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High Temperature Leakage Performance of a Hybrid Brush Seal Compared to a Standard Brush Seal and a Labyrinth Seal

机译:与标准电刷密封和迷宫式密封相比,混合电刷密封的高温泄漏性能

摘要

Adequate sealing in turbomachinery reduces secondary leakage and results in more efficient and stable systems. Labyrinth seals are most common, although brush seals are popular in specialized applications. The Hybrid Brush Seal (HBS) is a novel design that adds to the bristle brush matrix a number of cantilever pads that rest on the rotor surface. Upon shaft rotation the pads lift due to the generation of a hydrodynamic gas film while the brushes effectively seal an upstream pressure. Hence the HBS has no wear and no local thermal distortion effects. Measurements of leakage versus pressure differential are obtained in a three-teeth labyrinth, a conventional brush seal, and a hybrid brush seal for operation at high temperature (300?C), with shaft surface speeds to 27 m/s, and at supply pressures to 3.5 bar. Flow measurements are presented in terms of a flow factor to remove dependency on the air temperature and supply pressure. The measurements demonstrate the HBS leaks less (~61%) than a standard brush seal and is significantly better (~38%) than a similarly sized labyrinth seal. Predictions of flow through a labyrinth seal predict well at supply pressures under 1.7 bar but overpredict by as much as 25% at high supply pressures. A porous medium fluid flow model predicts the flow through the HBS and brush seal. The model for the HBS and brush seal underpredicts the flow rate at low supply pressures but match well at high supply pressures.Measurements of the drag torque of the test seals show the HBS has a larger torque when pressurized compared to the brush seal and labyrinth seal. This indicates that the HBS experiences a larger degree of blow-down due to the pads decreasing the clearance.The mechanical parameters of the brush seal and HBS are found based upon the flexibility function from impact load tests. A combined structural and dry friction damping model represent well the measured flexibility. An equivalent damping is found based upon the energy dissipation. Based upon the damping ratio, the HBS has twice of the viscous damping as the brush seal at a supply pressure of 2.0 bar.
机译:透平机械中的充分密封可减少二次泄漏,并导致更高效,更稳定的系统。迷宫式密封是最常见的,尽管刷式密封在特殊应用中很流行。混合电刷密封件(HBS)是一种新颖的设计,在刷毛矩阵中增加了许多悬臂垫,它们位于转子表面。在轴旋转时,由于流体动力气体膜的产生,衬块抬起,而电刷有效地密封了上游压力。因此,HBS没有磨损,也没有局部热变形效应。在三齿迷宫式,常规刷式密封和混合式刷式密封中获得泄漏与压力差的测量值,以便在高温(300?C),轴表面速度达到27 m / s和供应压力下运行到3.5巴流量测量以流量因数表示,以消除对空气温度和供应压力的依赖性。测量结果表明,HBS的泄漏量比标准刷式密封少(〜61%),并且比类似尺寸的迷宫式密封要好得多(〜38%)。通过迷宫式密封的流量预测值在1.7 bar以下的供气压力下能很好地预测,但在高供气压力下会高估25%。多孔介质流体流动模型可预测通过HBS和刷式密封的流量。 HBS和电刷密封的模型低估了低供气压力下的流量,但在高供气压力下匹配得很好。测试密封的拖曳扭矩测量结果表明,HBS加压时的扭矩比电刷密封和迷宫式密封大。这表明由于垫块减小了间隙,HBS的排污程度更大。基于冲击载荷测试的柔韧性函数找到了刷式密封和HBS的机械参数。结构和干摩擦阻尼模型的组合很好地体现了所测得的柔韧性。根据能量耗散找到等效的阻尼。基于阻尼比,在2.0 bar的供气压力下,HBS的粘性阻尼是刷式密封的两倍。

著录项

  • 作者

    Ashton Zachary;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类
  • 入库时间 2022-08-20 19:41:52

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