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首页> 外文期刊>Journal of Hydroinformatics >Optimal meter placement for pipe burst detection in water distribution systems
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Optimal meter placement for pipe burst detection in water distribution systems

机译:配水系统中管道爆裂检测的最佳仪表布置

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摘要

Pipe bursts in water distribution systems (WDS) must be rapidly detected to minimize the loss of system functionality and recovery time. Pipe burst is the most common failure in WDS. It results in water loss out of the system, increased head losses, and low pressure at the customers' taps. Therefore, effective and efficient detection of pipe bursts can improve system resilience. To this end, this study proposes an optimal meter placement model to identify meter locations that maximize detection effectiveness for a given number of meters and type of meter. The linear programming model is demonstrated on a modified Austin EPANET hydraulic network. Receiver operating characteristic (ROC) curves for alternative pressure and flow meters are applied to investigate the relationship between the level of available information and pipe burst detection effectiveness. The optimal sensor locations were distinctly different depending on the type of meter and the objective to be considered. The ROC curves for alternative pressure and pipe flow meters showed that pipe flow meters are vulnerable to false alarms, and that using many pipe flow meters could detect all pipe bursts. Pressure meters could detect up to 82% of the burst events.
机译:必须快速检测配水系统(WDS)中的管道破裂,以最大程度地减少系统功能的损失和恢复时间。管道爆裂是WDS中最常见的故障。这会导致水从系统中流失,水头损失增加以及客户水龙头上的低压。因此,有效而有效地检测管道破裂可以提高系统的弹性。为此,本研究提出了一种最佳的电表放置模型,以识别电表位置,以针对给定数量的电表和电表类型最大程度地提高检测效率。在改进的Austin EPANET液压网络上演示了线性编程模型。替代压力和流量计的接收器工作特性(ROC)曲线用于研究可用信息水平与管道爆破检测效果之间的关系。最佳传感器位置明显不同,具体取决于仪表的类型和要考虑的目标。替代压力表和管道流量计的ROC曲线表明,管道流量计很容易出现误报,并且使用许多管道流量计可以检测到所有管道爆裂。压力表最多可以检测到82%的突发事件。

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