设计弹性和经济上可行的配水系统:多维方法

Beatrice Cassottana , Srijith Balakrishnan , Nazli Yonca Aydin , Giovanni Sansavini
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引用次数: 2

摘要

增强关键基础设施系统的复原力需要大量投资,并需要在环境效益和经济效益之间进行权衡。为此,我们提出了一个方法框架,将弹性和经济分析相结合,并评估配水系统及其相互依存的电力和运输系统的替代弹性设计的经济可行性。基于流量的网络模型模拟了相互依赖的基础设施系统,全球弹性分析(GRA)量化了各种中断场景下的三个弹性指标。经济分析将这三个指标货币化,并比较了涉及安装远程控制截止阀的两种弹性策略。以Micropolis综合相互依存的水运网络为例,我们展示了我们的框架如何指导基础设施利益相关者和公用事业运营商衡量弹性投资的价值。总的来说,我们的方法强调了经济分析在设计弹性基础设施系统方面的重要性。
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Designing resilient and economically viable water distribution systems: A Multi-dimensional approach

Enhancing the resilience of critical infrastructure systems requires substantial investment and entails trade-offs between environmental and economic benefits. To this aim, we propose a methodological framework that combines resilience and economic analyses and assesses the economic viability of alternative resilience designs for a Water Distribution System (WDS) and its interdependent power and transportation systems. Flow-based network models simulate the interdependent infrastructure systems and Global Resilience Analysis (GRA) quantifies three resilience metrics under various disruption scenarios. The economic analysis monetizes the three metrics and compares two resilience strategies involving the installation of remotely controlled shutoff valves. Using the Micropolis synthetic interdependent water-transportation network as an example, we demonstrate how our framework can guide infrastructure stakeholders and utility operators in measuring the value of resilience investments. Overall, our approach highlights the importance of economic analysis in designing resilient infrastructure systems.

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