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Mitigating shortage and distribution costs in damaged water networks

机译:缓解受损水网络中的短缺和分配成本

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摘要

Recent events have sparked renewed interest in disaster mitigation for public infrastructures. Presidential Decision Directive 63 identifies water distribution as being among the most vital and vulnerable of our large-scale infrastructures. Water distribution networks are vulnerable to threats such as chemical and biological contamination, cyber attacks on computer-based management systems, and physical destruction from acts of nature and intentional attack. This research develops methods for configuring the undamaged portion of the water network to mitigate the consequences of physical destruction. The approach is to find a hydraulically feasible residual network that can be pressurized to meet the demand of a subset of demand sectors. Demand sectors not pressurized then receive water through truck distribution from pressurized sectors. The objective is to minimize weighted water shortage and water truck distribution costs by identifying sectors to pressurize along with an assignment of unpressurized sectors to pressurized sectors for water delivery by truck. The paper develops an optimization model, describes a solution method, and presents computational results for three example networks.
机译:最近发生的事件激发了人们对公共基础设施减灾的新兴趣。总统决策指令63确定水的分配是我们大规模基础设施中最重要和最脆弱的部分。供水网络容易受到威胁,例如化学和生物污染,对基于计算机的管理系统的网络攻击以及自然行为和故意攻击造成的物理破坏。这项研究开发了用于配置水网未损坏部分以减轻物理破坏后果的方法。该方法是找到一种液压可行的残差网络,可以对其加压以满足需求部门子集的需求。然后,未加压的需求部门通过卡车分配从加压部门接收水。目的是通过确定需要加压的部门以及将未加压的部门分配到加压的部门以通过卡车进行水输送,从而将加权的缺水和水车分配成本降至最低。本文开发了一个优化模型,描述了一种求解方法,并给出了三​​个示例网络的计算结果。

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