Application of 3D Ambient Noise Tomography for Void Detection

被引:0
|
作者
Tran, Khiem T. [1 ]
Wang, Yao [1 ]
机构
[1] Univ Florida, Dept Civil & Coastal Engn, Gainesville, FL 32611 USA
基金
美国国家科学基金会;
关键词
WAVE; VELOCITY; BASIN;
D O I
暂无
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
A first-time application of 3D ambient noise tomography (3D ANT) method is presented for detection of deep voids. The method is based on the solution of 3D P-SV elastic wave equations and adjoint-state optimization to directly invert experimental cross-correlation functions (CCF) for extraction of S-wave velocity (Vs) structure. The main advantage of this approach is that it does not rely on assumptions of energy balance and far-field waves as required by methods using characteristics of Green's function (GF). Instead, the source power-spectrum density is inverted to account for source distribution (location and energy), which allows to exploit full information content of all available CCFs from ambient noise recordings. The 3D ANT capability in detecting deep voids is investigated at a test site in southern Florida. For the field experiment, 72 vertical geophones of 4.5-Hz resonance were deployed in a 4 x 18 grid over 9.0 x 76.5 m area on the ground surface to record noise data for 34 min. The CCFs extracted from the noise recordings have good energy at 5-20 Hz and a consistent wave propagation pattern for the entire test area. The inverted result reveals that the 3D ANT was able to image a large deep void at 28- to 44-m depth, which is generally consistent with results from invasive SPTs.
引用
收藏
页码:603 / 613
页数:11
相关论文
共 50 条
  • [1] Application of ambient noise tomography for deep void detection
    Wang, Yao
    Khorrami, Mohammad
    Tran, Khiem T.
    Horhota, David
    JOURNAL OF APPLIED GEOPHYSICS, 2023, 209
  • [2] Geotechnical site characterization with 3D ambient noise tomography
    Wang, Yao
    Tran, Khiem T.
    Cox, Brady R.
    Vantassel, Joseph P.
    GEOPHYSICS, 2023, 88 (04) : KS101 - KS112
  • [3] 3D optical tomography in the presence of void regions
    Riley, J
    Dehghani, H
    Schweiger, M
    Arridge, SR
    Ripoll, J
    Nieto-Vesperinas, M
    OPTICS EXPRESS, 2000, 7 (13): : 462 - 467
  • [4] Imaging the 3D basin structure of the Santa Clara Valley by ambient noise tomography
    Cho, Hyejeong
    Lee, Sang-Jun
    Kim, Seongryong
    Rhie, Junkee
    Kang, Tae-Seob
    GEOSCIENCES JOURNAL, 2025, 29 (01) : 87 - 101
  • [5] Geotechnical Site Characterization with 3D Ambient Noise Tomography: Field Data Applications
    Wang, Yao
    Tran, Khiem T.
    Cox, Brady
    Vantassel, Joseph P.
    GEO-CONGRESS 2023: GEOTECHNICAL CHARACTERIZATION, 2023, 340 : 203 - 213
  • [6] Road sinkhole detection with 2D ambient noise tomography
    Wang, Yao
    Tran, Khiem T.
    Horhota, David
    GEOPHYSICS, 2021, 86 (06) : KS123 - KS135
  • [7] High-resolution 3D shallow crustal structure in Long Beach, California: Application of ambient noise tomography on a dense seismic array
    Lin, Fan-Chi
    Li, Dunzhu
    Clayton, Robert W.
    Hollis, Dan
    GEOPHYSICS, 2013, 78 (04) : Q45 - Q56
  • [8] 3D Vs ambient noise tomography of the 2016 Mw 6.4 Meinong Earthquake source region in Taiwan
    Kuo-Chen, Hao
    Chen, Kai-Xun
    Sun, Wei-Fang
    Ho, Chun-Wei
    Lee, Yuan-Hsi
    Guan, Zhuo-Kang
    Kang, Chu-Chun
    Chang, Wen-Yen
    TERRESTRIAL ATMOSPHERIC AND OCEANIC SCIENCES, 2017, 28 (05): : 693 - 701
  • [9] Application of industrial 3D computed tomography
    Maisl, M
    Reiter, H
    Purschke, M
    Zabler, E
    Rosenberger-Koch, M
    METALL, 2001, 55 (06): : 368 - 371
  • [10] Towards Automated Void Detection for Search and Rescue with 3D Perception
    Bal, Ananya
    Gupta, Ashutosh
    Goyal, Pranav
    Merrick, David
    Murphy, Robin
    Choset, Howie
    2023 IEEE/RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS, IROS, 2023, : 3290 - 3297