首页> 外文会议>The 7th International Symposium on Transport Phenomena and Dynamics of Rotating Machinery ISROMAC-7 >Transition to Fluid-Induced Limit Cycle Self-Excited Vibrations of a Rotor and Instability Threshold 'Hysteresis'
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Transition to Fluid-Induced Limit Cycle Self-Excited Vibrations of a Rotor and Instability Threshold 'Hysteresis'

机译:过渡到转子的流体诱导极限循环自激振动和不稳定阈值“滞后”

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The transient process which starts at the instability threshold of a rotor rotating in a fluid environment, and ends up in the limit cycle of self-excited vibrations known as fluid whirl or fluid whip, is discussed in this paper. A one-lateral-mode, isotropic, nonlinear model of the rotor with fluid interaction allows for exact particular solutions and an estimation of the transient process. The fluid interacting with the rotor is contained in a small radial clearance area, such as in bearings, seals, or rotor-to-stator clearances, and its effects are represented by fluid film radial stiffness, damping, and fluid inertia rotating at a different angular velocities. The effects of fluid damping and fluid inertia circumferential velocity ratios on the rotor startup and shutdown instability threshold differences are also discussed.
机译:本文讨论了瞬态过程,该过程从在流体环境中旋转的转子的不稳定性阈值开始,并终止于被称为流体涡动或流体鞭动的自激振动的极限周期。具有流体相互作用的转子的单模,各向同性,非线性模型允许精确的特定解和瞬态过程的估计。与转子相互作用的流体包含在较小的径向游隙区域中,例如轴承,密封件或转子至定子的游隙中,其作用由流体膜的径向刚度,阻尼和在不同的转速下旋转的流体惯性来表示。角速度。还讨论了流体阻尼和流体惯性圆周速度比对转子启动和停机不稳定性阈值差的影响。

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