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首页> 外文期刊>Water resources research >Efficient Leak Localization in Water Distribution Systems Using Multistage Optimal Valve Operations and Smart Demand Metering
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Efficient Leak Localization in Water Distribution Systems Using Multistage Optimal Valve Operations and Smart Demand Metering

机译:使用多级最佳阀门操作和智能需求测光的水分配系统中高效泄漏定位

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摘要

This paper proposes a multistage method for burst leak localization through valve operations (VOs) and smart demand metering in district meter areas (DMAs) of water distribution systems (WDSs). Each stage includes partitioning of the DMA into two subregions using VOs and identification of potentially leaking pipes within the subregions through water balance analysis based on smart demand meters. Such a process is performed repeatedly (multiple stages) to narrow down the spatial range for pinpointing leak locations. To improve efficiency, a bisection optimization problem is formulated to localize the minimum leak areas using the lowest number of VOs, which is solved by a graph theory-based method. The utility of the proposed method is demonstrated using two DMAs (DMA1 and DMA2) of a real WDS with different topological properties. Results show that the proposed method can efficiently localize artificial burst leaks in DMA1 within 7-15% of the total pipe length, implying that the proposed method is theoretically effective in localizing pipe burst leaks. The real application to DMA2 has identified two leak regions with 2.3 and 4.2 km of pipe length (around 3-6% of the entire DMA2) using 18 VOs. These two burst leaks have been subsequently confirmed and pinpointed using listening rods by practitioners of the local water utility. These results indicate that the proposed multistage method is effective and efficient for burst leak localization, which can be promising for wide practical applications due to rapid developments of smart WDSs (e.g., smart demand meters or control valves).
机译:本文提出了一种通过水分配系统(WDS)区域米区域(DMA)中的阀门操作(VOS)和智能需求测光的爆破泄漏定位的多级方法。每个阶段包括使用VOS将DMA分成两个子区域,并通过基于智能需求表的水平衡分析来识别潜在的漏电管。这样的过程是重复执行的(多个阶段)以缩小空间范围以便针对泄漏位置。为了提高效率,配制了一分的优化问题以利用最低数量的VOS本地化最小泄漏区域,这些VOS通过基于图形理论的方法解决。使用具有不同拓扑特性的真实WDS的两个DMA(DMA1和DMA2)来证明所提出的方法的效用。结果表明,该方法可以在总管长的7-15%的7-15%内有效地将DMA1中的人工突发泄漏定位,这意味着所提出的方法在本地化管道突发泄漏中是理论上有效的。 DMA2的真实应用已经使用18 VOS确定了两个管长(距离整个DMA2的3-6%)的两个泄漏区域。随后通过局部水实用工具的从业者进行了这些两个突发泄漏并定位了精确定位。这些结果表明,所提出的多级方法是有效且有效的突发泄漏定位,这可能是由于智能WDS的快速发展导致广泛的实际应用(例如,智能需求仪表或控制阀)。

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