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The Lomakin Effect in Annular Gas Seals Under Choked Flow Conditions

机译:窒息流动条件下环形气密封件的洛马金效应

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摘要

The paper deals with the static stability of annular gas seals under choked flow conditions. For a centered straight annular seal, choking can occur only in the exit section because the gas is constantly accelerated by friction forces. From the mathematical standpoint, the flow choking corresponds to a singularity that was never dealt with numerically. The present work introduces an original numerical treatment of this singularity that is validated by comparisons to the analytical solution for planar channel flow. An interesting observation stemming from these results is that the usual hypothesis of considering the flow as being isothermal is not correct anymore for a gas accelerated by a pressure gradient; the characteristics of the flow are the same but the quantitative results are different. The analysis of eccentric annular seals then shows that choked flow conditions produce a change in the static stiffness. For a subsonic exit section, the Lomakin effect is represented by a centering radial force opposed to the rotor displacement. For a choked exit section, the radial force stemming from an eccentricity perturbation has the same direction as the rotor displacement. The annular seal becomes then statically unstable. From the physical standpoint, this behavior is explained by the modification of the Lomakin effect, which changes sign. The pressure and Mach number variations along the seal depict the influence of high compressible flow regimes on the Lomakin effect. This characteristic has never been depicted before.
机译:本文讨论了在flow流条件下环形气密封的静态稳定性。对于定心的直形环形密封,由于气体在摩擦力的作用下不断加速,因此只能在出口处发生阻塞。从数学的观点来看,节流对应于从未用数字处理过的奇异点。本工作介绍了这种奇异性的原始数值处理方法,该方法通过与平面通道流动的解析解进行比较而得到验证。从这些结果中得出的一个有趣的观察结果是,对于由压力梯度加速的气体而言,将流动视为等温的通常假设不再正确。流动特性相同,但定量结果不同。然后,对偏心环形密封件的分析表明,节流条件使静刚度发生变化。对于亚音速出口部分,洛马金效应由与转子位移相反的定心径向力表示。对于阻塞的出口部分,由偏心扰动引起的径向力的方向与转子的位移方向相同。这样,环形密封件就变得静态不稳定。从物理角度来看,这种行为可以通过修改Lomakin效应来解释,该效应会改变符号。沿密封的压力和马赫数变化描述了高可压缩流态对洛马金效应的影响。以前从未描述过此特性。

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