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Labyrinth Seal Leakage Degradation Due to Various Types of Wear

机译:各种磨损引起的迷宫式密封件泄漏降解

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摘要

This paper systematically presents a complete leakage comparison for various types of wear experienced by labyrinth seals. Labyrinth seals used in turbine engines are designed to work at a clearance during steady-state engine operations. The tooth tip rubs the stator and wears either itself or the stator surface during transient operations, depending on the material properties of the tooth and stator. Any type of wear that increases clearance or deforms the tooth tip will cause permanent and unpredictable leakage degradation. This negatively affects the engine's overall efficiency, durability, and life. The teeth have been reported to wear into a mushroom profile or into a rounded profile. A rub-groove on the opposing surface may form in several shapes. Based on a literature survey, five rub-groove shapes are considered in this work. They are rectangle, trapezoid (isosceles and acute), triangle, and ellipse. In this work, leakage degradation due to wear is numerically quantified for both mushroomed and rounded tooth wear profiles. It also includes analyses on rounded teeth with the formation of five rub-groove shapes. All parameters are analyzed at various operating conditions (clearance, pressure ratio, number of teeth, and rotor speed). Computational fluid dynamics (CFD) analyses are carried out by employing compressible turbulent flow in a 2D axisymmetrical coordinate system. CFD analyses show that the following tooth-wear conditions affect leakage from least to greatest: unworn, rounded, and mushroomed. These are for an unworn flat stator. It is also observed that rub-groove shapes considerably affect the leakage depending on the clearance. Leakage increases with the following groove profiles: triangular, rectangular, acute trapezoidal, isosceles trapezoidal, and elliptical. The results show that any type of labyrinth seal wear has significant effects on leakage. Therefore, leakage degradation due to wear should be considered during the engine design phase.
机译:本文系统地介绍了迷宫式密封件经历的各种磨损情况的完整泄漏比较。涡轮发动机中使用的迷宫式密封件设计用于在稳态发动机运行期间保持间隙。在瞬态运行期间,齿尖会摩擦定子并磨损其本身或定子表面,具体取决于齿和定子的材料特性。任何会增加间隙或使齿顶变形的磨损都会导致永久性和不可预测的泄漏恶化。这会对发动机的整体效率,耐用性和寿命产生负面影响。据报道,牙齿磨损成蘑菇状或圆形。相对表面上的磨槽可以形成几种形状。根据文献调查,在这项工作中考虑了五个摩擦凹槽形状。它们是矩形,梯形(等腰和锐角),三角形和椭圆形。在这项工作中,对于蘑菇状和圆形牙齿磨损曲线,都通过数值量化了由于磨损引起的泄漏降低。它还包括对圆齿的分析,形成了五个摩擦槽形状。在各种运行条件(间隙,压力比,齿数和转子速度)下分析所有参数。计算流体力学(CFD)分析是通过在二维轴对称坐标系中采用可压缩湍流进行的。 CFD分析表明,以下牙齿磨损状况从最小到最大影响泄漏:未磨损,圆形和蘑菇状。这些用于未磨损的扁平定子。还观察到,根据间隙,磨槽形状会显着影响泄漏。泄漏随着以下凹槽轮廓的增加而增加:三角形,矩形,锐梯形,等腰梯形和椭圆形。结果表明,任何类型的迷宫式密封件磨损都会对泄漏产生重大影响。因此,在发动机设计阶段应考虑由于磨损导致的泄漏降低。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2017年第6期|062504.1-062504.11|共11页
  • 作者单位

    Mechanical Engineering Department, Kirikkale University, Yahsihan, Kirikkale 71450, Turkey;

    TUSAS Engine Industries, Inc. (TEI), Eskisehir 26003, Turkey;

    Mechanical Engineering Department, Kirikkale University, Yahsihan, Kirikkale 71450, Turkey;

    TUSAS Engine Industries, Inc. (TEI), Eskisehir 26003, Turkey;

    TUSAS Engine Industries, Inc. (TEI), Eskisehir 26003, Turkey;

    Pro Solutions USA, LLC 453 Kinns Road, Clifton Park, NY 12065;

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