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Optimized DMA Partition to Reduce Background Leakage Rate in Water Distribution Networks

机译:优化DMA分区,以降低水分配网络中的背景泄漏率

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In recent years, pressure management based on district metering areas (DMAs) has played an irreplaceable role in background leakage reduction in water distribution networks (WDNs). To further improve DMA management, this paper describes a novel sectorization method to optimize the reduction of background leakage. First, the network trunk mains are optimally selected using a proposed evaluation index which contains three reference indicators and the resulting isolated regions are identified through graph theory algorithm. Meanwhile, a modified community detection algorithm is adopted to partition the oversized regions considering both elevation uniformity within DMAs and demand uniformity across DMAs. Then the optimal layout of flow meters (i.e., inlet pipes) and gate valves is achieved by solving a two-objective optimization for minimizing the number of flow meters and cumulative pressure differences compared with critical points in each DMA. Finally, pressure-reducing valves (PRVs) are installed in every inlet pipe and optimized to reduce leakage. The overall procedure is applied to a medium-sized network. The results reveal that the proposed sectorization methodology combined with pressure management can efficiently reduce leakage by controlling excess hydraulic capacity.
机译:近年来,基于地区计量区域(DMA)的压力管理在水分配网络(WDNS)的背景泄漏减少中发挥了不可替代的作用。为了进一步改善DMA管理,本文介绍了一种新的扇形化方法,以优化背景泄漏的减少。首先,使用包含三个参考指示器的所提出的评估指标来最佳地选择网络中继线,通过图形理论算法识别得到的隔离区域。同时,采用修改的社区检测算法将超大区域分区,考虑到DMA中的升高均匀性,并在DMAS上均匀性。然后通过解决与每个DMA中的临界点相比,通过求解两个客观的优化来实现流量计(即,入口管)和栅极阀的最佳布局,以使流量计和累积压力差的数量最小化。最后,减压阀(PRVS)安装在每个入口管中并优化以减少泄漏。整体过程应用于中型网络。结果表明,通过控制过量的液压容量,所提出的扇形化方法可以有效地减少泄漏。

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