The evaluation of hydraulic reliability indices in water distribution networks under pipe failure conditions

A. Moghaddam, A. Faridhosseini, H. Rezaei, Roya Peirovi-Minaee, A. Ziaei
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Abstract

Abstract. In this research, reliability indicators of water distribution networks were evaluated under pipe failure conditions. The case studies included two benchmark networks and one real-life water distribution network in Iran with more hydraulic constraints. Some important reliability indicators were presented, such as resilience index, network resilience, modified resilience index, and minimum surplus head index. GANetXL was used to do the one-objective and two-objective optimization of the previously mentioned water distribution networks in order to not only minimize the cost but also maximize the reliability indicators. Moreover, the results of a statistical analysis for each pipe were used to determine the sensitive pipes that were of the most failure probability. GANetXL is an optimization tool in the Microsoft Excel environment and works based on a genetic algorithm. GANetXL has the capability of being linked to EPANET (hydraulic simulation software). The results obtained clearly showed that network resilience index was poor performance when compared with the other indexes under pipe failure conditions, especially in real-life networks that include small pipe diameters. It was also showed that if a water distribution network was optimized only in terms of cost, then there would be an unacceptable pressure drop at some nodes in case of pipe failure.
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管道失效条件下配水管网水力可靠性指标的评价
摘要本研究对输水管网在管道失效情况下的可靠性指标进行了评估。案例研究包括伊朗的两个基准管网和一个现实生活中的供水管网,这些管网的水力限制更多。提出了一些重要的可靠性指标,如弹性指标、网络弹性指标、修正弹性指标和最小剩余水头指标。利用GANetXL对上述配水网络进行单目标和双目标优化,既使成本最小化,又使可靠性指标最大化。此外,对每个管道进行统计分析,确定失效概率最大的敏感管道。GANetXL是Microsoft Excel环境中的优化工具,基于遗传算法工作。GANetXL具有连接EPANET(液压仿真软件)的能力。研究结果清楚地表明,在管道失效条件下,特别是在实际管网中,管网弹性指标与其他指标相比表现不佳。研究还表明,如果仅从成本角度对配水网络进行优化,则在管道失效的情况下,某些节点的压降将不可接受。
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来源期刊
Drinking Water Engineering and Science
Drinking Water Engineering and Science Environmental Science-Water Science and Technology
CiteScore
3.90
自引率
0.00%
发文量
3
审稿时长
40 weeks
期刊最新文献
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