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Study on Spudcan Soil-Structure Interaction of a Wind Turbine Installation Vessel

Authors
Jin, HaibinLee, KangsuChoi, JunhwanJang, Beom-Seon
Issue Date
9월-2019
Publisher
INT SOC OFFSHORE POLAR ENGINEERS
Keywords
Spudcan; bearing capacity; soil-structure interaction; soil stiffness; yield surface
Citation
INTERNATIONAL JOURNAL OF OFFSHORE AND POLAR ENGINEERING, v.29, no.3, pp 329 - 338
Pages
10
Journal Title
INTERNATIONAL JOURNAL OF OFFSHORE AND POLAR ENGINEERING
Volume
29
Number
3
Start Page
329
End Page
338
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/328
DOI
10.17736/ijope.2019.cl14
ISSN
1053-5381
Abstract
A site-specific assessment should be performed before a wind turbine installation vessel (WTIV) operates at a given location. In the present study, structural assessments of a WTIV were performed in the southwest sea of South Korea. Spudcan penetration behavior was calculated, and a load path under the horizontal environmental load was predicted using International Organization for Standardization (ISO) 19905-1. The complex stress and strain state of the soil under the spudcan commonly is simplified, as a boundary condition, to a value of soil stiffness. These boundary conditions include pinned footings, fixed footings, and a foundation model based on the ISO. Soil-structure interaction effects can be considered when the boundary conditions are set as springs with a corresponding yield surface. From the present structural analysis results, a reduction in the stresses of the members at the leg-hull connection could be found. Yield first occurred in the leeward spudcan, after which the moment in the spudcan decreased. Also, penetration depth and soil capacity were found to have had significant impacts on the structural analysis results.
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Lee, Kang su
친환경해양개발연구본부
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