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Research on transducer and frequency of ultrasonic guided waves in urban pipe inspection

机译:城市管道检测中超声波导波的换能器和频率研究

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摘要

Guided ultrasonic wave is a new non-destructive pipe inspection technology for its rapid, long distance inspection. It can be used to inspect urban pipes, for example, residential drinking water pipe, natural gas pipe, heating pipe, sewage pipe. Most urban pipes are underground pipes and difficult to access using other conventional NDT methods. The inspection distance, that is, the traveling range of guided wave is dependent on propagation characteristics of ultrasonic guided waves. In this paper, longitudinal wave L(0, 2), which was used as the excited guided wave and L(0, 1), which should be suppressed during the experiment were both discussed. Furthermore, effects of transducers number and transducer ring spacing on characteristics of excited signals were investigated. Factor that may affect the selection of experimental frequency was studied and optimum frequency of guided wave for pipe with different thickness and diameter was recommended. In the end, an experiment was performed on a 40 meter long heating pipe in the residential area of Bohai Oil Company, Tianjin city, China. And the experimental results showed good agreement with the theoretical analysis.
机译:引导式超声波是一种快速,长距离检查的新型无损管道检查技术。它可用于检查城市管道,例如住宅饮用水管道,天然气管道,供热管道,污水管道。大多数城市管道是地下管道,难以使用其他常规的无损检测方法进行访问。检查距离,即导波的传播范围,取决于超声波导波的传播特性。本文讨论了作为激励导波的纵波L(0,2)和在实验中应抑制的纵波L(0,1)。此外,研究了换能器数量和换能器环间距对激励信号特性的影响。研究了可能影响实验频率选择的因素,并推荐了不同厚度和直径的管道的最佳导波频率。最后,在中国天津市渤海石油公司居住区的40米长的加热管上进行了实验。实验结果与理论分析吻合良好。

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