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APPLICATION OF ACOUSTIC SURVEY METHODS FOR LEAKAGE DETECTION AND REDUCTION IN COMPLEX WATER SUPPLY NETWORKS WITH NO AREA FLOW METERING

机译:声学测量方法在泄漏检测和减少复杂供水网络中的应用,没有区域流量计量

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Acoustic methods have been used extensively in the last decades as means of locating leaks in water distribution networks. The advances of technology have provided us with electronic tools that highly enhance the traditional acoustic methods and multiply their efficiency and accuracy. In the recent years the use of acoustic loggers deployed on network fittings which record leak noise at fixed times during the night has enabled the application of leakage surveillance strategies at problematic areas or even total sweeps of a water distribution network. As most applications of this technology have taken place in systems of good condition and advanced operational structure, mainly in the UK, little research has taken place regarding the applicability and efficiency of such systems in different environments. Key parameters that need to be taken further into consideration include the complexity of the network in conjunction with the reliability of available mapping, the lack of established zones with respective flow metering and the effect of unfavourable noise logging conditions such as the existence of high background noise. This paper presents a large-scale application of acoustic survey methods for leak detection in the water distribution system of Thessaloniki, which incorporates the characteristics set above. Results and on field experience gained during this application are analysed in order to examine the efficiency of the acoustic logging technology and the employed methodology of application.
机译:在过去的几十年中,声学方法已被广泛使用,作为在水分配网络中定位泄漏的手段。技术的进步为我们提供了高度增强传统声学方法的电子工具,并乘以其效率和准确性。近年来,使用部署在网络配件上的声学记录器在夜间定期记录泄漏噪声,使得在有问题的区域或甚至是水分配网络的总扫描的泄漏监控策略的应用。由于该技术的大多数应用,在良好的状态和先进的运营结构系统中,主要在英国,在不同环境中的这种系统的适用性和效率方面进行了很少的研究。需要进一步考虑的关键参数包括与可用映射的可靠性相结合网络的复杂性,缺乏具有相应流量计量的已建立的区域以及不利的噪声测井条件(例如高背景噪声)的效果。本文介绍了塞萨洛尼基水分布系统中的声学测量方法的大规模应用,该方法包括上述特性。分析了在本申请中获得的结果和现场经验,以检查声学测井技术的效率和应用的应用方法。

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