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Topological Robustness and Vulnerability Assessment of Water Distribution Networks

机译:供水管网的拓扑鲁棒性和脆弱性评估

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The reliability of a water distribution network (WDN) is a function of several time-invariant and time-dependent factors affecting its components and connectivity, most important of which have been shown to be the network's topology, its operating pressure, the type of key components (such as the diameter, length, material and age of water pipes) and the network's historical performance (such as the number of previously observed failures in the network). In terms of network topology, this attribute even though generally thought as time-invariant it actually is time-dependent, as the paths in a water distribution network change over time based on the hydraulics in the network (water demand and water pressure/flow alter the way water flows in the piping network). The work described herein examines the time-dependent nature of a WDN topology and by means of a betweenness centrality index (BC) method demonstrates the effect of topology on the network's vulnerability / reliability. The importance of the betweenness centrality index is demonstrated by use of a case-study water distribution network operated under both normal and abnormal conditions. The proposed method is also coupled with spatial mapping to indicate areas of concern in the network, and with a decision support system to assist in prioritizing actions to improve on the network's robustness and resilience.
机译:供水网络(WDN)的可靠性是影响其组件和连通性的多个时不变和时变因素的函数,其中最重要的因素已显示为网络的拓扑结构,运行压力,关键类型组件(例如水管的直径,长度,材料和使用年限)和网络的历史性能(例如先前在网络中观察到的故障数量)。就网络拓扑而言,该属性即使通常被认为是时不变的,但实际上实际上是时间相关的,因为自来水管网中的路径会根据网络中的水力随时间而变化(需水量和水压/流量变化水在管道网络中的流动方式)。本文描述的工作检查了WDN拓扑的时间依赖性,并通过中间性中心指数(BC)方法演示了拓扑对网络的脆弱性/可靠性的影响。中间性中心指数的重要性通过使用在正常和异常条件下均运行的案例研究供水网络得到了证明。所提出的方法还与空间映射(以指示网络中的关注区域)以及决策支持系统相结合,以帮助确定操作的优先级,以改善网络的健壮性和弹性。

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