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A Novel Water Supply Network Sectorization Methodology Based on a Complete Economic Analysis, Including Uncertainties

机译:基于包括不确定性在内的完整经济分析的新型供水网络部门化方法

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The core idea behind sectorization of Water Supply Networks (WSNs) is to establish areas partially isolated from the rest of the network to improve operational control. Besides the benefits associated with sectorization, some drawbacks must be taken into consideration by water operators: the economic investment associated with both boundary valves and flowmeters and the reduction of both pressure and system resilience. The target of sectorization is to properly balance these negative and positive aspects. Sectorization methodologies addressing the economic aspects mainly consider costs of valves and flowmeters and of energy, and the benefits in terms of water saving linked to pressure reduction. However, sectorization entails other benefits, such as the reduction of domestic consumption, the reduction of burst frequency and the enhanced capacity to detect and intervene over future leakage events. We implement a development proposed by the International Water Association (IWA) to estimate the aforementioned benefits. Such a development is integrated in a novel sectorization methodology based on a social network community detection algorithm, combined with a genetic algorithm optimization method and Monte Carlo simulation. The methodology is implemented over a fraction of the WSN of Managua city, capital of Nicaragua, generating a net benefit of 25,572 $/year.
机译:供水网络(WSN)分区化的核心思想是建立与网络其余部分隔离的区域,以改善运营控制。除了与分区相关的好处外,水务运营商还必须考虑一些缺点:与边界阀和流量计相关的经济投资以及压力和系统弹性的降低。部门化的目标是适当平衡这些消极和积极方面。解决经济问题的部门方法主要考虑阀门和流量计的成本以及能源成本,以及与节水相关的节水效益。但是,部门化还带来了其他好处,例如减少了国内消费,减少了突发频率以及增强了发现和干预未来泄漏事件的能力。我们实施了国际水协会(IWA)提出的开发计划,以估算上述收益。这种发展被集成在基于社交网络社区检测算法的新颖部门划分方法中,并结合了遗传算法优化方法和蒙特卡洛模拟。该方法在尼加拉瓜首府马那瓜市的WSN的一小部分实施,每年产生的净收益为25,572美元。

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