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Modeling of Axisymmetric Ultrasonic Waves Reflected from Circumferential Notches in a Pipe based on a Rigorous Analytical Theory and Implementation on Distributed Devices

  • 01-09-2024
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Abstract

The article discusses the challenges in real-time monitoring of pipeline defects using ultrasonic nondestructive testing (NDT) and introduces a rigorous analytical model for predicting axisymmetric reflection of guided waves from circumferential notches in pipes. The model, validated through finite element analysis (FEA), offers a computationally efficient method for estimating reflection coefficients, which is crucial for IoT-based pipeline condition monitoring. The model is particularly useful for high-frequency time-of-flight methodologies and can be implemented on distributed devices, making it a promising solution for rapid and accurate defect evaluation in pipelines.

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Title
Modeling of Axisymmetric Ultrasonic Waves Reflected from Circumferential Notches in a Pipe based on a Rigorous Analytical Theory and Implementation on Distributed Devices
Authors
Huiting Huan
Lixian Liu
Jianpeng Liu
Liping Huang
Cuiling Peng
Hao Wang
Andreas Mandelis
Publication date
01-09-2024
Publisher
Springer US
Published in
Journal of Nondestructive Evaluation / Issue 3/2024
Print ISSN: 0195-9298
Electronic ISSN: 1573-4862
DOI
https://doi.org/10.1007/s10921-024-01117-1
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