[1] Hilds D W.Dynamic Analysis of Turbulent Annular Seals Based on Hirs’ Lubrication Equation[J].ASME Journal of Lubrication Technology, 1983,5(3):429-436.
[2] Wyssmann H, Jenny R, Pham T.Prediction of Stiffness and Damping Coefficients for Centrifugal Compressor Labyrinth Seals[J].ASME Journal of Engineering for Gas Turbines and Power,1984,6(4):920-926.
[3] Brommundt E, Ostermeyer G P.Stability of a Rotor Partially Filled with Liquid and Attached to an Anisotropically Mounted Shaft[J].Ingenieur-Archiv, 1986,6(3).
[4] Holm-Christensen O, Trager K.A Note of Instability Caused by Liquid Motions [J].Journal of Applied Mechanical, 1991,8(4):801-811.
[5] Ye Jianhuai,Liu Zhansheng,Zhang Guanghui.Study on the Nonlinear Dynamic Characteristics Modal of Labyrinth Seal Based on Muszynska Modal[J].Journal of Harbin Institute of Technology,2008,15(3):351-355.
[6] Tiwari M, Gupta K, Prakash O.Effect of Radial Internal Clearance of a Ball Bearing on the Dynamics of a Balanced Horizontal Rotor [J].Journal of Sound and Vibration, 2000,8:723-756.
[7] HUA J.Numerical Analysis of Nonlinear Rotor-Seal System[J].Journal of Sound and Vibration,2005,283.
[8] Muszynska A, Bently D E.Frequency-Swept Rotating Input Perturbation Techniques and Identification of the Fluid Models in Rotor/Bearing/Seal Systems and Fluid Handing Machines[J].Journal of Sound and Vibration.1990,3(1):103-124.
[9] Zhang W.Dynamic Stability of a Rotor Filled or Partially Filled with Liquid[J].Journal of Applied Mechanical, 1996,4(1):101-105.
[10] Liew A, Fen g N, Hahn E J.Transient Rotordynamic Modling of Rolling Element Bearing Systems[J].Journal of Engineering for Gas Turbines and Power, 2002,4.
[11] Tam L T.Numerical and Analytical Study of Fluid Dynamical Forces in Seals and Bearings[J].Journal of Vibration, Acoustics, Stress and Reliability in Design, 1988,0(3):315-325.
[12] Nosaka M.Self-Lubricating Performance and Durability of Ball Bearings for the LE-7Liquid Oxygen Rocket-Turbopump [J].Lubrication Engineering, 1993,9(9).
[13] Muszynska A.Modal Testing of Rotors with Fluid Interaction [J].International Journal of Rotating Machinery,1995,1(2):83-116.
[14] 祝长生.支承刚度各向异性部分充液转子系统的稳定性[J].航空动力学报,2000,15(4):431-434.
[15] 张大义,母国新,洪杰.航空发动机转子支承系统刚度计算中的几个问题[J].战术导弹技术,2005(2).
[16] 田爱梅,郑韬,朱梓根.涡轮机械转子/密封稳定性研究综述[J].燃气涡轮试验与研究,2003,6(3):56-62.
[17] 夏福强,李松涛,许庆余.涡轮泵转子-迷宫密封系统的非线性稳定性和分岔[J].应用力学学报, 2006,3(1):16-22.
[18] Biggs R E.Space Shuttle Main Engine, the First Ten Years, History of Liquid Rocket Engine Development in the United States, 1955–1980[R].USA:American Astronautical Society History Series, Part 3, Chapter 4,2,13:69-122.
[19] Ek M C.Solution of the Subsynchronous Whirl Problem in the High Pressure Hydrogen Turbomachinery of the Space Shuttle Main Engine[C].Las Vegas:AlAA/SAE 14th Joint Propulsion Conference,1978.
[20] Ek M C.Solving Subsynchronous Whirl in the High-Pressure Hydrogen Turbomachinery of the SSME[J].Journal of Spacecraft and Rockets,1980,17:208-218.
[21] 李玲玲,王克明.某型航空发动机后支承动刚度的有限元计算[J].沈阳航空工业学院学报,2007,24(3):5-7.
[22] 周明,倪维斗,于文虎,等.某单轴式燃气轮机支承刚度计算分析[J].山东电力技术,1998(2):36-39.
[23] 盛步云,张涛,丁毓峰.支承刚度对汽轮机转子动力学特性的影响分析[J].机械设计,2008,25(12).
[24] 白长青,许庆余,张小龙.考虑径向内间隙的滚动轴承平衡转子系统的非线性动力稳定性[J].应用数学和力学,2006,7(2):159-169.
[25] 窦唯,刘占生.轴承支承总刚度对涡轮泵转子系统稳定性的影响研究[J],推进技术,2013,4(2):254-262.(DOU Wei, LIU Zhan-sheng.The Effect Research of Bearing Supporting Stiffness on Dynamic Stability of Turbopump Rotor System in Liquid Rocket Engine[J].Journal of Propulsion Technology,2013,4(2):254-262.)
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