期刊文献+

转子型式对高速透平膨胀机临界转速的影响 被引量:3

Performance analysis of critical speed of high-speed turbo-expander rotor with different structure types
下载PDF
导出
摘要 基于低温透平膨胀机临界转速的计算,对转子系统结构型式对高速透平膨胀机临界转速的影响进行了分析。用有限元QZ(FEQZ)法求解广义复特征值矩阵,对具有各项异性支承并且支承气膜阻尼不能忽略的高速透平转子临界转速特性进行了研究,并利用求得的复特征向量矩阵推导出了转子分段轴心瞬态振动轨迹方程。讨论了稳态情况下适用于同一透平膨胀机转子4种常用结构振动特性的优缺点。结果表明止推盘双置转子结构在该透平膨胀机设计工况具有较大的转速安全范围和较好的稳定性,此结论与工程应用吻合较好。 Based on the calculation of turbo-expander critical speed, the influence of different rotor structure types on the critical speed of high speed turbo-expander was investigated. FEQZ method was employed to solve the generalized complex eigenvalue matrix, and the characteristics of critical speed of high speed turbine rotor which has anisotropic support and non-negligible gas film damping were analyzed. The transient vibration equation of segmented axis orbit was concluded from the obtained complex eigenvector matrix. The advantages and disadvantages of vibration characteristics of four different rotor structure types were discussed. The result which is consistent with industrial application show that rotor with two opposed thrust plates has wider safe speed range and better stability.
出处 《低温工程》 CAS CSCD 北大核心 2010年第3期1-6,共6页 Cryogenics
基金 国家自然科学基金资助项目(50976082) 高等学校博士学科点专项科研基金项目(20090201110006)资助
关键词 透平膨胀机 气体轴承 临界转速 FEQZ法 turbo-expander gas bearing critical speed FEQZ method
  • 相关文献

参考文献13

  • 1陈汝刚,侯予,陈纯正.微型气浮轴承高速透平膨胀机的研制[J].西安交通大学学报,2010,44(1):61-65. 被引量:5
  • 2Zhao H, Hou Y, Chert L, et al. Analytical study of aerodynamic foil bearing with elastic support[J]. Journal of Advanced Mechanical Design. Systems and Manufacturing, 2008 ( 2 ) : 303-312.
  • 3Hou Y, Zhu Z H, Chen C Z. Comparative test on two kinds of new compliant foil bearing for small cryogenic turbo-expander[J].Cryogenies, 2004,44:69-72.
  • 4Xiong L Y, Wu G, Hou Y, et al. Development of aerodynamic foil journal bearings for a high speed cryogenic turboexpander[ J]. Cryogenics, 1997,37:221-230.
  • 5Hou Y, Xiong L Y, Chen C Z. Experimental study of a new compliant foil air bearing with elastic support [ J ]. Tribology Transactions, 2004,47:308-311.
  • 6Nelson H D, McVaugh J M. The dynamics of rotor-bearing systems using finite elements [ J ]. Journal of Engineering for Industrytrans, ASME, 1976,98:593-600.
  • 7Hashish E, Sankar T S. Finite elment and modal analyses of rotorbearing systems under stochastic loading conditions [ J ] . Acoustics Stress and Reliability in Design Trans. , ASME, 1984 (106) :80-89.
  • 8Childs D W, Graviss K. A noteon critical-speed solutions for finite element-based rotor models[ J]. ASME Journal of Mechanical Design, 1982,104:412-416.
  • 9Ward R C. The combination shift QZ algorithm[ J]. SlAM Journal on Numerical Analysis, 1975 ( 12 ) : 835-853.
  • 10Moler C B, Stewart G W. An algorithm for generalized matrix eigenval- ue prohlems[ J ]. SIAM Journal on Numerical Analysis,1973,241-256.

二级参考文献8

  • 1WAUMANS T, VLEUGELS P, PEIRS J, et al. Rotor dynamic behavior of a micro-turbine rotor on air bearings: modeling techniques and experimental verification [C]// Proceedings of International Conference on Noise and Vibration Engineering. Lenven, Belgium: Katholieke Universiteit Leuven, 2006: 181- 198.
  • 2KOUSUKE I, MOTOHIDE M, SUSUMU T, et al. Experimental verification of the feasibility of a 100W class micro-scale gas turbine at an impeller diameter of 10 mm [J]. Journal of Micromeehanics and Micro Engineering, 2006, 16(9) :254-261.
  • 3KOUSUKE I, SHUJI T, SHINICHI T, et al. Development of high-speed micro-gas bearings for three-dimensional micro-turbo machines [J]. Journal of Micromeehanics and Micro Engineering, 2005, 15 (9) : 222-227.
  • 4SHUJI T, KOUSUKE I, SHINICHI T, et al. Turbo test rig with hydroinertia air bearings for a palmtop gas turbine [J]. Journal of Micromechanics and Microengineering, 2004, 14(11): 1449-1454.
  • 5EPSTEIN A H. Millimeter-scale, micro-electro-mechanical systems gas turbine engines[J]. ASME Journal of Engineering for Gas Turbines and Power, 2004,126(2):205-226.
  • 6EHRICH F F, JACOB.SON S A. Development of high-speed gas bearings for high-power density microdevices FJ~. ASME Journal of Engineering for Gas Turbines and Power, 2003,125 (1) : 141-148.
  • 7EVANS J C, NELLIS G F. Design and test of hydrostatic gas Bearings for a hybrid cryogenic refrigerator [C]// ASME International Mechanical Engineering Congress. Washington, USA: ASME, 2003 : 67-76.
  • 8熊联友,侯予,王瑾,刘井龙,陈纯正.箔片式动压止推气体轴承的发展[J].润滑与密封,2000,25(3):7-8. 被引量:4

共引文献47

同被引文献24

引证文献3

二级引证文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部