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Robust Booster Disinfection Scheduling Using Incomplete Mixing Water Quality Model(EPANET-IMX)

  • Sriman Pankaj Boindala
  • , Reza Yousefian
  • , Sophie Duchesne
  • , Avi Ostfeld

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

In the realm of practical water distribution systems (WDS), uncertainties in hydraulic and water quality modeling affect the management of WDS making it a multifaceted challenge. Furthermore, the incorporation of water quality considerations into WDS design and management has become paramount, necessitating the use of precise water quality models. The conventional water quality models employed in drinking WDS have faced inaccuracy due to their underlying assumption of instantaneous and complete mixing at junctions. To address this limitation, recent models such as EPANET-IMX (Incomplete Mixing Extension), EPANET-BAM, and AZRED have emerged, incorporating empirical equations to model the nuances of incomplete mixing. These advancements offer improved accuracy for water quality analysis within WDS. However, the presence of uncertainty in disinfectant reaction rates also presents an obstacle to achieving optimal water quality management. Within such systems, determining the scheduling of booster disinfectant dosages is a challenge. In response, this study seeks to determine the optimal dosage schedule for booster disinfectants while accounting for fluctuations in bulk reaction rate coefficients and acknowledging incomplete mixing at junctions. To tackle this uncertain optimization problem, robust optimization principles are employed. The study applies these principles to a small-scale network as an illustrative example, showcasing robust optimal schedules. Two water quality models, namely EPANET and EPANET-IMX, are utilized for water quality simulations. The resulting optimal schedules are compared and analyzed across all three models. It was observed that considering the incomplete mixing varied the optimal booster dosage by about 10%. The findings emphasized the importance of considering incomplete mixing in both water quality analysis and optimization endeavors.

Original languageEnglish GB
Title of host publicationWorld Environmental and Water Resources Congress 2024
Subtitle of host publicationClimate Change Impacts on the World We Live In - Proceedings of the World Environmental and Water Resources Congress 2024
EditorsSaki Handa, Rob Montgomery, Carl Sutter
Pages1367-1379
Number of pages13
ISBN (Electronic)9780784485477
DOIs
StatePublished - 2024
Event2024 World Environmental and Water Resources Congress: Climate Change Impacts on the World We Live In - Milwaukee, United States
Duration: 19 May 202422 May 2024

Publication series

NameWorld Environmental and Water Resources Congress 2024: Climate Change Impacts on the World We Live In - Proceedings of the World Environmental and Water Resources Congress 2024

Conference

Conference2024 World Environmental and Water Resources Congress: Climate Change Impacts on the World We Live In
Country/TerritoryUnited States
CityMilwaukee
Period19/05/2422/05/24

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 6 - Clean Water and Sanitation
    SDG 6 Clean Water and Sanitation

ASJC Scopus subject areas

  • Water Science and Technology

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