Synchronized Vibrations of a Circular Cylinder in Cross Flow at Supercritical Reynolds Numbers1

Author:

Kawamura Tsutomu1,Nakao Toshitsugu2,Takahashi Masanori3,Hayashi Masaaki3,Murayama Kouichi3,Gotoh Nobuho3

Affiliation:

1. Power & Industrial Systems R & D Laboratory, Hitachi, Ltd., Ibaraki 319-1221, Japan

2. Group Business Planning Division, Hitachi, Ltd., Tokyo 101-8010, Japan

3. Nuclear Systems Division, Hitachi, Ltd., Ibaraki 317-8511, Japan

Abstract

Synchronized vibrations of a circular cylinder in a water cross flow at supercritical Reynolds numbers were measured. Turbulence intensities were varied to investigate the effect of the Strouhal number on the synchronization range. Self-excited vibration in the drag direction due to symmetrical vortex shedding began only when the Strouhal number was about 0.29, at a reduced velocity of 1.1. The reduced velocities at the beginning of lock-in vibrations caused by Karman vortex shedding decreased from 1.5 to 1.1 in the drag direction and from 2.7 to 2.2 in the lift direction, as the Strouhal number increased from 0.29 to 0.48.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference23 articles.

1. Morishita, M., and Dozaki, K., 1998, “History of Flow-Induced Vibration Incident Occurred in Monju,” Flow-Induced Vibration and Transient Thermal-Hydraulics, ASME PVP-Vol. 363, pp. 103–108.

2. Ogura, K., Morishita, M., and Yamaguchi, A., 1998, “Cause of Flow-Induced Vibration on Thermocouple Well,” Flow-Induced Vibration and Transient Thermal-Hydraulics, ASME PVP-Vol. 363, pp. 109–117.

3. ASME, 1995, Boiler and Pressure Vessel Code, Section III, Division 1, Appendix N-1300.

4. JSME, 2001, JSME Standard S012-1998, Guideline for Evaluation of Flow-Induced Vibration of a Cylindrical Structure in a Pipe, JSME Int. J. Series B, 44(44), pp. 682–687.

5. King, R., Prosser, M.J., and Johns, D.J., 1973, “On Vortex Excitation of Model Piles in Water,” J. Sound Vib., 29(2), pp. 169–188.

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