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A COMPARISON OF EXPERIMENTAL AND THEORETICAL RESULTS FOR LABYRINTH GAS SEALS.

机译:Labyrinth气体密封的实验和理论结果的比较。

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摘要

The basic equations are derived for a two-control-volume model for compressible flow in a labyrinth seal. The flow is assumed to be completely turbulent and isoenergetic. The wall friction factors are determined using the Blasius formula. Jet flow theory is used for the calculation of the recirculation velocity in the cavity. Linearized zeroth and first-order perturbation equations are developed for small motion about a centered position by an expansion in the eccentricity ratio. The zeroth-order pressure distribution is found by satisfying the leakage equation. The circumferential velocity distribution is determined by satisfying the momentum equations. The first order equations are solved by a separation of variable solution. Integration of the resultant pressure distribution along and around the seal defines the reaction force developed by the seal and the corresponding dynamic coefficients. The results of this analysis are compared to experimental test results presented in this report. The results presented are for three teeth-on-rotor and three teeth-on-stator labyrinth seals with different radial clearances. The theory compares well with the cross-coupled stiffness data for both seal types and with the direct damping data for a teeth-on-rotor labyrinth seal. For a teeth-on-stator labyrinth seal, the test results show a decrease in direct damping for an increase in radial seal clearance, while the theory shows the opposite.
机译:对于迷宫式密封中可压缩流的两个控制体积模型,导出了基本方程。假定流动是完全湍流和等能量的。壁摩擦系数使用Blasius公式确定。射流理论用于计算腔体中的再循环速度。线性化的零阶和一阶摄动方程是通过偏心比的扩展来实现围绕中心位置的小运动的。通过满足泄漏方程,可以找到零阶压力分布。通过满足动量方程式确定圆周速度分布。一阶方程通过变量解的分离来求解。沿着密封件和围绕密封件的合成压力分布的积分定义了由密封件产生的反作用力和相应的动态系数。将分析结果与本报告中提供的实验测试结果进行比较。给出的结果是针对具有不同径向间隙的三个转子齿和三个定子齿迷宫式密封件。该理论与两种密封类型的交叉耦合刚度数据以及转子齿迷宫式密封的直接阻尼数据进行了很好的比较。对于定齿迷宫式密封,测试结果表明,直接阻尼减小,径向密封间隙增大,而理论则相反。

著录项

  • 作者

    SCHARRER, JOSEPH KIRK.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 235 p.
  • 总页数 235
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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