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LEAK DETECTION METHOD BASED ON PRESSURE WAVE CHANGE

机译:基于压力波改变的泄漏检测方法

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Reliability, sensitivity and detecting time under practical operational conditions are the most important parameters of a leak detection system. With the development of hardware and software, more and more pipelines are installed with advanced SCADA (Supervisory Control and Data Acquisition) system, so the compatibility of the leak detection system with SCADA system is also becoming important today. Pipeline leakage generates a sudden change in the pipeline pressure and flow. The paper introduces leak detecting methods according to the pipeline pressure wave change. In order to improve the compatibility of the leak detecting system, "OPC (Ole for process Control)" technology is used for obtaining the pressure signals from the distributed data collection system. Special focus is given on analysis of the pressure signals. It is successful to denoise the signals by means of wavelet scale shrinkage, and to capture the leak time tag using wavelet transform modulus maximum for locating the leak position accurately. A leak detecting system is established based on SCADA system. Tests and practical applications show that it locates leak position precisely. Good performance is obtained on both crude oil pipeline and product pipeline.
机译:可靠性,灵敏度和检测时间实际操作条件下是一个泄漏检测系统的最重要的参数。随着硬件和软件的发展,越来越多的管道都安装有先进的SCADA(监控和数据采集)系统,因此与SCADA系统的泄漏检测系统的兼容性也成为今天重要。管道泄漏产生在管道压力和流量的突然变化。本文介绍了根据管线压力波变化泄漏检测方法。为了提高泄漏检测系统的兼容性,“OPC(过程控制的OLE)”技术被用于从分布式数据采集系统获得的压力信号。特别关注的是压力信号的分析,给出。它是成功的通过小波尺度收缩手段进行去噪的信号,并捕获利用小波变换模最大用于精确定位泄漏位置的泄漏时间标记。的泄漏检测系统是基于SCADA系统上建立。测试和实际应用表明,它精确定位泄漏位置。双方原油管道和成品油管道中获得良好性能。

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