The Static Instability Characteristics of Labyrinth Seals: Experiments and Computational Fluid Dynamics Verification

Author:

Zhang Wanfu1,Ma Kai1,Cao Hao2,Wang Tengxi3,Yang Jiangang4,Li Chun1

Affiliation:

1. School of Energy and Power Engineering, University of Shanghai for Science and Technology, 516 Jungong Road, Shanghai 200093, China

2. State Grid Hunan Electric Power Company Limited Research Institute, 79 Shuidian Road, Changsha 410007, Hunan, China

3. Department of Mechanical Engineering, Texas A&M University, College Station, TX 77843

4. National Engineering Research Center of Turbo-Generator Vibration, Southeast University, 2 Sipailou, Nanjing, Jiangsu Province 210096, China

Abstract

Abstract The paper proposed an experimental measurement to identify the fluid-induced force and static stiffness coefficients. A three-dimensional fluid model of the labyrinth seals was also established. And the static characteristics under different eccentricities and inlet pressure were studied. Theoretical results show a good agreement with the experiment results. The labyrinth seal with different eccentricity ratios produces a de-centered fluid-induced force and a negative direct static stiffness, which cause the rotor deviating from the geometric center of the stator. Both the fluid-induced force and negative direct static stiffness coefficient with a value of −13.5 kN/m to −72 kN/m increase with increasing eccentricity and inlet pressure. Particularly, the direct static stiffness coefficient shows a relatively significant increase with a high eccentricity ratio (∼>40%). The static instability is mainly due to the fact that the fluid velocity in the small clearance increases more rapidly along the leakage path. The inertial force is increased significantly and the pressure decreases. This results in a greater pressure distribution in the larger clearance. The fluid force and direct static stiffness coefficient that tend to push the rotor away from the stator center are produced, and eventually lead to the static instability of the labyrinth seal.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

General Engineering

Reference17 articles.

1. Leakage and Rotordynamic Effects of Compressible Annular Seals;Scharrer,1995

2. Calculating of Critical Speed and Securing of Dynamic Stability of High Pressure Pumps with Reference to Forces Arising in Seal Gaps;Lomakin;Energomashinostroenie,1958

3. Stiffness of Straight and Tapered Annular Gas Path Seals;Fleming;ASME J. Lubr. Tech.,1979

4. Theory Versus Experiment for the Rotordynamic Characteristics of a Smooth Annular Gas Seal at Eccentric Positions;Alexander;ASME J. Tribol.,1995

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