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首页> 外文期刊>Structural health monitoring >Monitoring internal corrosion in steel pipelines: a two-step helical guided wave approach for localization and quantification
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Monitoring internal corrosion in steel pipelines: a two-step helical guided wave approach for localization and quantification

机译:监测钢水管内的内部腐蚀:一种用于本地化和量化的两步螺旋导波方法

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摘要

This article presents a two-step approach for the assessment of internal corrosion in cylindrical structures using helical guided ultrasonic waves. The approach consists of two steps such as (1) localization and (2) estimation of the size of the corroded area. Localization is performed with the algebraic reconstruction technique where the energy ratio of the two fundamental Lamb modes S-0 and A(0) is used as input damage coefficient. Using the output of the localization step, the size of the corroded area is estimated by iteratively solving the eikonal equation using a finite-difference approach. The proposed approach is validated by an accelerated corrosion test. Furthermore, numerical simulations are carried out to study the interaction of the energy ratio and the phase velocity travel time with various thickness profiles acquired from the experiment. The proposed approach is validated against the experimental data up to approximately 50% thickness loss.
机译:本文介绍了使用螺旋引导超声波评估圆柱结构内部腐蚀的两步方法。 该方法包括两个步骤,例如(1)定位和(2)估计腐蚀区域的大小。 利用代数重建技术进行定位,其中两个基本羊肉模式S-0和(0)的能量比用作输入损伤系数。 使用定位步骤的输出,通过使用有限差异方法迭代地解决eikonal方程来估计腐蚀区域的大小。 通过加速腐蚀试验验证所提出的方法。 此外,进行数值模拟以研究能量比的相互作用和从实验中获取的各种厚度曲线的相位速度行进时间。 该方法可根据实验数据验证,高达约50%的厚度损失。

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