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논문 기본 정보

자료유형
학술저널
저자정보
Joo-Shin Park (Samsung Heavy Industries) Seon-Hyeok Kim (Pusan National University) Jung Kwan Seo (Pusan National University)
저널정보
한국마린엔지니어링학회 Journal of Advanced Marine Engineering and Technology (JAMET) 한국마린엔지니어링학회지 제47권 제5호
발행연도
2023.10
수록면
252 - 260 (9page)
DOI
10.5916/jamet.2023.47.5.252

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The wind power industry continues to grow, driven by environmental concerns such as achieving carbon neutrality, which has recently gained prominence. Creating wind farms poses several challenges due to limited land availability and insufficient wind resources. Consequently, offshore wind projects are garnering attention, particularly in domestic conditions. Notably, the Southwest Sea of Korea exhibits the highest offshore wind potential and has validated this potential through demonstrations. The primary geological characteristic of the Southwest Sea is a weak clay layer. To ensure the stable operation of generators, enhancing the precision of the substructure becomes imperative. This study presents an engineering procedure for developing a jacket-shaped wind turbine substructure, which was analyzed to assess the impact of soil properties on structural strength. In a previous study, wind turbine capacity targeted 5 MW. However, in alignment with the technological trend in the Southwest Sea offshore wind turbine market, this analysis model focuses on the 12 MW class. The structural response under varying soil conditions was verified using data from the North Sea, Mexico Bay, and Southwest Sea. The findings of this study not only contribute to designing structurally sound wind turbine substructures but also serve as essential reference data for engineers in related fields, providing insights into structural safety design and analytical verification processes.

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Abstract
1. Introduction
2. Design Condition
3. FE based Structural Evaluation
4. Conclusion
References

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