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Influence of leakage flow through labyrinth seals on rotordynamics: numerical calculations and experimental measurements

机译:通过迷宫式密封件的泄漏流量对转子动力学的影响:数值计算和实验测量

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摘要

An extensive investigation of the influence of the leakage flow through a labyrinth seal at supply pressure of 12 bar on the rotordynamics was performed by using numerical calculations and experimental measurements. Toward this end, an experimental rotor setup was established in Shanghai Jiao Tong University. Two labyrinth seals were chosen for comparison, e.g., an interlocking seal and a stepped one. The numerical calculations based on the bulk-flow theory and the perturbation analysis were accomplished. Simultaneous acquisitions of the fluctuating static pressure at the stator wall and the displacement of the whirling rotor were made. The influence of the aerodynamic forcing on the rotor was analyzed in terms of the axial distribution of the mean static pressure, the circumferential distribution of the fluctuating pressure, the fist critical speed and the destabilization rotating speed of the rotor. The experimental results demonstrated that the sinusoidal distribution of the fluctuating static pressure on the stator wall was closely related to the whirling motion of the rotor. The first critical speed of the rotor was reduced by the aerodynamic forcing, resulting in intensi-fied destabilization of the rotor system. Furthermore, the numerical analyses were in good agreement to the experimental measurements.
机译:通过使用数值计算和实验测量,对在12 bar的供应压力下通过迷宫式密封的泄漏流的影响进行了广泛的研究。为此,上海交通大学建立了实验转子装置。选择两个迷宫式密封件进行比较,例如互锁密封件和阶梯式密封件。完成了基于体积流理论和扰动分析的数值计算。同时获得定子壁处的波动静压和回旋转子的位移。根据平均静压的轴向分布,脉动压力的周向分布,第一临界速度和转子的不稳定转速,分析了空气动力对转子的影响。实验结果表明,定子壁上静压波动的正弦分布与转子的回旋运动密切相关。转子的第一临界速度由于空气动力的作用而降低,从而导致转子系统的不稳定加剧。此外,数值分析与实验测量结果非常吻合。

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