the problem that the two kinds of transient solving processes (transient Reynolds equation for bearing and transient equation of motion for rotor) cannot be solved simultaneously, which arises from the fact that they need each other's results as their initial values, the multi-field coupling algorithm based on the forecasting method is proposed and applied in this paper. By employing the numerical method, the rotor trajectory diagram, phase diagram, frequency spectrum, power spectrum, bifurcation diagram, and vibration mode diagram were obtained. It is to note that the dynamic characteristics of self-acting gas bearing-rotor system and whirling instability of the system could be depicted successfully. This would establish the foundation for contributing to a further understanding of the gas bearing-flexible rotor system.
机译:本文从理论上研究了自作用气体轴承支撑的挠性转子的非线性动力学特性。通过有限元方法建立了柔性转子的多自由度模型,并采用预测轨道法结合瞬态气体润滑雷诺方程进行了分析。雷诺方程通过交变方向隐式方法求解,转子的动态响应通过纽马克积分方法计算。为了解决无法同时求解两种瞬态求解过程(轴承的瞬态雷诺方程和转子的运动瞬态方程)的问题,这是由于它们需要彼此的结果作为初始值,提出并应用了基于预测方法的现场耦合算法。采用数值方法,得到了转子的轨迹图,相位图,频谱图,功率谱图,分叉图和振动模式图。值得注意的是,可以成功地描绘出自作用气体轴承-转子系统的动态特性和系统的旋转不稳定性。这将为进一步理解气体轴承-柔性转子系统奠定基础。

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