Assessment of the aerodynamic response of bridge decks by means of 2D Reynolds averaged Navier-Stokes simulations

F. Nieto, S. Hernández, I. Kusano, J. Jurado

Producción científica: Capítulo del libroContribución a congreso/conferenciarevisión exhaustiva

Resumen

The results of several bridge decks 2D steady and unsteady RANS (Reynolds Averaged Navier-Stokes) simulations are reported in this work. The focus has been put on the potential of CFD based simulations in industrial applications in the realm of bridge engineering aerodynamic and aeroelastic problems. The force coefficients of a box deck have been computed at different angles of attack finding a good match with the experimental data available in the literature. Also CFD steady simulations have been used to obtain the force coefficients of a Π section considered in the original design proposal of a cable-stayed bridge. Based on the numerical computations, modifications in the original design have been proposed adding fairings and baffles which showed an improved aerodynamic response. The scale effects in the performance of guide vanes for mitigating the vortex-induced response of a twin box girder have been analyzed by means of CFD obtaining a good agreement with experimental measurements. Finally the effect of wind barriers in a twin box deck have been assessed based on the spectrum of the lift coefficient for both the cross-section fitted with or without wind barriers.

Idioma originalInglés
Título de la publicación alojadaWIT Transactions on Engineering Sciences
EditoresCarlos A. Brebbia, S. Hernandez, M. Rahman
EditorialWITpress
Páginas407-417
Número de páginas11
ISBN (versión digital)9781845647902
DOI
EstadoPublicada - 1 jul 2014
Publicado de forma externa
Evento10th International Conference on Advances in Fluid Mechanics, AFM 2014 - A Coruna, Espana
Duración: 1 jul 20143 jul 2014

Serie de la publicación

NombreWIT Transactions on Engineering Sciences
Volumen82
ISSN (versión impresa)1743-3533

Conferencia

Conferencia10th International Conference on Advances in Fluid Mechanics, AFM 2014
País/TerritorioEspana
CiudadA Coruna
Período1/07/143/07/14

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