Development of method for in-service crack detection based on distributed fiber optic sensors

被引:130
|
作者
Glisic, Branko [1 ]
Inaudi, Daniele [2 ]
机构
[1] Princeton Univ, Dept Civil & Environm Engn, Princeton, NJ 08544 USA
[2] SMARTEC SA, CH-6928 Manno, Switzerland
基金
美国国家科学基金会;
关键词
fiber-optic sensors; fracture critical bridges; in-service crack detection; structural health monitoring; Brillouin scattering; SCATTERING;
D O I
10.1177/1475921711414233
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Many bridges worldwide are approaching the end of their lifespan and it is necessary to assess their health condition in order to mitigate risks, prevent disasters, and plan maintenance activities in an optimized manner. Fracture critical bridges are of particular interest since they have only little or no load path redundancy. Structural health monitoring (SHM) has recently emerged as a branch of engineering, which aim is to improve the assessment of structural condition. Distributed optical fiber sensing technology has opened new possibilities in SHM. A distributed deformation sensor (sensing cable) is sensitive at each point of its length to strain changes and cracks. Such a sensor practically monitors a one-dimensional strain field and can be installed over all the length of the monitored structural members, thereby providing with integrity monitoring, i.e. direct detection and characterization (including recognition, localization, and quantification or rating) of local strain changes generated by damage. Integrity monitoring principles are developed and presented in this article. A large scale laboratory test and a real on-site application are briefly presented.
引用
收藏
页码:161 / 171
页数:11
相关论文
共 50 条
  • [31] Recent Development in the Distributed Fiber Optic Acoustic and Ultrasonic Detection
    Bao, Xiaoyi
    Zhou, Da-Peng
    Baker, Chams
    Chen, Liang
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2017, 35 (16) : 3256 - 3267
  • [32] Recent Progress in Distributed Fiber Optic Sensors
    Bao, Xiaoyi
    Chen, Liang
    SENSORS, 2012, 12 (07) : 8601 - 8639
  • [33] Stretchable distributed fiber-optic sensors
    Bai, Hedan
    Li, Shuo
    Barreiros, Jose
    Tu, Yaqi
    Pollock, Clifford R.
    Shepherd, Robert F.
    SCIENCE, 2020, 370 (6518) : 848 - +
  • [34] Distributed measurements of structures by fiber optic sensors
    II-Bum Kwon
    KSCE Journal of Civil Engineering, 2003, 7 (6) : 659 - 666
  • [35] Method and theory for a multi-gauge distributed fiber optic crack sensor
    Gu, XL
    Chen, ZY
    Ansari, F
    JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 1999, 10 (02) : 176 - 183
  • [36] Distributed detection of upheaval buckling for buried pipelines with Brillouin fiber optic sensors
    Wu, Wenjing
    Feng, Xin
    AOPC 2021: OPTICAL SENSING AND IMAGING TECHNOLOGY, 2021, 12065
  • [37] Automatic interpretation of strain distributions measured from distributed fiber optic sensors for crack monitoring
    Liu, Yiming
    Bao, Yi
    MEASUREMENT, 2023, 211
  • [38] Real time leak detection system in earth dams using distributed sensors based on optic fiber
    Munoz, O.
    Gomez, R.
    Russo, B.
    Sanchez, J. C.
    INGENIERIA DEL AGUA, 2016, 20 (02): : 103 - 114
  • [39] Wavelet-based data processing for distributed fiber optic sensors
    Xu, Hong-Zhong
    Zhang, Dan
    PROCEEDINGS OF 2006 INTERNATIONAL CONFERENCE ON MACHINE LEARNING AND CYBERNETICS, VOLS 1-7, 2006, : 4040 - +
  • [40] Smart Geosynthetics Based on Distributed Fiber Optic Sensors in Geotechnical Engineering
    Wosniok, A.
    Krebber, K.
    GEOTECHNICAL ENGINEERING, 2019, 50 (02): : 91 - 95