Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10553/46220
Título: Numerical simulation of transonic flows by a double loop flexible evolution
Autores/as: Winter, Gabriel 
González, Begoña 
Galván, Blas 
Benítez, Esteban
Clasificación UNESCO: 1206 Análisis numérico
120601 Construcción de algoritmos
120326 Simulación
Fecha de publicación: 2006
Publicación seriada: Parallel Computational Fluid Dynamics 2005
Conferencia: International Conference Parallel Computational Fluid Dynamics (PCFD05)
Resumen: The chapter presents a methodology that uses evolutionary algorithms to obtain fluid velocities for potential flows inside a nozzle. A genetic algorithm with real encoding which, with the technique of partial sampling of the solution nodes, presents a number of advantages over other evolutionary algorithms is proposed in the chapter. These include the avoidance of a rigid connectivity to discretize the domain, thus making it a meshless method. The chapter also proposes a double-loop strategy with EAs which enables improvement of the methodology. The amount of computer storage is low and convergence behavior is good as the qualitative characteristics of the solution are taken into account in the algorithm. The artificial intelligence based on evolutionary algorithms can bring together lessons learned by developers and decision tools into advanced software developments, which can facilitate their use to solve complex challenging problems in industry.
URI: http://hdl.handle.net/10553/46220
ISBN: 978-0-444-52206-1
DOI: 10.1016/B978-044452206-1/50034-3
Fuente: Parallel Computational Fluid Dynamics 2005, p. 285-292
Colección:Capítulo de libro
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