Use of nonlinear journal-bearing impedance descriptions to evaluate linear analysis of the steady-state imbalance response for a rigid symmetric rotor supported by two identical finite-length hydrodynamic journal bearings at high eccentricities

Author:

Luneno Jean-Claude,Aidanpää Jan-Olov

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Applied Mathematics,Mechanical Engineering,Ocean Engineering,Aerospace Engineering,Control and Systems Engineering

Reference9 articles.

1. Turaga, R., Sekhar, A.S., Majumdara, B.C.: Comparison between linear and nonlinear transient analysis techniques to find the stability of a rigid rotor. ASME J. Tribol. Trans. 121, 198–201 (1999)

2. Tieu, A.K., Qiu, Z.L.: Stability of finite journal bearings from linear and nonlinear bearing forces. Tribol. Trans. 38(3), 627–635 (1995)

3. Lund, J.W., Thomsen: A calculation method and data for the dynamic coefficients of oil-lubricated journal bearings. In: Topics in Fluid Bearing and Rotor Bearing System, pp. 1–28. ASME, New York (1978)

4. Childs, D.: Turbomachinery Rotordynamics: Phenomena, Modeling, & Analysis. Wiley-Interscience, New York (1993). ISBN 0-471-53840-X, Chap. 3

5. Lund, J.: Self-excited, stationary whirl orbits of a journal in a sleeve bearing, Ph. D. Thesis, Rensselaer Polytechnic Institute, Troy, NY (1966)

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