Risk Assessment of Offshore Wind Turbines Suction Bucket Foundation Subject to Multi-Hazard Events

Author:

Ngo Duc-Vu1,Kim Young-Jin1,Kim Dong-Hyawn2ORCID

Affiliation:

1. Department of Ocean Science and Engineering, Kunsan National University, Gunsan 54150, Republic of Korea

2. School of Architecture and Coastal Construction Engineering, Kunsan National University, Gunsan 54150, Republic of Korea

Abstract

For the offshore wind turbines (OWTs) located in a seismically active region, the occurrence of earthquakes combined with scour is a highly possible multi-hazard event. This study developed an alternative fragility analysis framework to assess the seismic performance of suction bucket-supported OWTs under the action of scour. First, the probabilistic approach was applied to calculate the occurrence probability of scour depth (SD) and earthquake events. Then, the possible combinations of these two events were considered in the analysis model to establish the fragility surface of the suction bucket foundation. Finally, by integrating the product of scour and earthquake hazard, as well as fragility curves, the suction bucket foundation failure probability was obtained. The developed framework provides a reliable approach to risk assessment for OWT-supporting structures in extreme event situations and can be applied to other complex natural hazards.

Funder

Korea government Ministry of Trade, Industry, and Energy

Korea government

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference34 articles.

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2. (2022, October 25). Offshore Wind Market Analysis: South Korea Raises Capacity Target to 18–20 GW for 2030. Available online: https://www.infolink-group.com/energy-article/Offshore-wind-market-analysis-South-Korea-raises-capacity-target-to-18-20-GW-For-2030.

3. (2014). DNV-OS-J101-Design of Offshore Wind Turbine Structures, DNV. DET NORSKE VERITAS 2014.

4. Melling, G.J. (2015). Hydrodynamic and Geotechnical Controls of Scour around Offshore Monopiles. [Ph.D. Thesis, University of Southampton].

5. Tempel, J.V.D., Zaaijer, M.B., and Subroto, H. (2004). The Effects of Scour on the Design of Offshore Wind Turbines, The East of England Energy Group (EEEGR).

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