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Hydraulically informed graph theoretic measure of link criticality for the resilience analysis of water distribution networks

机译:供水管网弹性分析的水力连通性图理论度量

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摘要

Water Distribution Networks (WDN) are complex and highly interconnected systems. To maintain operation under failure conditions, WDNs should have built-in resilience based on topological and energy redundancy. There are various methods for analysing the resilience of WDNs based on either hydraulic models or surrogate network measures; however, not a single universally accepted method exists. Hydraulic modeling of disruptive operational scenarios suffer from combinatorial restrictions and uncertainties. Methods that rely on surrogate network measures do not take into account the complex interactions between topological and energy redundancy. To bridge this gap, the presented work introduces a hydraulically informed surrogate measure of pipe criticality for the resilience analysis of WDNs, called Water Flow Edge Betweenness Centrality (WFEBC). The WFEBC combines the random walk betweenness centrality with hydraulic (energy) loss principles in pipes. The proposed network resilience estimation method is applied to a case study network and an operational network. Furthermore, a network decomposition approach is proposed to complement the network estimation method and facilitate its scalability to large operational networks. The described resilience analysis method is benchmarked against a hydraulic model-based analysis of WDN reserve capacity. WFEBC is also applied to assess the improvement in resilience allowed by the implementation of a dynamically adaptive topology in an operational network. The benefits and limitations of the proposed method are discussed.
机译:供水网络(WDN)是复杂且高度互连的系统。为了在故障条件下维持运行,WDN应具有基于拓扑和能量冗余的内置弹性。基于水力模型或代理网络度量,可以使用多种方法来分析WDN的弹性。但是,不存在一种普遍接受的方法。破坏性运营情景的水力建模受到组合限制和不确定性的困扰。依赖代理网络措施的方法没有考虑拓扑和能量冗余之间的复杂相互作用。为了弥合这一差距,目前的工作引入了一种液压信息上的管道关键性替代措施,用于WDN的弹性分析,称为水流边缘中间度(WFEBC)。 WFEBC将随机游走中间性与管道中的液压(能量)损失原理结合在一起。所提出的网络弹性估计方法被应用于案例研究网络和运营网络。此外,提出了一种网络分解方法来补充网络估计方法并促进其对大型运营网络的可扩展性。所描述的弹性分析方法以基于水力模型的WDN备用容量分析为基准。 WFEBC还用于评估在运营网络中实施动态自适应拓扑所允许的弹性提高。讨论了该方法的优点和局限性。

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