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Development of Multi-Objective Optimal Redundant Design Approach for Multiple Pipe Failure in Water Distribution System

Authors
Choi, Young HwanKim, Joong Hoon
Issue Date
17-3월-2019
Publisher
MDPI
Keywords
mechanical redundancy-based design; water distribution systems; multiple pipe failure modeling; extreme demand condition; multi-objective optimization
Citation
WATER, v.11, no.3
Indexed
SCIE
SCOPUS
Journal Title
WATER
Volume
11
Number
3
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/66647
DOI
10.3390/w11030553
ISSN
2073-4441
Abstract
This study proposes a multi-objective optimal design approach for water distribution systems, considering mechanical system redundancy under multiple pipe failure. Mechanical redundancy is applied to the system's hydraulic ability, based on the pressure deficit between the pressure requirements under abnormal conditions. The developed design approach shows the relationships between multiple pipe failure states and system redundancy, for different numbers of pipe-failure conditions (e.g., first, second, third, horizontal ellipsis , tenth). Furthermore, to consider extreme demand modeling, the threshold of the demand quantity is investigated simultaneously with multiple pipe failure modeling. The design performance is evaluated using the mechanical redundancy deficit under extreme demand conditions. To verify the proposed design approach, an expanded version of the well-known benchmark network is used, configured as an ideal grid-shape, and the multi-objective harmony search algorithm is used as the optimal design approach, considering construction cost and system mechanical redundancy. This optimal design technique could be used to propose a standard for pipe failure, based on factors such as the number of broken pipes, during failure condition analysis for redundancy-based designs of water distribution systems.
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