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导波阵列数据的后处理技术在高分辨率管道检测中的应用。

Post-processing of guided wave array data for high resolution pipe inspection.

机构信息

Department of Mechanical Engineering, University of Bristol, Bristol BS8 1TR, United Kingdom.

出版信息

J Acoust Soc Am. 2009 Dec;126(6):2973-82. doi: 10.1121/1.3257604.

Abstract

This paper describes a method for processing data from a guided wave transducer array on a pipe. The raw data set from such an array contains the full matrix of time-domain signals from each transmitter-receiver combination. It is shown that for certain configurations of an array, the total focusing method can be applied, which allows the array to be focused at every point on a pipe in both transmission and reception. The effect of array configuration parameters on the sensitivity of the proposed method to random and coherent noise is discussed. Experimental results are presented using electromagnetic acoustic transducers for exciting and detecting the S(0) Lamb wave mode in a 12-in. diameter steel pipe at 200 kHz excitation frequency. The results show that using the imaging algorithm, a 2-mm (0.08 wavelength) diameter half-thickness hole can be detected.

摘要

本文介绍了一种处理管道中导波换能器阵列数据的方法。来自此类阵列的原始数据集包含每个发射器-接收器组合的时域信号的完整矩阵。结果表明,对于阵列的某些配置,可以应用全聚焦方法,该方法允许在发射和接收过程中在管道上的每个点对阵列进行聚焦。讨论了阵列配置参数对所提出的方法对随机和相干噪声的灵敏度的影响。使用电磁声换能器在 200 kHz 激励频率下激励和检测 12 英寸直径钢管中的 S(0)兰姆波模式,给出了实验结果。结果表明,使用成像算法,可以检测到直径为 2 毫米(0.08 波长)、厚度为半毫米的小孔。

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