Pad shimmy characteristics of tilting pad bearing in heavy duty gas turbine

被引:0
|
作者
Feng Y. [1 ,2 ]
Yan G. [3 ]
Meng F. [2 ]
Jin Y. [3 ]
Yuan X. [3 ]
Chen Y. [1 ]
机构
[1] School of Astronautics, Harbin Institute of Technology, Harbin
[2] Harbin Electric Co., Ltd., Harbin
[3] MOE Key Lab for Modern Design and Rotor-Bearing System, Xi'an Jiaotong University, Xi'an
来源
关键词
Gas turbine; Preload factor; Shimmy characteristics; Tilting pad bearing;
D O I
10.13465/j.cnki.jvs.2021.21.018
中图分类号
学科分类号
摘要
Here, taking a 4-pad tilting pad bearing as the study object, the dynamic analysis model of pad shimmy characteristics of tilting pad bearing was established. Based on the variable separation method, the approximate analytical expression for oil film pressure of tilting pad was derived. The dynamic responses of pad were calculated using Euler method. The correctness of the analysis model and analytical calculation method was verified with tests, The influence of preload factor on pad shimmy characteristics was studied, and the swing angle response of pad under step excitation was analyzed in detail. The results showed that the dynamic bearing capacity of tilting pad bearing in heavy duty gas turbine can be improved by applying a certain preload factor; there is a special preload factor within the range of 0.5-0.8 to make No.1, No.3 and No.4 pads have swing angle maximum values; increasing preload factor can make swing amplitude of each pad decrease by more than 90%; the swing frequency of each pad under different preload factors is rotating frequency, but the upper pad can have obvious frequency doubling when the preload factor is smaller; the study results can provide a reference for diagnosis and treatment of tilting pad bearing instability fault caused by pad shimmy. © 2021, Editorial Office of Journal of Vibration and Shock. All right reserved.
引用
收藏
页码:127 / 134
页数:7
相关论文
共 18 条
  • [1] (2008)
  • [2] JI Feng, YUAN Xiaoyang, ZHANG Hongtao, Et al., Themethod and calculation model of dynamic performances of oil film of tilting pad bearing, Turbine Technology, 54, 2, pp. 105-108, (2012)
  • [3] (1986)
  • [4] ZHAO Weizheng, TONG Xiaozhong, WANG Xiaorong, Et al., Analysis and treatment of abnormal vibration of a siemens 9F gas turbine generator unit, Gas Turbine Technology, 31, 3, pp. 53-58, (2018)
  • [5] GUO Yujie, SHAO Rongguo, GU Baomin, Abnormal vibration fault diagnosis and overhaul of a tilting-pad journal bearing in a gas turbine generator unit during mesh process, Turbine Technology, 54, 2, pp. 151-154, (2012)
  • [6] ZHU Deyong, Diagnosis and treatment of oil whirl and whip in tilting-pad bearings, Power Equipment, Power Equipment, 26, 3, pp. 186-188, (2012)
  • [7] SHI Qingfeng, YANG Xiaohui, Analysis and treatment of low-frequency vibration mechanism in 660 MW nuclear steam turbine, Turbine Technology, 61, 3, pp. 224-226, (2019)
  • [8] SEUNG Y, YUN S, JUN I Y, Et al., Dynamic charac-teristics of composite tilting pad journal bearing for turbine generator applications[J], Composite Structures, 107, 2017, pp. 94-105, (2018)
  • [9] SUN Yongming, WU Shinian, LI Haipeng, Et al., Analysis of tilting-pad bearing oil-film unstability in centrifugal compressor, Chinese Journal of Turbomachinery, 73, 6, pp. 73-90, (2012)
  • [10] ZEIDAN F Y, HERBAGE B S., Fluid film bearing fundamentals and failure analysis, Proceedings of the Twentieth urbomachinery Symposium, (1991)