The Numerical Identification of Basins of Attraction for the Vibration Response of the Rigid Rotor with Squeeze Film Dampers

Author:

Molčan Michal12,Ferfecki Petr1ORCID,Zapoměl Jaroslav23

Affiliation:

1. IT4Innovations National Supercomputing Center, VSB-Technical University of Ostrava, 17. listopadu 2172/15, 708 33 Ostrava-Poruba, Czech Republic

2. Department of Applied Mechanics, VSB-Technical University of Ostrava, 17. listopadu 2172/15, 708 33 Ostrava-Poruba, Czech Republic

3. Department of Dynamics and Vibrations, Institute of Thermomechanics, CAS, Dolejškova 1402/5, 182 00 Prague 8, Czech Republic

Abstract

The article deals with the computational study of the rigid rotor coupled with squeeze film dampers. Various techniques such as the method of computation of the synchronous response with a circular centred orbit, the harmonic balance method, and the direct time integration method are used to analyse the nonlinear behaviour of the rotor system. The results indicate that the rotor system can exhibit both a synchronous circular response with a large orbit radius and a nonsynchronous response with a quasiperiodic character. However, both responses are undesirable in rotating machinery and should be avoided. The new results are presented to provide insight into the impact of initial conditions on the vibration response via basins of attraction. The simulations show that: (i) the basins of attraction are more sensitive to the choice of the initial velocities than displacements, (ii) the basins of attraction are noticeably dependent on the rotor speed in the region of a nonsynchronous response, and (iii) the border between the basins of attraction can be smooth or without a clear structure. The research brings clear conditions defined by parameters such as the dimensionless SFD constant, unbalance, and rotational speed for the suppression of undesirable nonlinear phenomena. The results suggest that the damper can effectively improve the vibration response of high-speed rotating machinery, but its design must be chosen appropriately.

Funder

Ministry of Education, Youth and Sports of the Czech Republic through the e-INFRA CZ

Doctoral Grant Competition of Technical University of Ostrava

Operational Programme Research, Development and Education

Support for Science and Research in the Moravian-Silesian Region

Project of Specific University Research

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference43 articles.

1. The Squeeze Film Damper over Four Decades of Investigations. Part I: Characteristics and Operating Features;Pietra;Shock Vib. Dig.,2002

2. The Squeeze Film Damper over Four Decades of Investigations. Part II: Rotordynamic Analyses with Rigid and Flexible Rotors;Pietra;Shock Vib. Dig.,2002

3. Dynamic Characteristics of Flexible Rotor with Squeeze Film Damper Excited by Two Frequencies;Chen;Nonlinear Dyn.,2017

4. Bifurcation Analysis of a Rigid-rotor Squeeze Film Damper System with Unsymmetrical Stiffness Supports;Chen;Arch. Appl. Mech.,2017

5. Analysis of the Multiple-solution Response of a Flexible Rotor Supported on Non-linear Squeeze Film Dampers;Zhu;J. Sound Vib.,2002

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