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Evaluating real-time control of stormwater drainage network and green stormwater infrastructure for enhancing flooding resilience under future rainfall projections

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Type de ressource
Article de revue
Auteurs/contributeurs
  • Li, Jiada (Auteur)
  • Burian, Steven J. (Auteur)
Titre
Evaluating real-time control of stormwater drainage network and green stormwater infrastructure for enhancing flooding resilience under future rainfall projections
Résumé
Traditional stormwater control measures are designed to handle system loadings induced by fixed-size storm events. However, climate change is predicted to alter the frequency and intensity of flooding events, stimulating the need to explore another more adaptive flooding solution like real-time control (RTC). This study assesses the performance of RTC to mitigate impacts of climate change on urban flooding resilience. A simulated, yet realistic, urban drainage system in Salt Lake City, Utah, USA, shows that RTC improves the flooding resilience by up to 17% under climatic rainfall changes. Compared with green stormwater infrastructure (GSI), RTC exhibits a lower resistibility, lower flooding failure level, and higher recovery rate in system performance curves. Results articulate that keeping RTC's performance consistent under ‘back-to-back’ storms requires a tradeoff between upstream dynamical operation and downstream flooding functionality loss. This research suggests that RTC provides a path towards smart and resilient stormwater management strategy.
Publication
Resources, Conservation and Recycling
Volume
198
Pages
107123
Date
2023-11-01
Abrév. de revue
Resources, Conservation and Recycling
DOI
10.1016/j.resconrec.2023.107123
ISSN
0921-3449
URL
https://www.sciencedirect.com/science/article/pii/S0921344923002598
Consulté le
2025-07-13 19 h 06
Catalogue de bibl.
ScienceDirect
Référence
Li, J., & Burian, S. J. (2023). Evaluating real-time control of stormwater drainage network and green stormwater infrastructure for enhancing flooding resilience under future rainfall projections. Resources, Conservation and Recycling, 198, 107123. https://doi.org/10.1016/j.resconrec.2023.107123
Lien vers cette notice
https://bibliographies.uqam.ca/riisq/bibliographie/A9HD76SZ
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