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Simplified Ultrasonic Damage Detection in Fluid-Filled Pipes

机译:简化的超声波损伤在流体填充管道中检测

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摘要

The location and extent of damage in a pipe can be remotely determined from weld and internal damage reflections using a single acoustic emitter/sensor pair. The use of normalised reflections yields single numbers enabling long distance data collection techniques such as wireless hopping. The attenuation is twice as high for opposite inner and outer fluids (whether air and water, or water and air) as compared to identical inner and outer fluids. The absolute recorded signals in the water-filled pipe are attenuated by a factor two compared to the empty pipe. The axial length of detection is reduced by a half. The reduction of > 90% in sensors and the longer axial detection (> 10x current state-of- the-art- technology) means that permanent fixed sensor pairs for whole pipelines are on the horizon of possibility. The greatest advantage is envisioned in submersed pipelines.
机译:可以使用单个声学发射器对从焊接和内部损坏反射中远程确定管道损坏的位置和程度。 使用归一化反射产生单个数字,从而实现长距离数据收集技术,例如无线跳跃。 与相同的内部和外部流体相比,衰减是相反的内部和外液(无论是空气和水和空气)的两倍。 与空管相比,水填充管中的绝对记录信号衰减了两个因子。 检测的轴向长度减少了一半。 传感器中> 90%的减少和较长的轴向检测(> 10倍电流最先进的技术)是指整个管道的永久固定传感器对是可能性的。 潜水管道设想了最大的优势。

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