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Hardware development of reflection mode ultrasonic tomography system for monitoring flaws on pipeline

机译:用于管道缺陷监测的反射模式超声层析成像系统的硬件开发

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摘要

The pipeline inspection is a key requirement to maintain structural health and pipeline integrity for oil and gas transportation over countries. Pipe failure is a critical problem that needs to be endured within the operational work. The defects or flaws existence on pipeline surface is one of the most leading factors to pipe failures. A new approach of non-destructive technique is implemented to monitor flaws on pipeline by using reflection-mode ultrasonic tomography system. This paper details on the hardware development of ultrasonic tomography system based on reflection mode detection. The system consists of ultrasonic transceiver sensors mounted circularly and contactless to the pipe surface. The modeling work described the ultrasonic ring configuration, ultrasonic signal behavior, sensors arrangement and image grid estimation. The developed instrumentation system is used to detect external and internal flaws on pipe surface. The results show that the reflection-mode ultrasonic tomography is capable to differentiate flaws detected based on the calculated depth verified from the distance measured and through the reconstructed image.
机译:管道检查是维持结构健康和管道完整性的关键要求,以确保各国之间进行油气运输。管道故障是一个至关重要的问题,需要在运营工作中予以解决。管道表面存在的缺陷或缺陷是导致管道故障的最主要因素之一。通过采用反射模式超声层析成像系统,实现了一种新的无损检测方法来监测管道缺陷。本文详细介绍了基于反射模式检测的超声层析成像系统的硬件开发。该系统由圆形且不接触管道表面安装的超声波收发器传感器组成。建模工作描述了超声环配置,超声信号行为,传感器布置和图像网格估计。先进的仪器系统用于检测管道表面的内部和外部缺陷。结果表明,反射模式超声波断层扫描能够根据从测得距离和通过重建图像验证的计算深度来区分检测到的缺陷。

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