• DocumentCode
    3261027
  • Title

    A new stiffness correction method based on finite element for in-service girder bridges

  • Author

    Wang, Lingbo ; He, Shuanhai

  • Author_Institution
    Key Lab. for Bridge & Tunnel of ShannXi Province, Chang´´an Univ., Xi´´an, China
  • fYear
    2011
  • fDate
    22-24 April 2011
  • Firstpage
    25
  • Lastpage
    28
  • Abstract
    Aiming at the difficulty and shortage in stiffness calculation and analysis for in-service bridges, according to plane cross - section assumption and finite element theory, deduces solving equations of longitudinal N - sections stiffness, using deflection testing results to correct longitudinal stiffness of bridges, and implement real beam outdoor test to verify the theory. The experimental results show that the deflection theoretical value for each measure point in longitudinal beam, which is calculated by new article algorithm, coincides well with the experimental ones. This method can be used to calculate longitudinal stiffness defect caused by all kinds of damage, lock damage range quickly, estimate damage degree effectively, and distinguish damage condition for the whole longitudinal beam accurately. The comparison and analysis indicate that the stiffness calculated by this algorithm has higher precision than the ones calculated by bridge standard. It reflects the whole damage status for in - service bridges veritably and reliably, which is easy for the engineers to identify invisible bridge damage areas and evaluate the bridge service lives.
  • Keywords
    beams (structures); bridges (structures); condition monitoring; finite element analysis; mechanical testing; structural engineering; supports; bridge damage areas; bridge service lives; finite element theory; in-service girder bridges; longitudinal N-section stiffness; longitudinal beam; real beam outdoor test; stiffness correction method; Bridges; Concrete; Equations; Finite element methods; Mathematical model; Structural beams; Testing; damage; detection; finite element; simple supported girder bridge; stiffness;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electric Technology and Civil Engineering (ICETCE), 2011 International Conference on
  • Conference_Location
    Lushan
  • Print_ISBN
    978-1-4577-0289-1
  • Type

    conf

  • DOI
    10.1109/ICETCE.2011.5776435
  • Filename
    5776435