arrow
Return

The multi-mode reverse time migration for defect characterization using ultrasonic array

delete2025-04-01
delete0
PRE
AI
A
Abhishek Saini *
J
Jinwei Fang
H
Huaigu Tang
DOI:10.1016/j.ndteint.2024.103293delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
An ultrasonic wavefield-based imaging technique, termed Multi-Mode Reverse-Time Migration (MMRTM) is implemented for characterizing complex-shaped surface-breaking cracks. This method enables the imaging and sizing such cracks by combining longitudinal (L) and/or shear (S) wave-mode images. The MMRTM builds upon the Reverse-Time Migration (RTM) by separating the wavefield into multiple modes prior to imaging. A 2D imaging approach for isotropic elastic materials is developed, involving the decomposition of source and receiver wavefields into L-and S-wave vectors using decoupled elastodynamic extrapolation. This method preserves the original stress and particle velocity components, ensuring accurate amplitude and phase information in the separated wavefields. Inner-product imaging condition is then applied to generate LL, LS, and SS images of surface-breaking cracks. Both simulations and experimental validations are conducted to showcase the efficacy of MMRTM in characterizing defects. Furthermore, the MMRTM is compared with the Total Focusing Method and conventional RTM, where it shows significant improvement in image reconstruction compared to the other two imaging methods. The results demonstrate its potential utility in evaluating various complex-shaped defects, including fatigue cracks and stress corrosion cracks.
Keywords:
Complex surface-breaking cracks
Elastic wavefield decomposition
Reverse time migration
Wavefield imaging

Journal

N
NDT and E International
IF:
4.5
Papers:
3.1K
Citations:
9.0K

Organization

N
Nanyang Technological University
Scholars:
4.9W
Papers: 4.8W
Citations: 8.1W
U
united states department of energy (doe)
Scholars:
11.3W
Papers: 9.6W
Citations: 246
Cited Papers

Cited Papers

Plane Wave Imaging for ultrasonic non-destructive testing: Generalization to multimodal imaging
err2016-01-01
err159
errOAAI
errLe Jeune, Leonard; Robert, Sebastien; Villaverde, Eduardo Lopez; Prada, Claire
errShare
errSave
On the Generalizability of Time-of-Flight Convolutional Neural Networks for Noninvasive Acoustic Measurements
errSENSORS
IF3.5
err2024-06-01
err1
errOAAI
errSaini, Abhishek; Greenhall, John James; Davis, Eric Sean; Pantea, Cristian
errShare
errSave
Biosensing Applications of V2O5‐CeO2 Mesoporous Silica
err2015-06-30
err0
PREAI
errXi Luo; Hao Shu; Qijin Wan; Zhaohao Wang; Nianjun Yang
errShare
errSave
Ultrasonic imaging of irregularly shaped notches based on elastic reverse time migration
err2019-10-01
err52
PREAI
errRao, Jing; Saini, Abhishek; Yang, Jizhong; Ratassepp, Madis; Fan, Zheng
errShare
errSave
Optimisation of the Half-Skip Total Focusing Method (HSTFM) parameters for sizing surface-breaking cracks
err2020-12-01
err24
PREAI
errSaini, Abhishek; Felice, Maria, V; Fan, Zheng; Lane, Christopher J. L.
errShare
errSave
Isotropic angle-domain elastic reverse-time migration
err2008-11-01
err281
PREAI
errYan, Jia; Sava, Paul
errShare
errSave
researcher View more