A dynamic model for the ice-induced vibration (IIV) of structures is developed in the present study. Ice properties have been taken into account, such as the discrete failure, the dependence of the crushing strength on the ice velocity, and the randomness of ice failure. The most important prediction of the model is to capture the resonant frequency lock-in, which is analog to that in the vortex-induced vibration. Based on the model, the mechanism of resonant IIV is discussed. It is found that the dependence of the ice crushing strength on the ice velocity plays an important role in the resonant frequency lock-in of IIV. In addition, an intermittent stochastic resonant vibration is simulated from the model. These predictions are supported by the laboratory and field observations reported. The present model is more productive than the previous models of IIV.
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February 2009
Polar And Arctic Engineering
A Dynamic Model for Ice-Induced Vibration of Structures
Guojun Huang,
Guojun Huang
Associate Professor
Department of Engineering Science, Institute of Mechanics,
ghuang@imech.ac.cn
Chinese Academy of Sciences
, 15 Bei Si Huan Xi Road, Beijing 100080, China
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Pengfei Liu
Pengfei Liu
Senior Research Officer
Institute for Ocean Technology,
pengfei.liu@nrc-cnrc.gc.ca
National Research Council Canada
, 1 Kerwin Place, P.O. Box 12093, St. John's, NL, A1B 3T5, Canada
Search for other works by this author on:
Guojun Huang
Associate Professor
Department of Engineering Science, Institute of Mechanics,
Chinese Academy of Sciences
, 15 Bei Si Huan Xi Road, Beijing 100080, Chinaghuang@imech.ac.cn
Pengfei Liu
Senior Research Officer
Institute for Ocean Technology,
National Research Council Canada
, 1 Kerwin Place, P.O. Box 12093, St. John's, NL, A1B 3T5, Canadapengfei.liu@nrc-cnrc.gc.ca
J. Offshore Mech. Arct. Eng. Feb 2009, 131(1): 011501 (6 pages)
Published Online: December 11, 2008
Article history
Received:
April 22, 2006
Revised:
June 8, 2008
Published:
December 11, 2008
Citation
Huang, G., and Liu, P. (December 11, 2008). "A Dynamic Model for Ice-Induced Vibration of Structures." ASME. J. Offshore Mech. Arct. Eng. February 2009; 131(1): 011501. https://doi.org/10.1115/1.2979795
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