Forced Response of a Squeeze Film Damper and Identification of Force Coefficients From Large Orbital Motions

Author:

San Andre´s Luis1,De Santiago Oscar2

Affiliation:

1. Texas A&M University

2. Dresser-Rand Co.

Abstract

Experimentally derived damping and inertia force coefficients from a test squeeze film damper for various dynamic load conditions are reported. Shakers exert single frequency loads and induce circular and elliptical orbits of increasing amplitudes. Measurements of the applied loads, bearing displacements and accelerations permit the identification of force coefficients for operation at three whirl frequencies (40, 50, and 60 Hz) and increasing lubricant temperatures. Measurements of film pressures reveal an early onset of air ingestion. Identified damping force coefficients agree well with predictions based on the short length bearing model only if an effective damper length is used. A published two-phase flow model for air entrainment allows the prediction of the effective damper length, and which ranges from 82% to 78% of the damper physical length as the whirl excitation frequency increases. Justifications for the effective length or reduced (flow) viscosity follow from the small through flow rate, not large enough to offset the dynamic volume changes. The measurements and analysis thus show the pervasiveness of air entrainment, whose effect increases with the amplitude and frequency of the dynamic journal motions. Identified inertia coefficients are approximately twice as large as those derived from classical theory.

Publisher

ASME International

Subject

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

Reference15 articles.

1. Diaz, S., and San Andre´s, L., 2001, “Air Entrainment Versus Lubricant Vaporization in Squeeze Film Dampers: An Experimental Assessment of Their Fundamental Differences,” ASME J. Eng. Gas Turbines Power, 123(4), pp. 871–877.

2. Diaz, S., and San Andre´s, L., 1999, “Reduction of the Dynamic Load Capacity in a Squeeze Film Damper Operating With a Bubbly Lubricant,” ASME J. Eng. Gas Turbines Power, 121, pp. 703–709.

3. Zeidan, F., San Andre´s, L., and Vance, J., 1996, “Design and Application of Squeeze Film Dampers in Rotating Machinery,” Proceedings of the 25th Turbomachinery Symposium, Turbomachinery Laboratory, Texas A&M University, pp. 169, 188.

4. Della Pietra, L., and Adiletta, G., 2002, “The Squeeze Film Damper Over Four Decades of Investigations. Part I: Characteristics and Operating Features,” Shock Vib. Dig., 34(1), pp. 3–26.

5. Adiletta, G., and Della Pietra, L., 2002, “The Squeeze Film Damper Over Four Decades of Investigations. Part II: Rotordynamic Analysis With Rigid and Flexible Rotors,” Shock Vib. Dig., 34(2), pp. 97–126.

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