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PIPELINE LEAK DETECTION USING FOUR MODE FIBRE-OPTIC BASED DISTRIBUTED SENSING

机译:基于四模式光纤分布式传感的管道泄漏检测

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Fibre-optic based Distributed Acoustic Sensing (DAS), is now commonly used around the world for providing pipeline operators with real-time and early warning of intrusions on their pipeline Right of Ways. Also open to analysis within the DAS signal return are multiple signatures derived from the egress of product leaking from pipelines. Over the last three years, focussing attention on these alternative signals, OptaSense have developed a novel 4-mode External Leak Detection capability, fusing outputs from both DAS, Negative Pressure Pulse (NPP) and Distributed Temperature Gradient Sensing (DTGS) signals (the latter not to be confused with Distributed Temperature Sensing or DTS). The first commercially deployed 4-mode Leak Detection products are now being seen on the market, for both gas and liquids pipelines. In this paper, we report how DAS can be used to provide these four modes of leak detection-including (listed in order of typical detection latency, fastest to slowest) ⅰ) negative pressure waves created in the pipeline product from the leak event; ⅱ) acoustic noise from turbulent flow through the leak orifice; ⅲ) temperature gradients in the soil due to the presence of the leaked product (positive and negative), and; ⅳ) local strain / ground heave due to soil displacement by the leaked product. These acoustic, temperature and strain measurements using a fibre-optic cable buried next to a pipeline can be fused together to provide highly sensitive and reliable alerts for pipeline leaks. The pipeline industry has always sought to detect smaller leaks faster, with better locational accuracy. This paper, which draws upon industry sponsored test results and commercial deployment data, provides an update to the industry on leak detection possibilities using DAS.
机译:基于光纤的分布式声学传感(DAS)现在在全球范围内广泛用于为管道运营商提供实时和预警预警,以警告其管道的侵入方式。在DAS信号返回中还需要分析的是从管道泄漏产品的出口中获得的多个特征。在过去的三年中,OptaSense将注意力集中在这些替代信号上,开发了一种新颖的4模式外部泄漏检测功能,融合了DAS,负压脉冲(NPP)和分布式温度梯度传感(DTGS)信号(后者是后者)的输出。不要与分布式温度感测或DTS混淆。现在,市场上已经看到了第一批商业部署的4模式泄漏检测产品,用于气体和液体管道。在本文中,我们报告了DAS如何用于提供这四种泄漏检测模式-包括(以典型检测延迟的顺序列出,最快到最慢)ⅰ)泄漏事件在管道产品中产生的负压波; ⅱ)湍流通过泄漏孔产生的声音噪声; ⅲ)由于泄漏产物(正负)的存在,土壤中的温度梯度;以及ⅳ)由于泄漏产品引起的土壤位移,导致局部应变/地面起伏。这些使用埋在管线旁的光纤电缆进行的声学,温度和应变测量可以融合在一起,从而为管线泄漏提供高度灵敏和可靠的警报。管道行业一直寻求更快地检测较小的泄漏,并具有更好的定位精度。本文利用了行业赞助的测试结果和商业部署数据,为业界提供了使用DAS进行泄漏检测的最新信息。

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