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New Resilience Index for Urban Water Distribution Networks

机译:城市供水网络的新复原力指数

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摘要

The increased frequency of natural disasters and man-made catastrophes has caused major disruptions to critical infrastructures (CI) such as water distribution networks (WDNs). Therefore, reducing the vulnerability of the systems through physical and organizational restoration plans are the main concern for system engineers and utility managers that are responsible for the design, operation, and protection of WDNs. In this paper, a resilience index (R) of a WDN has been proposed that is the product of three indices: (1)the number of users temporarily without water, (2)the water level in the tank, and (3)the water quality. The resilience index is expected to help planners and engineers evaluate the functionality of a WDN, which includes: (1)delivering a certain demand of water with an acceptable level of pressure and quality, and (2)the restoration process following an extreme event. A small town in the south of Italy has been selected as a case study to show the applicability of this index using different disruptive scenarios and restoration plans. The numerical results show the importance of the partition of the network into districts to reduce the lack of services. It is also necessary to consider the indices separately to find trends that cannot be captured by the global index. Advantages and disadvantages of the different restoration plans are discussed. The proposed indices can be implemented in a decision support tool used by governmental agencies that want to include the restoration process, and the environmental and social aspects in their design procedure.
机译:自然灾害和人为灾难的发生频率增加,已严重破坏了关键基础设施(CI),例如供水网络(WDN)。因此,通过物理和组织还原计划来减少系统的漏洞是负责WDN设计,操作和保护的系统工程师和公用事业经理的主要关注点。本文提出了WDN的弹性指数(R),它是三个指数的乘积:(1)暂时没有水的用户数量,(2)储水箱中的水位和(3)水质。弹性指数有望帮助规划人员和工程师评估WDN的功能,其中包括:(1)以可接受的压力和质量水平提供一定量的水,以及(2)极端事件后的恢复过程。已选择意大利南部的一个小镇作为案例研究,以显示该指数在不同破坏性场景和恢复计划下的适用性。数值结果表明,将网络划分为区域对于减少服务不足的重要性。还需要单独考虑这些索引,以查找全局索引无法捕获的趋势。讨论了不同恢复计划的优缺点。建议的索引可以在政府机构使用的决策支持工具中实施,这些机构希望在其设计过程中包括恢复过程以及环境和社会方面。

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