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ACOUSTIC WALL THICKNESS ASSESSMENT OF LARGE DIAMETER MAINS

机译:大直径管道的声墙厚度评估

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Many types of large diameter pipelines tend to degrade gradually, with the pipe walls losing thickness over time before complete failure. It is well established in the literature that as pipe walls lose thickness and strength, they also lose stiffness. This stiffness loss in turn has an impact on the speed at which sound propagates through a pipeline. An understanding of the relationships between wall thickness and the speed of sound, combined with a method of measuring the speed of sound over intervals of a pipeline, make it possible to estimate the remaining wall thickness of stretches of pipeline without the need to de-water or even take the line out of service.This paper outlines the principles and application of acoustic wall thickness measurement in large diameter pipelines. The approach discussed employs multiple sensors, some at fixed locations, and one traveling in a controlled manner through the pipeline, in order to take wall thickness measurements at fairly tight intervals along a large diameter pipeline. Several implementations of this technique are discussed: using correlators to measure the speed of sound over set intervals, using a mobile in-pipe hydrophone, and using a combination of the two techniques, correlating signals from a mobile in-pipe hydrophone and a fixed location sensor.
机译:许多类型的大直径管道往往会逐渐降解,在完全失败之前,管壁会随着时间的推移而减轻厚度。它在文献中建立了很好的是,随着管壁丧失厚度和力量,它们也失去了僵硬。这种刚度损失反过来对通过管道传播的速度产生影响。理解壁厚与声速的速度之间的关系,结合了测量管道间隔的速度的方法,使得可以估计管道延伸的剩余壁厚而无需脱水甚至占用过服务。 本文概述了大直径管道中声壁厚度测量的原理和应用。讨论的方法采用多个传感器,一些在固定位置处,并且通过管道以受控方式行进,以便沿着大直径管道以相当紧的间隔采用壁厚测量。讨论了这种技术的几种实现:使用相关器使用移动管道流水声测量置换间隔的声音速度,并使用两种技术的组合,从移动管道流水机和固定位置相关信号传感器。

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