Uncertainties quantification for damage localization in concrete based on Bayesian method

被引:0
作者
Zhang, Minghui [1 ]
Zhou, Deyuan [1 ]
Yang, Xia [1 ]
Sun, Xiangtao [1 ]
Kong, Qingzhao [1 ]
机构
[1] Tongji Univ, Dept Disaster Mitigat Struct, Shanghai 200092, Peoples R China
关键词
Bayesian method; Damage localization; Meso-level concrete numerical model; Structural health monitoring; DEBONDING DETECTION; IDENTIFICATION; ULTRASOUND; WAVES;
D O I
10.1016/j.probengmech.2024.103660
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The presence of defects in concrete can diminish load-bearing capacity of structures, giving rise to potential concerns regarding safety and durability. Thus, a method that enhances the sensitivity, resolution and robustness of damage localization is critically necessary to assess the condition of concrete structures. This research presents a damage localization method based on Bayesian probabilistic fusion, and uncertainties from measurement and identification process are considered and quantified. The likelihood function is constructed based on the hyperbola-based damage localization method, and the posterior distributions of unknown parameters are calculated via Bayesian theorem combined with measurement data. Furthermore, a meso-level finite element model is established, wherein the concrete medium is considered as a three-phase composite material consisting of polygonal aggregates, mortar matrix and interface transition zones. Owing to the meso-level modeling, the propagation behavior of stress waves within concrete and complicated interactions between stress waves and concrete internal structures can be better characterized. Finally, the damage information, time-difference-of arrival, is extracted from the response signals and the efficiency of the proposed method is verified numerically. The numerical results demonstrate that the proposed probabilistic fusion method outperforms the conventional hyperbola-based method in terms of achieving high spatial resolution and resilience in damage localization.
引用
收藏
页数:10
相关论文
共 31 条
  • [1] Mechanical impedance based embedded piezoelectric transducer for reinforced concrete structural impact damage detection: A comparative study
    Ai, Demi
    Zhu, Hongping
    Luo, Hui
    Wang, Chao
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2018, 165 : 472 - 483
  • [2] Ultrasonic imaging of concrete using scattered elastic wave modes
    Beniwal, Surendra
    Ghosh, Debdutta
    Ganguli, Abhijit
    [J]. NDT & E INTERNATIONAL, 2016, 82 : 26 - 35
  • [3] A robust Bayesian methodology for damage localization in plate-like structures using ultrasonic guided-waves
    Cantero-Chinchilla, Sergio
    Chiachio, Juan
    Chiachio, Manuel
    Chronopoulos, Dimitrios
    Jones, Arthur
    [J]. MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2019, 122 : 192 - 205
  • [4] Review of wave method-based non-destructive testing for steel-concrete composite structures: Multiscale simulation and multi-physics coupling analysis
    Chen, Hongbing
    Zhou, Meng
    Gan, Shiyu
    Nie, Xin
    Xu, Bin
    Mo, Y. L.
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2021, 302
  • [5] A review of some advanced sensors used for health diagnosis of civil engineering structures
    Das, Swagato
    Saha, Purnachandra
    [J]. MEASUREMENT, 2018, 129 : 68 - 90
  • [6] A feasibility study on real-time evaluation of concrete surface crack repairing using embedded piezoceramic transducers
    Feng, Qian
    Cui, Jun
    Wang, Qiuliang
    Fan, Shuli
    Kong, Qingzhao
    [J]. MEASUREMENT, 2018, 122 : 591 - 596
  • [7] Maximum-likelihood estimation of damage location in guided-wave structural health monitoring
    Flynn, Eric B.
    Todd, Michael D.
    Wilcox, Paul D.
    Drinkwater, Bruce W.
    Croxford, Anthony J.
    [J]. PROCEEDINGS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2011, 467 (2133): : 2575 - 2596
  • [8] Time reversal damage localization in concrete based on two-dimensional meso-scale modeling
    Gao, Weihang
    Zhang, Caiyan
    Song, Gangbing
    Li, Hong-Nan
    [J]. STRUCTURAL HEALTH MONITORING-AN INTERNATIONAL JOURNAL, 2021, 20 (01): : 188 - 201
  • [9] Smart concrete slabs with embedded tubular PZT transducers for damage detection
    Gao, Weihang
    Huo, Linsheng
    Li, Hongnan
    Song, Gangbing
    [J]. SMART MATERIALS AND STRUCTURES, 2018, 27 (02)
  • [10] Qualitative assessment of concrete by ultrasound tomography
    Haach, Vladimir G.
    Ramirez, Fernando C.
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2016, 119 : 61 - 70