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首页> 外文期刊>Journal of Tribology >Morton Effect Cyclic Vibration Amplitude Determination for Tilt Pad Bearing Supported Machinery
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Morton Effect Cyclic Vibration Amplitude Determination for Tilt Pad Bearing Supported Machinery

机译:斜垫轴承支承机械的莫顿效应循环振动幅值确定

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摘要

This paper presents theoretical models and simulation results for the synchronous, thermal transient, instability phenomenon known as the Morton effect. A transient analysis of the rotor supported by tilting pad journal bearing is performed to obtain the transient asymmetric temperature distribution of the journal by solving the variable viscosity Reynolds equation, a 2D energy equation, the heat conduction equation, and the equations of motion for the rotor. The asymmetric temperature causes the rotor to bow at the journal, inducing a mass imbalance of overhung components such as impellers, which changes the synchronous vibrations and the journal's asymmetric temperature. Modeling and simulation of the cyclic amplitude, synchronous vibration due to the Morton effect for tilting pad bearing supported machinery is the subject of this paper. The tilting pad bearing model is general and nonlinear, and thermal modes and staggered integration approaches are utilized in order to reduce computation time. The simulation results indicate that the temperature of the journal varies sinusoidally along the circumferential direction and linearly across the diameter. The vibration amplitude is demonstrated to vary slowly with time due to the transient asymmetric heating of the shaft. The approach's novelty is the determination of the large motion, cyclic synchronous amplitude behavior shown by experimental results in the literature, unlike other approaches that treat the phenomenon as a linear instability. The approach is benchmarked against the experiment of de Jongh.
机译:本文介绍了称为莫顿效应的同步热瞬态不稳定性现象的理论模型和仿真结果。通过求解可变粘度雷诺方程,二维能量方程,热传导方程和转子的运动方程,对倾斜垫轴颈轴承支撑的转子进行瞬态分析,以获得轴颈的瞬态非对称温度分布。 。温度的不对称会导致转子在轴颈处弯曲,从而导致悬垂部件(例如叶轮)的质量失衡,从而改变同步振动和轴颈的非对称温度。本文针对斜垫轴承支撑机械的周期振幅,莫顿效应引起的同步振动进行建模与仿真。倾斜垫轴承模型是通用的和非线性的,为了减少计算时间,采用了热模式和交错积分方法。仿真结果表明,轴颈的温度沿圆周方向呈正弦变化,并且沿直径呈线性变化。由于轴的瞬态不对称加热,振动幅度随时间变化缓慢。该方法的新颖之处在于可以确定文献中实验结果所示的大运动,周期性同步振幅行为,这与其他将现象视为线性不稳定性的方法不同。该方法以de Jongh的实验为基准。

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