Designing resilient and economically viable water distribution systems

A Multi-dimensional approach

Journal Article (2023)
Author(s)

Beatrice Cassottana (Singapore-ETH Centre)

Srijith Balakrishnan (Singapore-ETH Centre)

Nazli Yonca Aydin (TU Delft - System Engineering)

Giovanni Sansavini (ETH Zürich)

Research Group
System Engineering
DOI related publication
https://doi.org/10.1016/j.rcns.2023.05.004
More Info
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Publication Year
2023
Language
English
Research Group
System Engineering
Issue number
3
Volume number
2
Pages (from-to)
19-29
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Abstract

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.