Damage detection using curvatures obtained from vehicle measurements

被引:1
作者
Eugene J. OBrien
Daniel Martinez
Abdollah Malekjafarian
Enrique Sevillano
机构
[1] University College Dublin,School of Civil Engineering
来源
Journal of Civil Structural Health Monitoring | 2017年 / 7卷
关键词
Bridge; Drive-by; Damage detection; Structural health monitoring; SHM; Instantaneous curvature; Moving reference curvature;
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中图分类号
学科分类号
摘要
This paper describes a new procedure for bridge damage identification through drive-by monitoring. Instantaneous curvature (IC) is presented as a means to determine a local loss of stiffness in a bridge through measurements collected from a passing instrumented vehicle. Moving reference curvature (MRC) is compared with IC as a damage detection tool. It is assumed that absolute displacements on the bridge can be measured by the vehicle. The bridge is represented by a finite element (FE) model. A Half-car model is used to represent the passing vehicle. Damage is represented as a local loss of stiffness in different parts of the bridge. 1% random noise and no noise environments are considered to evaluate the effectiveness of the method. A generic road surface profile is also assumed. Numerical simulations show that the local damage can be detected using IC if the deflection responses can be measured with sufficient accuracy. Damage quantification can be obtained from MRC.
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页码:333 / 341
页数:8
相关论文
共 107 条
[1]  
Farrar CR(2007)An introduction to structural health monitoring Philos Trans R S Lond A 365 303-315
[2]  
Worden K(2000)Structural health monitoring using statistical process control J Struct Eng 126 1356-1363
[3]  
Sohn H(2007)Structural health monitoring of civil infrastructure Philos Trans R Soc Lond A 365 589-622
[4]  
Czarnecki JA(2004)Recent applications of fiber optic sensors to health monitoring in civil engineering Eng Struct 26 1647-1657
[5]  
Farrar CR(2008)ARMA modelled time-series classification for structural health monitoring of civil infrastructure Mech Syst Signal Process 22 295-314
[6]  
Brownjohn JM(2007)An overview of wireless structural health monitoring for civil structures Philos Trans R Soc Lond A 365 345-372
[7]  
Li H-N(2005)Technology developments in structural health monitoring of large-scale bridges Eng Struct 27 1715-1725
[8]  
Li D-S(2010)Structural health monitoring of a cable-stayed bridge using smart sensor technology: deployment and evaluation Smart Struct Syst 6 439-459
[9]  
Song G-B(2003)Techniques of advanced FBG sensors: fabrication, demodulation, encapsulation, and their application in the structural health monitoring of bridges Pac Sci Rev 5 116-121
[10]  
Carden EP(2001)Fatigue analysis and life prediction of bridges with structural health monitoring data—Part I: methodology and strategy Int J Fatigue 23 45-53