Title: Subcritical behaviour of short cylindrical journal bearings under periodic excitation
Authors: Rendl, Jan
Byrtus, Miroslav
Dyk, Štěpán
Smolík, Luboš
Citation: [1]RENDL, J. BYRTUS, M. DYK, Š. SMOLÍK, L. Subcritical behaviour of short cylindrical journal bearings under periodic excitation. Nonlinear Dynamics, 2023, roč. 111, č. 11, s. 9957-9970. ISSN: 0924-090X
Issue Date: 2023
Publisher: Springer
Document type: článek
article
URI: 2-s2.0-85150426726
http://hdl.handle.net/11025/51902
ISSN: 0924-090X
Keywords in different language: rotordynamics;Journal bearings;Unbalance;Continuation;Bifurcation;Period-doubling
Abstract in different language: Rotating machinery supported on journal bearings is affected by forces due to rotating unbalance and pressure gradients in the oil film. The interaction of these forces can evoke nonlinear behaviour, including asynchronous motion and even chaos. This work attempts to characterise the sub-synchronous motion of the rigid rotor supported on cylindrical journal bearings due to the abovementioned interaction. The analysis focuses on the rotor behaviour at the rotor speeds lower than the threshold speed for oil whirl, associated with sub-synchronous vibration of magnitude equaling the bearing clearance. It is shown that the sub-synchronous vibration can occur well before reaching the threshold speed and that the underlying period-doubling bifurcation depends on the amount of the rotating unbalance. The rotor response and stability are analysed using a numerical continuation method employing the infinitely short journal bearing model. Continuation results are further validated by time simulations which utilise the finite difference method to compute the hydrodynamic forces. The validation process employs bifurcation diagrams, Poincaré sections and numerical estimates of the largest Lyapunov exponents.
Rights: © The Author(s)
Appears in Collections:Články / Articles (NTIS)
Články / Articles (KME)
OBD

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Please use this identifier to cite or link to this item: http://hdl.handle.net/11025/51902

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