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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Experimental Analysis of Floating Ring Annular Seals and Comparisons With Theoretical Predictions
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Experimental Analysis of Floating Ring Annular Seals and Comparisons With Theoretical Predictions

机译:浮环环形密封的实验分析及与理论预测的比较

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摘要

Floating ring annular seals represent one of the solutions for controlling leakage in high-speed rotating machinery. They are generally made of a carbon ring mounted in a steel ring for preserving their integrity. Low leakage is ensured by the small clearance of the annular space between the carbon ring and the rotor. Under normal operating conditions, the ring must be able to "float" on the rotor in order to accommodate its vibration. Impacts between the carbon ring and the rotor may occur when the annular seal is locked up against the stator and the amplitude of rotor vibrations are larger than the radial clearance. This situation is prohibited because it rapidly leads to the destruction of the carbon ring. The present work presents experimental results obtained for floating ring annular seals of 38 mm, tandem mounted in a buffer seal arrangement. The rotation speed was comprised of between 50 Hz and 350 Hz, and maximum pressure drop was 7 bar. For these operating conditions, the floating ring follows the rotor vibrations without any impacts. Comparisons were made with a theoretical model based on the equations of motion of the floating ring driven by mass inertia forces, hydrostatic forces in the (main) annular seal, and by friction forces on its radial face (also named the "nose" of the seal). The friction coefficient on the nose of the floating ring was estimated from Greenwood and Williamson's model for mixed lubrication. The present analysis validates the theoretical model used for predicting the dynamic response of the floating ring for a given rotor motion.
机译:浮动环环形密封件是控制高速旋转机械泄漏的解决方案之一。它们通常由安装在钢环中的碳环制成,以保持其完整性。碳环和转子之间的环形间隙较小,可确保低泄漏。在正常工作条件下,环必须能够在转子上“浮动”,以适应其振动。当环形密封件紧靠定子时,转子振动的幅度大于径向间隙时,可能会在碳环和转子之间产生冲击。禁止这种情况,因为它会迅速导致碳环破坏。本工作介绍了将38毫米的浮动环环形密封串联安装在缓冲密封装置中获得的实验结果。旋转速度在50Hz至350Hz之间,并且最大压降为7bar。在这些运行条件下,浮动环跟随转子的振动而不会受到任何影响。根据理论模型进行了比较,该模型基于由质量惯性力,(主)环形密封件中的静液压以及其径向面上的摩擦力(也称为密封圈的“鼻”)驱动的浮动环的运动方程式。密封)。浮动环前端的摩擦系数是根据Greenwood和Williamson的混合润滑模型估算的。本分析验证了用于预测给定转子运动的浮动环动态响应的理论模型。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2016年第4期| 042503.1-042503.9| 共9页
  • 作者单位

    CNES/PPRIME Institute, CNRS, ENSMA ISAE, University of Poitiers, Chasseneuil Futuroscope 86962, France;

    PPRIME Institute, CNRS, ENSMA ISAE, University of Poitiers, Chasseneuil Futuroscope 86962, France;

    Space Engines Division, SNECMA, Vernon 27208, France;

    Direction des Lanceurs, CNES, Paris 75612, France;

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