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Drilled Shafts Imaging with 2D Ultrasonic Waveform Tomography

  • 01-09-2025
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Abstract

The article delves into the challenges of assessing the integrity of drilled shafts, which are crucial for the stability of major civil infrastructures. It explores traditional nondestructive testing (NDT) methods and their limitations, such as low resolution and depth of investigation. The main focus is on a novel 2D acoustic full-waveform inversion (AFWI) method that leverages ultrasonic waves for full-volume imaging of drilled shafts. The method integrates forward simulation of the pressure field with adjoint-state optimization to invert measured data for the spatial distribution of P-wave velocity within an analyzed domain. Key features include low-frequency compensation to mitigate cycle-skipping, Tikhonov and Total Variation regularizations for stability and edge preservation, and an approximate Hessian matrix to balance the gradient vector. The article presents the methodology, including forward simulation and model update strategies, and validates the AFWI algorithm through synthetic experiments and a field experiment on a 2.4-meter diameter, 21.3-meter length drilled shaft. The results demonstrate the method's ability to accurately characterize the entire cross-section of the shaft, both inside and outside the rebar cage, and to precisely define shaft boundaries. The conclusion highlights the method's potential for providing new capabilities in drilled shaft imaging and suggests future research directions.

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Title
Drilled Shafts Imaging with 2D Ultrasonic Waveform Tomography
Authors
Bingkun Yang
Khiem T. Tran
Rodrigo Herrera
Kelly Shishlova
Publication date
01-09-2025
Publisher
Springer US
Published in
Journal of Nondestructive Evaluation / Issue 3/2025
Print ISSN: 0195-9298
Electronic ISSN: 1573-4862
DOI
https://doi.org/10.1007/s10921-025-01238-1
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