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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Analytic Modeling of Floating Ring Annular Seals
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Analytic Modeling of Floating Ring Annular Seals

机译:浮环环形密封件的解析建模

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In order to avoid contact between the vibrating rotor and the stator, annular seals are designed with a relatively large radial clearance (~100 fim) and, therefore, have an important leakage. The floating ring annular seal is able to reduce the leakage flow rate by using a much lower clearance. The seal is designed as a ring floating on the rotor in order to accommodate its vibrations. The pressure difference between the upstream and the downstream chambers is pressing the nose of the floating ring (secondary seal) against the stator. The forces acting on the floating ring are the resultant of the hydrodynamic pressure field inside the primary seal, the friction forces in the secondary seal, and the inertia forces resulting from the non-negligible mass of the ring. For proper working conditions, the ring of the annular seal must be able to follow the vibration of the rotor without any damage. Under the effect of the unsteady hydrodynamic pressure field (engendered by the vibration of the rotor), of the friction force, and of the inertia force, the ring will describe aperiodic, a quasi-periodic, or a chaotic motion. Damage can come from heating due to friction in the secondary seal or from repeated impacts between the rotor and the ring. The present work presents an analytic model able to take into account only the synchronous periodic whirl motion of the floating ring.
机译:为了避免振动转子和定子之间的接触,环形密封件设计为具有较大的径向间隙(〜100 fim),因此泄漏很严重。浮动环环形密封件能够通过使用低得多的间隙来减少泄漏流量。密封件设计为浮动在转子上的环,以适应其振动。上游腔室和下游腔室之间的压力差将浮动环的鼻端(二次密封)压向定子。作用在浮环上的力是初级密封件内部的流体压力场,次级密封件中的摩擦力以及由不可忽略的质量引起的惯性力的合力。为了获得适当的工作条件,环形密封件的环必须能够跟随转子的振动而不会受到任何损坏。在不稳定的流体动压力场(由转子的振动引起),摩擦力和惯性力的作用下,环将描述为非周期性,准周期性或混沌运动。损坏可能是由于辅助密封件中的摩擦或转子与环之间的反复撞击而产生的热量。本工作提出了一种分析模型,该模型只能考虑浮动环的同步周期性旋转运动。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2012年第5期| p.153-161| 共9页
  • 作者单位

    Institut Pprime,CNRS UPR3346,Universite de Poitiers,86962 Futuroscope Chasseneuil, France;

    Institut Pprime,CNRS UPR3346,Universite de Poitiers,86962 Futuroscope Chasseneuil, France;

    SNECMA Space Engine Division, 27208 Vernon, France;

    Centre National d'Etudes Spatiales,91023 Courcouronnes Evry, France;

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