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An FBG Strain Sensor-Based NPW Method for Natural Gas Pipeline Leakage Detection

机译:基于FBG应变传感器的NPW方法,用于天然气管道泄漏检测

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Natural gas pipeline leaks can lead to serious and dangerous accidents that can cause great losses of life and property. Therefore, detecting natural gas pipeline leaks has always been an important subject. The negative pressure wave (NPW) method is currently the most widely used leakage detection method. Generally, this method uses pressure sensors to detect NPW signals to assess the leak and determine the location of the leakage point. However, the installation of a pressure sensor requires penetrating the pipeline structure, so the sensor intervals are often distant, leading to large signal attenuations and the ineffective detection of small leaks. An NPW method based on fiber Bragg grating (FBG) strain sensors is proposed in this paper which detects NPWs by monitoring the annular strain of the pipeline. Moreover, due to the advantages of nondestructive installation FBG strain sensors can be arranged closer along the distance of the pipeline, the attenuation of the NPW is small and the detection of leaks is improved. This method is tested through experiments and compared with a pressure sensor-based method; the experimental results verify that the proposed method is more effective in detecting natural gas pipeline leaks.
机译:天然气管道泄漏可能导致严重和危险的事故,这可能导致生命和财产的巨大损失。因此,检测天然气管道泄漏一直是一个重要的主题。负压波(NPW)方法是目前最广泛使用的泄漏检测方法。通常,该方法使用压力传感器来检测NPW信号以评估泄漏并确定泄漏点的位置。然而,压力传感器的安装需要穿透管道结构,因此传感器间隔往往远距离,导致大的信号衰减和对小泄漏的无效检测。本文提出了一种基于光纤布拉格光栅(FBG)应变传感器的NPW方法,通过监测管道的环形应变来检测NPW。此外,由于非破坏性安装的优点,FBG应变传感器可以沿着管道的距离布置更靠近,因此NPW的衰减很小并且改善了泄漏的检测。通过实验测试该方法,并与基于压力传感器的方法进行测试;实验结果验证了所提出的方法在检测天然气管道泄漏方面更有效。

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