Active Control of Multi-Mode Rotor-Bearing Systems Using HSFDs

Author:

Hathout J. P.1,El-Shafei A.1,Youssef R.1

Affiliation:

1. Department of Mechanical Design and Production, Faculty of Engineering, Cairo University, Giza, Egypt

Abstract

This paper summarizes the modeling and control of hybrid squeeze film dampers (HSFDs) for active control of vibration of rotors exhibiting multiple modes. In a recent paper (El-Shafei and Hathout, 1994), it was shown that the automatically controlled HSFD based on feedback on rotor speed can be a very efficient device for active control of rotor vibration. It was shown that this closed-loop, on-off control strategy results in a much improved behavior of the rotor system. The previous investigation was performed on a Jeffcott rotor model. The model was simple and fluid inertia effects were not taken into consideration. In this paper, major strides were made in both the modeling of the rotor and the HSFD. Modal analysis was implemented in the dynamic analysis of the squeeze film damper supported rotor in a novel and unique manner of performing modal analysis on nonlinear rotor systems. This allowed the modeling of any number of modes using modal analysis and hence to verify the capability of the HSFD to control multiple modes. Also, fluid inertia forces were considered in our model for the HSFD due to their direct influence in changing the behavior of the damper (El-Shafei and Crandall, 1991). A complete mathematical model of this open-loop system is developed and is implemented on a digital computer. Finally, based on the feedback on speed, the closed-loop behavior was studied from both steady-state and transient points of view and showed an overall enhanced behavior for the rotor system.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

Reference21 articles.

1. Adams, M. L., and Zahloul, H., 1987, “Attenuation of Rotor Vibration Using Controlled-Pressure Hydrostatic Squeeze-Film Dampers,” presented at the Eleventh Biennial ASME Vibrations Conference, Boston, MA, Sept 1987.

2. Bonneau, O., Kassai, A., Frene, J., and Der Hagopian, J., 1989, “Dynamical Behavior of an Elastic Rotor with Squeeze Film Damper,” Eurotrib 89, Helsinki, Finland, Proceedings Vol. 4, pp 145–149.

3. Burrows, C. R., Sahinkaya, M. N., M. N., and Turkay, O. S., 1983, “An Adaptive Squeeze-Film Bearing,” ASME Paper No. 83-Lub-23.

4. Childs D. W. , 1974a, “A Rotor-Fixed Modal Simulation Model for Flexible Rotating Equipment,” ASME Journal of Engineering for Industry, Vol. 96, No. 2, pp. 659–669, May.

5. Childs, D. W., 1974b “Two Jeffcott-Based Modal Simulation Models for Flexible Rotating Equipment,” J. Engng. Industry, ASME Paper No. 74-WA/DE-17, 1974.

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