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Novel Negative Pressure Wave-based Pipeline Leak Detection System Using Fiber Bragg Grating-based Pressure Sensors

机译:基于基于光纤光栅的压力传感器的新型基于负压波的管道泄漏检测系统

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摘要

In this paper, the design and underpinning technical principles of the novel design of a negative pressure wave (NPW)-based pipeline leak detection (PLD) system has been reported, which is configured using Fiber Bragg Grating (FBG) pressure sensors. To evaluate this, a pipeline leakage test platform has been established and experiments have been conducted, to verify the performance of a system using this FBG-based approach. The results show that a system using FBG-based sensors can accurately determine the pressure change trends along the pipeline and thus allow the calculation of the NPW velocity online. A key comparison is made with traditional NPW detection techniques, showing that the novel detection system is capable of achieving the higher leak-location accuracy and the detection of smaller leakage volumes. This arises from the ability of the FBG-based system to allow an increased number of sensors to be multiplexed along the pipeline. Their corresponding output signals generated show a very satisfactory, high signal-to-noise ratio. The system has been evaluated, especially in its response to extraneous signals and thus disturbances caused by the pump starting or stopping can be eliminated. This was achieved through an analysis of the time sequence of the pressure changes captured by the multi-sensor array being carried out and thus immunity to such effects demonstrated. The system has thus been designed to minimize the instances where a false alarm occurs.
机译:在本文中,已经报道了基于负压波(NPW)的管道泄漏检测(PLD)系统的新颖设计的设计和基础技术原理,该系统使用光纤布拉格光栅(FBG)压力传感器进行配置。为了对此进行评估,已经建立了管道泄漏测试平台,并进行了实验,以验证使用基于FBG的方法的系统性能。结果表明,使用基于FBG的传感器的系统可以准确确定沿管道的压力变化趋势,从而可以在线计算NPW速度。与传统的NPW检测技术进行了关键比较,表明该新型检测系统能够实现更高的泄漏定位精度和更小的泄漏量检测。这是由于基于FBG的系统允许沿着管道多路复用传感器的能力引起的。产生的相应输出信号显示出非常令人满意的高信噪比。已经对该系统进行了评估,尤其是对外部信号的响应,因此可以消除由泵启动或停止引起的干扰。这是通过分析由多传感器阵列捕获的压力变化的时间顺序来实现的,因此证明了对这种影响的免疫力。因此,该系统被设计为最小化发生错误警报的情况。

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