DocumentCode
1790438
Title
Effect of damping on galloping of circular cylinders
Author
Garcia, Elizabeth M. H. ; Che-Chun Chang ; Hongrae Park ; Bernitsas, Michael M.
Author_Institution
Naval Archit. & Marine Eng, U.S. Coast Guard Acad., New London, CT, USA
fYear
2014
fDate
14-19 Sept. 2014
Firstpage
1
Lastpage
5
Abstract
Galloping motion has long been differentiated from other flow-induced motions like VIV and flutter based on the asymmetry of the flow present causing instability. Galloping instabilities can occur for circular cylinders due to proximity to a boundary or asymmetric cross-sections from strakes or other flow interference. The response of a bluff body due to galloping instabilities is still an active area of research. For VIV, such parameters as variable added mass term [1] and a damping parameter c* [2] have been introduced. This paper demonstrates that these parameters have the potential of being applied to galloping to model it as a distinct resonance phenomenon from other flow-induced motions. Additionally, it is demonstrate that the amplitudes of motion, variable added-mass, and lift are very sensitive to the added damping coefficient, but the initiation of galloping remains largely dependent on the natural frequency of the cylinder with little sensitivity to the damping.
Keywords
damping; flow instability; resonance; shapes (structures); vortices; VIV; asymmetric cross-sections; bluff body response; boundary cross-sections; circular cylinder galloping motion; damping parameter; damping sensitivity; flow asymmetry; flow instability; flow interference; flow-induced motions; flutter; galloping instabilities; lift; motion amplitudes; natural frequency; resonance phenomenon; variable added mass term; Damping; Educational institutions; Frequency conversion; Oscillators; Resonant frequency; Springs; Vibrations; damping coefficient; gallop; variable added mass;
fLanguage
English
Publisher
ieee
Conference_Titel
Oceans - St. John's, 2014
Conference_Location
St. John´s, NL
Print_ISBN
978-1-4799-4920-5
Type
conf
DOI
10.1109/OCEANS.2014.7003254
Filename
7003254
Link To Document