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Review of Water Leak Detection and Localization Methods through Hydrophone Technology

机译:通过水听力技术审查水泄漏检测和定位方法

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Acoustic technologies are popular for detection of leak detriments in water pipelines. However, problems of false alarms, detection of weak or difficult leaks, accurate leak pinpointing, and the high cost of long-term monitoring remain prevalent. These issues demand a more sophisticated testing approach suitable for real-world application. In particular, hydrophone technology has strong promise for long-range leak detection in high-attenuation conditions. However, existing review studies only cover the methods of leak detection holistically, with limited insight into the practical implementation of sensing technologies for water leak detection. In particular, the problem of detecting and localizing leaks using hydroacoustic data has not yet been extensively studied. The current study, therefore, presents a state-of-the-art review of the extant literature on water leak detection and localization taking hydrophones as a good example of hydroacoustic water leak detection. The study compares hydrophones with other popular sensing technologies such as accelerometers and guides on its better application for detecting water leaks. Current research directions, gaps, and future work foci are also identified to enable further development of a hydrophone-based water leak detection system. Review shows that existing experiments are limited to controlled conditions where impacts of surrounding strata, ambient noise, and difficult pipe geometries cannot be studied. Future studies can apply the technology to real-life cases, developing faster analytical methods and hybrid solutions using a multisensing approach. This can help water leak experts enormously in cost-effective, efficient detection of leaks.
机译:声学技术对于检测水管道中的泄漏损害很受欢迎。然而,误报的问题,弱泄漏或困难,精确泄漏定位的检测,以及长期监测的高成本仍然普遍存在。这些问题需要更复杂的测试方法,适合现实世界应用。特别是,高衰减条件下的远程泄漏检测具有强大的通知。然而,现有的审查研究只覆盖了全面泄漏检测方法,深入了解漏水检测的传感技术的实际实施。特别地,尚未广泛研究使用水声数据检测和定位泄漏的问题。因此,目前的研究呈现了对漏水检测和定位的现存文献的最新综述,采用流水声作为水声泄漏检测的一个很好的例子。该研究将Hydophers与其他流行的传感技术(例如加速度计)和导向器的更好的应用泄漏而导致的其他流行感应技术进行比较。还识别了当前的研究方向,差距和未来的工作灶,以便进一步开发水上水电的水泄漏检测系统。综述表明,现有实验仅限于控制条件,其中无法研究周围地层,环境噪音和难以止管几何形状的影响。未来的研究可以将技术应用于现实生活案例,使用多抗性方法开发更快的分析方法和混合解决方案。这可以帮助漏水专家在经济效益,有效地检测泄漏中。

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