首页> 外文会议>ASME Turbo Expo vol.4; 20050606-09; Reno-Tahoe,NV(US) >A NONLINEAR ANALYSIS OF THE AXIAL STEADY STATE RESPONSE OF THE HYDRODYNAMIC THRUST BEARING-ROTOR SYSTEM SUBJECTED TO A HARMONIC EXCITATION
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A NONLINEAR ANALYSIS OF THE AXIAL STEADY STATE RESPONSE OF THE HYDRODYNAMIC THRUST BEARING-ROTOR SYSTEM SUBJECTED TO A HARMONIC EXCITATION

机译:谐波激励下水动力推力轴承-转子系统轴向稳态响应的非线性分析

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The purpose of this study is to investigate the nonlinear axial response of a thrust bearing-rotor system, which is subjected to an axial harmonic force. For the axial vibration of the rotor, the system forces include the external axial harmonic force and the reacting oil film forces, which are obtained by solving a time-dependent Reynolds Equation within the thrust pads of the thrust bearing. The time-dependent Reynolds Equation is solved by a finite difference method, and the system equation of motion is solved by the fourth-order Runge-Kutta method. A linear analysis is attempted in to evaluate its suitability for the situation under consideration. And the bearing stiffness and damping coefficients are investigated with parameters including the dimensionless wedge thickness, the initial oil film thickness and the rotor spin speed. The results show that the average steady state response will decrease as the harmonic axial force intensifies its fluctuating magnitude. The results also indicate that it will induce ultra-super harmonics when the axial harmonic force intensifies its fluctuating magnitude.
机译:这项研究的目的是研究承受轴向谐波力的推力轴承-转子系统的非线性轴向响应。对于转子的轴向振动,系统力包括外部轴向谐波力和反作用油膜力,这是通过在推力轴承的推力瓦块内求解时间相关的雷诺方程获得的。时间相关的雷诺方程通过有限差分法求解,运动系统方程通过四阶Runge-Kutta方法求解。尝试进行线性分析以评估其对所考虑情况的适用性。并利用无量纲楔形厚度,初始油膜厚度和转子旋转速度等参数研究了轴承刚度和阻尼系数。结果表明,平均稳态响应会随着谐波轴向力的增大而减小。结果还表明,当轴向谐波力增大其波动幅度时,它将产生超超谐波。

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