Effects of swirl brake axial arrangement on the leakage performance and rotor stability of labyrinth seals

被引:0
|
作者
Yaoxing CHEN [1 ]
Zhigang LI [1 ]
Jun LI [1 ,2 ]
Xin YAN [1 ]
机构
[1] Institute of Turbomachinery, Xi'an Jiaotong University
[2] Collaborative Innovation Center of Advanced Aero-Engine
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
D O I
暂无
中图分类号
TK473 [构造]; TB42 [密封技术];
学科分类号
摘要
Swirl brakes are usually introduced at the seal entrance in industry to improve the seal stability, especially for labyrinth seals suffering low seal clearance and high inlet preswirl ratio.However, how to arrange swirl brakes at the seal entrance to obtain better seal stability retains unknown, such as the axial distance between the brake trailing edge and the first tooth. To this end, the effects of the distance between brakes and the first tooth on the leakage flow rate and seal rotordynamic coefficients were numerically investigated at typical inlet preswirl ratios of 0.45 and0.8, and the predicted results were in comparison with the results for no-brake configuration. The obtained results disclose that the brake configuration arranged against the first tooth produces lower circumferential velocity in the downstream of the brakes as a result of the larger counterclockwise vortex moving from the brake trailing edge to the brake leading edge when compared to the brake configuration away from the first tooth. Besides, the dropped circumferential velocity in the downstream of brakes will cause larger pressure fluctuation in the circumferential direction and thus generates larger tangential force to restrain the rotor forward whirl. On the other hand,the effective damping is further increased when the distance between brakes and the first tooth decreases to zero, that is, the crossover frequency is even disappeared at the inlet preswirl ratio of 0.45 and successfully drops from 69.9 Hz to 32.7 Hz at the preswirl ratio of 0.8.
引用
收藏
页码:22 / 31
页数:10
相关论文
共 50 条
  • [1] Effects of swirl brake axial arrangement on the leakage performance and rotor stability of labyrinth seals
    Yaoxing CHEN
    Zhigang LI
    Jun LI
    Xin YAN
    Chinese Journal of Aeronautics , 2021, (01) : 22 - 31
  • [2] Effects of swirl brake axial arrangement on the leakage performance and rotor stability of labyrinth seals
    Chen, Yaoxing
    Li, Zhigang
    Li, Jun
    Yan, Xin
    CHINESE JOURNAL OF AERONAUTICS, 2021, 34 (01) : 22 - 31
  • [3] Effects of Swirl Brakes on Static and Rotordynamic Performance of Labyrinth Seals
    Wu K.
    Zhang W.
    Cao H.
    Chen L.
    Yin L.
    Li C.
    Zhang, Wanfu (wfzhang@usst.edu.cn), 1600, Science Press (40): : 647 - 655
  • [4] The Effects of Fluid Preswirl and Swirl Brakes Design on the Performance of Labyrinth Seals
    Untaroiu, Alexandrina
    Jin, Hanxiang
    Fu, Gen
    Hayrapetiau, Vahe
    Elebiary, Kariem
    JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASME, 2018, 140 (08):
  • [5] Rotordynamics of Turbine Labyrinth Seals with Rotor Axial Shifting
    Xi, Jinxiang
    Rhode, David L.
    INTERNATIONAL JOURNAL OF ROTATING MACHINERY, 2006, 2006 : 1 - 11
  • [6] Leakage Performance and Static Stability of Hybrid Labyrinth-Honeycomb Seals
    Yang X.
    Zhang W.
    Gu C.
    Zhang X.
    Li C.
    Mocaxue Xuebao/Tribology, 2021, 41 (05): : 738 - 748
  • [7] Rotordynamic Characteristics of Labyrinth Seals with Integrated Design of Swirl Brake and Shaft Configuration
    Xue W.
    Li Z.
    Li J.
    Hsi-An Chiao Tung Ta Hsueh/Journal of Xi'an Jiaotong University, 2022, 56 (12): : 163 - 173
  • [8] SCALING EFFECTS ON LEAKAGE LOSSES IN LABYRINTH SEALS
    WITTIG, SLK
    DORR, L
    KIM, S
    JOURNAL OF ENGINEERING FOR POWER-TRANSACTIONS OF THE ASME, 1983, 105 (02): : 305 - 309
  • [9] Rotor speed and inlet swirl effects on leakage and rotor-dynamic coefficients of tapered annular gas seals
    Kamouni, M.
    Sriti, M.
    Modelling, Measurement and Control B, 2007, 76 (5-6): : 20 - 33
  • [10] Low Leakage Designs for Rotor Teeth and Honeycomb Lands in Labyrinth Seals
    Chougule, Hasham H.
    Ramerth, Douglas
    Ramachandran, Dhinagaran
    PROCEEDINGS OF THE ASME TURBO EXPO 2008, VOL 4, PTS A AND B, 2008, : 1613 - 1620