On the stabilising effect of gyroscopic moments in an automotive turbocharger

Author:

Kamesh Punithavathy1,Brennan Michael J2,Holmes Roy3

Affiliation:

1. Institute of Sound and Vibration Research, University of Southampton, UK

2. Departamento do Engenharia Mecânica, UNESP, Ilha Solteira, Brazil

3. School of Engineering Sciences, University of Southampton, UK

Abstract

Automotive turbochargers, which operate at very high speeds, exceeding 180,000 r/min, exhibit two strong sub-harmonic modes of vibrations due to oil-whirl instability. These are a conical mode and an in-phase whirl mode. The gyroscopic effects can be very important in such a rotor system. This article presents a theoretical investigation into these effects on the conical whirl instability of a turbocharger induced by the angular (tilting) motion of a rigid rotor. A simplified linear model is used to analyse the rotor-bearing system by investigating the effects of the gyroscopic moment on the internal moments. A gyroscopic coefficient, defined by the geometry of the rotor, is shown to govern the stability of the conical whirl motion. A threshold value of ½ is determined for this coefficient to suppress the conical whirl. This value remains unaffected if the rotor is asymmetric and is supported by floating ring bearings, which is the case in a practical turbocharger.

Publisher

SAGE Publications

Subject

Mechanical Engineering

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