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Assessing and Optimizing the Resilience of Water Distribution Systems Using Graph-Theoretical Metrics

机译:使用图形理论度量评估和优化水分配系统的弹性

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Water distribution systems are an essential supply infrastructure for cities. Given that climatic and demographic influences will pose further challenges for these infrastructures in the future, the resilience of water supply systems, i.e. their ability to withstand and recover from disruptions, has recently become a subject of research. To assess the resilience of a WDS, different graph-theoretical approaches exist. Next to general metrics characterizing the network topology, also hydraulic and technical restrictions have to be taken into account. In this work, the resilience of an exemplary water distribution network of a major German city is assessed, and a Mixed-Integer Program is presented which allows to assess the impact of capacity adaptations on its resilience.
机译:配水系统是城市的基本供应基础设施。 鉴于气候和人口统计学影响将对未来的这些基础设施产生进一步的挑战,供水系统的抵御能力,即他们承受和从中断中恢复的能力,最近成为了研究的主题。 评估WDS的恢复力,存在不同的图形理论方法。 在表征网络拓扑的一般指标旁边,也必须考虑液压和技术限制。 在这项工作中,评估了一个主要的德国城市的示例性水分配网络的抵御能力,并提出了混合整数计划,这允许评估容量适应对其弹性的影响。

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