메타모델을 이용한 플로트오버 설치 작업용 능동형 갑판 지지프레임의 근사설계최적화Approximate Design Optimization of Active Type Desk Support Frame for Float-over Installation Using Meta-model
- Other Titles
- Approximate Design Optimization of Active Type Desk Support Frame for Float-over Installation Using Meta-model
- Authors
- 이동준; 송창용; 이강수
- Issue Date
- 2021
- Publisher
- 한국산업융합학회
- Keywords
- Active type deck support frame; Float-over installation; Approximate design optimization; Meta-model
- Citation
- 한국산업융합학회논문집, v.24, no.1, pp 31 - 43
- Pages
- 13
- Journal Title
- 한국산업융합학회논문집
- Volume
- 24
- Number
- 1
- Start Page
- 31
- End Page
- 43
- URI
- https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/187
- DOI
- 10.21289/KSIC.2021.24.1.31
- ISSN
- 1226-833x
- Abstract
- In this study, approximate design optimization using various meta-models was performed for the structural design of active type deck support frame. The active type deck support frame was newly developed to facilitate both transportation and installation of 20,000 ton class offshore plant topside. Structural analysis was carried out using the finite element method to evaluate the strength performance of the active type deck support frame in its initial design stage. In the structural analysis, the strength performances were evaluated for various design load conditions that were regulated in ship classification organization. The approximate optimum design problem based on meta-model was formulated such that thickness sizing variables of main structure members were determined by achieving the minimum weight of the active type deck support frame subject to the strength performance constraints. The meta-models used in the approximate design optimization were response surface method, Kriging model, and Chebyshev orthogonal polynomials. The results from approximate design optimization were compared to actual non-approximate design optimization. The Chebyshev orthogonal polynomials among the meta-models used in the approximate design optimization represented the most pertinent optimum design results for the structure design of the active type deck support frame.
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