Modal identification of a jacket-type offshore structure using dynamic tilt responses and investigation of tidal effects on modal properties
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Title
- Modal identification of a jacket-type offshore structure using dynamic tilt responses and investigation of tidal effects on modal properties
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Author(s)
- Yi, Jin-Hak; Park, Jin-Soon; Han, Sang-Hun; Lee, Kwang-Soo
- KIOST Author(s)
- Yi, Jin-Hak(이진학); Park, Jin Soon(박진순)
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Publication Year
- 2013-04
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Abstract
- Dynamic responses including acceleration, dynamic tilt, and strain were measured using a long-term monitoring system for the Uldolmok tidal current power plant, which is a jacket-type offshore structure. Modal properties such as natural frequencies and modal damping ratios for the lowest three vibration modes were identified using the proposed least square-based frequency domain decomposition method based on measured dynamic tilt responses. Long-term trends of the identified modal properties were investigated in the time and frequency domains, and it was found that the identified modal properties of the Uldolmok tidal current power plant periodically fluctuated approximately twice a day and also twice a month, and also the identified modal properties were highly correlated with the tidal components M2 and M4. Finally, nonparametric regression models were considered as a Means of modeling the relationship between tidal changes and modal properties and the model with tidal height, tidal current speed and the multiplication of tidal height and speed was found to be the most appropriate one. (C) 2012 Elsevier Ltd. All rights reserved.
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ISSN
- 0141-0296
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URI
- https://sciwatch.kiost.ac.kr/handle/2020.kiost/3241
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DOI
- 10.1016/j.engstruct.2012.12.015
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Bibliographic Citation
- ENGINEERING STRUCTURES, v.49, pp.767 - 781, 2013
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Publisher
- ELSEVIER SCI LTD
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Subject
- EIGENSYSTEM REALIZATION-ALGORITHM; PARAMETER-IDENTIFICATION; TEMPERATURE; BRIDGE; PLATFORMS
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Keywords
- Dynamic tilt response; Least square-based frequency domain decomposition; Modal identification; Long-term monitoring; Jacket-type offshore structures; Tidal effects
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Type
- Article
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Language
- English
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Document Type
- Article
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Publisher
- ELSEVIER SCI LTD
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