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Performance and Reliability Analysis of Water Distribution Systems under Cascading Failures and the Identification of Crucial Pipes

机译:级联故障下水分配系统的性能和可靠性分析以及关键管道的识别

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摘要

As a mean of supplying water, Water distribution system (WDS) is one of the most important complex infrastructures. The stability and reliability are critical for urban activities. WDSs can be characterized by networks of multiple nodes (e.g. reservoirs and junctions) and interconnected by physical links (e.g. pipes). Instead of analyzing highest failure rate or highest betweenness, reliability of WDS is evaluated by introducing hydraulic analysis and cascading failures (conductive failure pattern) from complex network. The crucial pipes are identified eventually. The proposed methodology is illustrated by an example. The results show that the demand multiplier has a great influence on the peak of reliability and the persistent time of the cascading failures in its propagation in WDS. The time period when the system has the highest reliability is when the demand multiplier is less than 1. There is a threshold of tolerance parameter exists. When the tolerance parameter is less than the threshold, the time period with the highest system reliability does not meet minimum value of demand multiplier. The results indicate that the system reliability should be evaluated with the properties of WDS and the characteristics of cascading failures, so as to improve its ability of resisting disasters.
机译:作为供水的一种手段,配水系统(WDS)是最重要的复杂基础设施之一。稳定性和可靠性对于城市活动至关重要。 WDS可以通过多个节点(例如储层和交汇处)的网络来表征,并通过物理链路(例如管道)相互连接。通过分析水力分析和复杂网络的级联故障(导电故障模式),可以评估WDS的可靠性,而不是分析最高故障率或最高故障间隔。最终确定了关键管道。举例说明了所提出的方法。结果表明,需求乘数对可靠性峰值和级联故障在WDS中传播的持续时间有很大影响。系统具有最高可靠性的时间段是需求乘数小于1时。存在容差参数的阈值。当容差参数小于阈值时,系统可靠性最高的时间段将不满足需求乘数的最小值。结果表明,应根据WDS的特性和级联故障的特性来评估系统的可靠性,以提高其抗灾能力。

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