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Analysis for leakage and rotordynamic coefficients of surface roughened tapered annular gas seals

机译:表面粗糙的锥形环形气密封件的泄漏和转子动力系数分析

摘要

In order to soften the effects of rub, the smooth stators of turbine gas seals are sometimes replaced by a honeycomb surface. This deliberately roughened stator and smooth rotor combination retards the seal leakage and may lead to enhanced rotor stability. However, many factors determine the rotordynamic coefficients and little is known as to the effectiveness of these honeycomb seals under various changes in the independent seal parameters. An analytical-computational method to solve for the rotordynamic coefficients of this type of compressible-flow seal is developed. The governing equations for surface roughned tapered annular gas seals are based on a modified Hirs' turbulent bulk flow model. A perturbation analysis is employed to develop zeroth and first-order perturbation equations. These equations are numerically integrated to solve for the leakage, pressure, density, and velocity for small motion of the shaft about the centered position. The resulting pressure distribution is then integrated to find the corresponding rotor-dynamic coefficients.
机译:为了减轻摩擦的影响,有时用蜂窝状表面代替涡轮机气封的光滑定子。这种故意使定子和转子平滑的结合变粗糙,可防止密封泄漏,并可能提高转子的稳定性。但是,许多因素决定了转子动力学系数,而在独立密封参数的各种变化下,这些蜂窝密封的有效性知之甚少。提出了一种解析计算方法来解决这类可压缩流密封件的转子动力学系数。表面粗糙的锥形环形气密封件的控制方程基于修改后的希尔斯湍流整体流模型。使用扰动分析来开发零阶和一阶扰动方程。对这些方程进行数值积分,以解决轴围绕中心位置的小运动时的泄漏,压力,密度和速度。然后,将得到的压力分布积分以找到相应的转子动态系数。

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  • 作者

    Nelson C. C.;

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  • 年度 1984
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