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Feasibility of Locating Leakages in Sewage Pressure Pipes Using the Distributed Temperature Sensing Technology

机译:使用分布式温度传感技术定位污水压力管道中泄漏的可行性

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摘要

The cost effective maintenance of underwater pressure pipes for sewage disposal in Austria requires the detection and localization of leakages. Extrusion of wastewater in lakes can heavily influence the water and bathing quality of surrounding waters. The Distributed Temperature Sensing (DTS) technology is a widely used technique for oil and gas pipeline leakage detection. While in pipeline leakage detection, fiber optic cables are installed permanently at the outside or within the protective sheathing of the pipe; this paper aims at testing the feasibility of detecting leakages with temporary introduced fiber optic cable inside the pipe. The detection and localization were tested in a laboratory experiment. The intrusion of water from leakages into the pipe, producing a local temperature drop, served as indicator for leakages. Measurements were taken under varying measurement conditions, including the number of leakages as well as the positioning of the fiber optic cable. Experiments showed that leakages could be detected accurately with the proposed methodology, when measuring resolution, temperature gradient and measurement time were properly selected. Despite the successful application of DTS for leakage detection in this lab environment, challenges in real system applications may arise from temperature gradients within the pipe system over longer distances and the placement of the cable into the real pipe system.
机译:在奥地利,用于污水处理的水下压力管的经济有效维护需要对泄漏进行检测和定位。湖泊中的废水挤出会严重影响水和周围水域的沐浴质量。分布式温度感测(DTS)技术是一种广泛用于油气管道泄漏检测的技术。在管道泄漏检测中,光纤电缆永久安装在管道的外部或内部保护套内;本文旨在测试在管道内部使用临时引入的光缆检测泄漏的可行性。检测和定位在实验室实验中进行了测试。水从泄漏处渗入管道,产生局部温度下降,作为泄漏的指示。在变化的测量条件下进行测量,包括泄漏的数量以及光缆的位置。实验表明,在正确选择测量分辨率,温度梯度和测量时间的情况下,使用所提出的方法可以准确检测泄漏。尽管DTS在此实验室环境中成功用于泄漏检测,但实际系统应用中的挑战可能来自较长距离的管道系统内的温度梯度以及将电缆放置到实际管道系统中。

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