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A Comparative Study on a Hydraulic and Water-Quality Analysis Method for Determining Rechlorination Injection Points for a Water-Supply Network

Authors
Lee, Sang MyoungLee, Ho MinYoo, Do GuenKim, Joong Hoon
Issue Date
4월-2019
Publisher
MDPI
Keywords
water supply network; hydraulic analysis; water quality analysis; pressure-driven analysis; rechlorination facility; residual chlorine
Citation
WATER, v.11, no.4
Indexed
SCIE
SCOPUS
Journal Title
WATER
Volume
11
Number
4
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/66537
DOI
10.3390/w11040697
ISSN
2073-4441
Abstract
Water supply facilities are vulnerable to extreme weather events, such as droughts and floods. To establish a sustainable solution that resists accidents and disasters, a distributed system is required. To supply high-quality tap water using the existing water-supply network, rechlorination facilities must be installed to secure residual chlorine at the pipe end. In this study, a process is developed to determine the injection points and dosages of rechlorination using the latest pressure-driven analysis. The method was compared to the results of demand driven analysis methods. The proposed model was applied to P City in Korea to draw results. A detailed evaluation was performed to study how water pressure head and demand-based hydraulic and water quality analysis results impact the injection points and dosages of rechlorination. Thus, the existing demand-based model shows significant spatial deviations in the pressure head in the presence of water pressure drops, which subsequently lead to over-estimation of chlorine injection dosages for maintaining the concentration of residual chlorine. However, the proposed model involves a numerically validated theory and draws more reasonable results for hydraulic, water quality, and rechlorination dosages. The proposed model can be used as a decision-making tool based on hydraulic analysis for the supply of water of a stable quality.
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College of Engineering > School of Civil, Environmental and Architectural Engineering > 1. Journal Articles

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