- Title
- Impact of water-quality conditions in source reservoirs on the optimal operation of a regional multiquality water-distribution system
- Creator
- Mala-Jetmarova, Helena; Barton, Andrew; Bagirov, Adil
- Date
- 2015
- Type
- Text; Journal article
- Identifier
- http://researchonline.federation.edu.au/vital/access/HandleResolver/1959.17/98638
- Identifier
- vital:10273
- Identifier
-
https://doi.org/10.1061/(asce)wr.1943-5452.0000523
- Identifier
- ISBN:0733-9496
- Abstract
- The impact of water quality conditions in source reservoirs on the optimal operation of a regional multiquality water-distribution system is analyzed. The optimization model concurrently minimizes three operational objectives being pump energy costs, turbidity, and salinity deviations at customer demand nodes from allowed values. The optimization problem is solved using the optimization tool GANetXL incorporating the NSGA-II, linked with the network analysis software EPANet. The example network adapted from the literature captures some of the unique features of the Wimmera Mallee Pipeline in Australia. Six scenarios representing different water quality conditions in source reservoirs are analyzed. It was discovered that two types of trade-offs, competing and noncompeting, exist between the objectives and that the type of trade-off is not unique between a particular pair of objectives for all scenarios. These and other findings may be of particular use to system operators in their long-term operational planning and decision making. (C) 2015 American Society of Civil Engineers.
- Publisher
- American Society of Civil Engineers
- Relation
- Journal of Water Resources Planning and Management Vol. 141, no. 10 (2015), p.1-14; http://purl.org/au-research/grants/arc/LP0990908
- Rights
- Copyright © 2015 American Society of Civil Engineers
- Rights
- This metadata is freely available under a CCO license
- Subject
- 0905 Civil Engineering; 0907 Environmental Engineering; Water distribution systems; Multiobjective optimization; System operation; Water quality; Pumping
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