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Some experiences on reliability based aeroelastic analysis and optimization of long span bridges

  • Aitor Baldomir
  • , Ibuki Kusano
  • , Jose A. Jurado
  • , Santiago Hernandez
  • , AS Perez
  • , EH Montez
  • , LMG Martin
  • , MDG Pulido

Producción científica: Capítulo del libroContribución a congreso/conferenciarevisión exhaustiva

Resumen

Flutter instability in suspension bridges is a critical design constraint. It has been demonstrated over the years that wind tunnel tests produce the more reliable results although there is uncertainty in their values. Thus a probabilistic analysis approach is more appropriate when dealing with this kind of structures. In this research the probability of failure against flutter is obtained considering the wind velocity at the bridge location as well as the points that define the flutter derivatives as random variables. A reliability-based design optimization (RBDO) is also formulated to obtain the minimum deck and cable weight that guaranties a target safety level against flutter. Three RBDO methods are implemented in this research (Reliability Index Approach, Performance Measure Approach and Sequential Optimization and Reliability Assessment) and they are applied to the case of the Messina Bridge Project.
Idioma originalEspañol
Título de la publicación alojada4th International Conference On Mechanical Models In Structural Engineering (cmmost 2017)
EditoresVC Cardiel, MC Perez
EditorialUniv Politecnica Madrid
Páginas15-30
Número de páginas16
ISBN (versión digital)978-84-17293-12-3
EstadoPublicada - 2017
Publicado de forma externa
Evento4th International Conference on Mechanical Models in Structural Engineering (CMMoST) - Madrid, Espana
Duración: 29 nov 20171 dic 2017

Conferencia

Conferencia4th International Conference on Mechanical Models in Structural Engineering (CMMoST)
País/TerritorioEspana
CiudadMadrid
Período29/11/171/12/17

Palabras clave

  • Flutter derivatives
  • Optimization
  • Rbdo
  • Reliability
  • Suspension bridges

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