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A deterministic approach for optimization of booster disinfection placement and operation for a water distribution system in Beijing

机译:一种确定性的方法,可以优化北京供水系统的增压消毒布置和运行

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摘要

Previous studies on booster disinfection optimization were commonly based on 'blank networks', neglecting the impact of existing disinfection facilities, which could result in misleading solutions. To overcome this limitation, a method, which incorporates the existing disinfection facilities, is developed and demonstrated in this study. A particle backtracking algorithm, which traces the upstream pathways of the disinfection insufficiency nodes, is employed to narrow down the potential positions for booster stations. Deterministic optimization results are then efficiently yielded by the introduction of a 'coverage matrix'. The proposed method is applied to a real life water distribution system in Beijing, China. Results show the methodology effectiveness in optimizing booster disinfection placement and operation for real life water distribution systems. For the explored case study, results suggest that adding a booster disinfection station at 0.1% of the nodes of the system can satisfy chlorine residual at about 97.5% of all nodes.
机译:以前关于加强型消毒优化的研究通常基于“空白网络”,而忽略了现有消毒设施的影响,这可能会导致误导性解决方案。为了克服这一局限性,本研究开发并展示了一种结合了现有消毒设施的方法。跟踪消毒不足节点上游路径的粒子回溯算法可用于缩小增强站的潜在位置。然后通过引入“覆盖矩阵”有效地产生确定性的优化结果。所提出的方法被应用于中国北京的生活用水分配系统。结果表明,该方法在优化生活用水分配系统的增压消毒放置和运行中的方法学有效性。对于所研究的案例研究,结果表明,在系统的0.1%的节点上添加增压消毒站可以满足所有节点中约97.5%的氯残留量。

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