Damage detection in beam-like structures using static shear energy redistribution

被引:0
|
作者
Xi Peng
Qiuwei Yang
机构
[1] Ningbo University of Technology,School of Civil and Transportation Engineering
[2] Ningbo University of Technology,Engineering Research Center of Industrial Construction in Civil Engineering of Zhejiang
关键词
damage detection; beam structure; strain energy; static displacement variation; energy damage index;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, a static shear energy algorithm is presented for the damage assessment of beam-like structures. According to the energy release principle, the strain energy of a damaged element suddenly changes when structural damage occurs. Therefore, the change in the static shear energy is employed to determine the damage locations in beam-like structures. The static shear energy is derived from the spectral factorization of the elementary stiffness matrix and structural deflection variation. The advantage of using shear energy as opposed to total energy is that only a few deflection data points of the beam structure are required during the process of damage identification. Another advantage of the proposed approach is that damage detection can be performed without establishing a structural finite-element model in advance. The proposed technique is first validated using a numerical example with single, multiple, and adjacent damage scenarios. A channel steel beam and rectangular concrete beam are employed as experimental cases to further verify the proposed approach. The results of the simulation and experiment examples indicate that the proposed algorithm provides a simple and effective method for defect localization in beam-like structures.
引用
收藏
页码:1552 / 1564
页数:12
相关论文
共 50 条
  • [31] Shear-shear-torsional homogenous beam models for nonlinear periodic beam-like structures
    D'Annibale, Francesco
    Ferretti, Manuel
    Luongo, Angelo
    ENGINEERING STRUCTURES, 2019, 184 : 115 - 133
  • [32] An analysis on mode excitation energy in beam-like structures
    Tufan T.
    Köten H.
    Journal of Energy Systems, 2022, 6 (01): : 84 - 96
  • [33] Identification of boundary conditions of tapered beam-like structures using static flexibility measurements
    Wang, Le
    Yang, Zhichun
    MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2011, 25 (07) : 2484 - 2500
  • [34] Modal identification and damage detection in beam-like structures using the power spectrum and time-frequency analysis
    Gillich, Gilbert-Rainer
    Praisach, Zeno-Iosif
    SIGNAL PROCESSING, 2014, 96 : 29 - 44
  • [35] Damage diagnosis in beam-like structures by artificial neural networks
    Aydin, Kamil
    Kisi, Ozgur
    JOURNAL OF CIVIL ENGINEERING AND MANAGEMENT, 2015, 21 (05) : 591 - 604
  • [36] Beam-like damage detection methodology using wavelet damage ratio and additional roving mass
    Santos, Juliana C.
    de Morais, Marcus V. G.
    Machado, Marcela R.
    Silva, Ramon
    Palechor, Erwin U. L.
    Silva, Welington, V
    FRATTURA ED INTEGRITA STRUTTURALE-FRACTURE AND STRUCTURAL INTEGRITY, 2022, 16 (62): : 349 - 363
  • [37] Identification of reinforced concrete beam-like structures subjected to distributed damage from experimental static measurements
    Lakshmanan, N.
    Raghuprasad, B. K.
    Muthurnani, K.
    Gopalakrishnan, N.
    Basu, D.
    COMPUTERS AND CONCRETE, 2008, 5 (01): : 37 - 60
  • [38] Particle Swarm Optimization for damage identification in beam-like structures
    Barontini, A.
    Masciotta, M. -G.
    Ramos, L. F.
    Lourenco, P. B.
    Amado-Mendes, P.
    LIFE-CYCLE ANALYSIS AND ASSESSMENT IN CIVIL ENGINEERING: TOWARDS AN INTEGRATED VISION, 2019, : 1191 - 1197
  • [39] Wavelet packet based damage detection in beam-like structures without baseline modal parameters
    Mikami, Shuichi
    Beskhyroun, Sherif
    Oshima, Toshiyuki
    STRUCTURE AND INFRASTRUCTURE ENGINEERING, 2011, 7 (03) : 211 - 227
  • [40] Damage detection in beam-like composite structures via Chebyshev pseudo spectral modal curvature
    Yang, Zhi-Bo
    Radzienski, Maciej
    Kudela, Pawel
    Ostachowicz, Wieslaw
    COMPOSITE STRUCTURES, 2017, 168 : 1 - 12