首页> 外文期刊>Journal of Water Resources Planning and Management >Multiobjective Optimization of Pipe Replacements and Control Valve Installations for Leakage Attenuation in Water Distribution Networks
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Multiobjective Optimization of Pipe Replacements and Control Valve Installations for Leakage Attenuation in Water Distribution Networks

机译:供水管网中用于泄漏衰减的管道更换和控制阀安装的多目标优化

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This paper shows how pipe replacements and control valve installations can be optimized in water distribution networks to reduce leakage, under minimum nodal pressure constraints. To this end, a hybrid multiobjective algorithm, which has pipe diameters and valve positions and settings as decisional variables, was set up. The algorithm also enables identification of the isolation valves that have to be closed in order to improve effectiveness of the control valves installed. The algorithm is initially applied to the optimal valve location problem, where it explores the trade-off between the number of installed control valves and the daily leakage volume. In this context, the analysis of the results proves the new algorithm more effective than a multiobjective genetic algorithm widely adopted in the scientific literature. Furthermore, it shows that if some isolation valves identified ad hoc are closed in the network, the installation of control valves determines larger leakage volume reductions. In a second application of the algorithm, pipe replacements and control valve installations are simultaneously performed. In this case, a Pareto front of trade-off solutions between installation costs and daily leakage volume is obtained. For the choice of the final solution within the front, an economic criterion based on the long-term convenience analysis is also illustrated.
机译:本文展示了如何在最小节点压力约束下优化配水网络中的管道更换和控制阀安装以减少泄漏。为此,建立了一种混合多目标算法,该算法以管道直径,阀门位置和设置作为决策变量。该算法还可以识别必须关闭的隔离阀,以提高安装的控制阀的效率。该算法最初应用于最佳阀门位置问题,在此问题中探讨了已安装的控制阀门数量与每日泄漏量之间的权衡。在这种情况下,对结果的分析证明新算法比科学文献中广泛采用的多目标遗传算法更有效。此外,它表明,如果某些临时确定的隔离阀在网络中关闭,则控制阀的安装将确定更大的泄漏量减少量。在算法的第二个应用中,同时进行管道更换和控制阀安装。在这种情况下,可以获得安装成本和每日泄漏量之间折衷方案的Pareto前沿。为了在前端选择最终解决方案,还说明了基于长期便利性分析的经济标准。

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