Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10553/136704
Título: PSO-based design and optimization of jacket substructures for offshore wind turbines
Autores/as: Benítez Suárez, Borja 
Quevedo Reina, Román 
Álamo Meneses, Guillermo Manuel 
Padrón Hernández, Luis Alberto 
Clasificación UNESCO: 330506 Ingeniería civil
330533 Resistencia de estructuras
Palabras clave: Wind energy
Offshore wind turbine
Jacket support structure
Structural optimization
Particle swarm optimization, et al.
Fecha de publicación: 2025
Proyectos: Diseño de Estructuras Soporte de Aerogeneradores Marinos Mediante Redes Neuronales Incluyendo Modelos Avanzados de Interacción Dinámica Suelo-Estructuray Excitación Sísmica 
Publicación seriada: Marine Structures 
Resumen: The search for more and better wind resources pushes offshore wind farms further into deeper waters, where jacket support structures become a competitive alternative to monopiles for bottom-fixed offshore wind turbines. In this context, this paper proposes a cost-effective methodology for the autonomous design that facilitates the generation of preliminary candidate designs of jacket substructures, reaching a level of detail suitable for the initial design phase. A Particle Swarm Optimization algorithm, with precomputed initial swarms, is used as a search and optimization tool. The proposed strategy is able to find candidate designs that satisfy, with a minimum use of material, a wide range of Ultimate Limit States, Fatigue Limit States and Geometrical Restrictions. It is shown that the use of a precomputed initial swarm generated taking into account a starting concept design of the structures with a low computational cost, instead of a standard random population, significantly improves the efficacy and efficiency of the algorithm. A reference case, based on the NREL-5MW wind turbine and its OC4 reference jacket support structure, is used for studying and illustrating the capabilities of the proposal.
URI: http://hdl.handle.net/10553/136704
ISSN: 0951-8339
DOI: 10.1016/j.marstruc.2024.103759
Fuente: Marine Structures [ISSN 0951-8339], v. 101, p. 1-21
Colección:Artículos
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