All Issue

2023 Vol.56, Issue 11 Preview Page

Research Article

30 November 2023. pp. 705-720
Abstract
References
1
Ajaz, M., and Ahmad, D. (2023). "Optimal water quality simulation of the proposed water distribution system for the university of kashmir using EPANET 2.2 and leakage modelling of the network using EPANET extension - waternetgen." Environmental Sciences Proceedings, Vol. 25, No. 1, 27. 10.3390/ECWS-7-14251
2
Boccelli, D., Tryby, M., Uber, J., and Summers, S. (2003). "A reactive species model for chlorine decay and THM formation under rechlorination conditions." Water Research, Vol. 37, No. 11, pp. 2654-2666. 10.1016/S0043-1354(03)00067-812753843
3
Chung, W.S., Kim, I.T., Lee, H.D., and Yu, M.J. (2004). "Subject water quality management in small water distribution reservoir using residual chlorine decay." Seoul Studies, Vol. 5, No. 2, pp. 27-43.
4
Davis, M.J., Janke, R., and Taxon, T.N. (2018). "Mass imbalances in EPANET water-quality simulations." Drinking Water Engineering and Science, Vol. 11, pp. 25-47. 10.5194/dwes-11-25-201830123434PMC6093308
5
Haas, C.N., and Karra, S.B. (1984). "Kinetics of waste chlorine demand exertion." Journal Water Pollution Control Federation, Vol. 56, No. 2, pp. 170-173.
6
Jeong, G., Kang, D., and Hwang, T. (2021). "Spatiotemporal chlorine residual prediction in water distribution networks using a hierarchical water quality simulation technique." Journal of Korea Water Resources Association, Vol. 54, No. 9, pp. 643-656. 10.3741/JKWRA.2021.54.9.643
7
Jeong, G., Kang, D., and Hwang, T. (2022). "Reaction coefficient assessment and rechlorination optimization for chlorine residual equalization in water distribution networks." Journal of Korea Water Resources Association, Vol. 55, No. S-1, pp. 1197-1210. 10.3741/JKWRA.2022.55.S-1.1197
8
Kim, J., and Han, J.A. (2014). "Rechlorination for residual chlorine concentration equalization in distribution system." Journal of Korean Society of Water and Wastewater, Vol. 28, No. 1, pp. 91-101. 10.11001/jksww.2014.28.1.91
9
Kim, Y.H., Kweon, J.H., and Kim, D.I. (2014). "Prediction of residual chlorine using two-component second-order decay model in water distribution network." Journal of Korean Society of Water and Wastewater, Vol. 28, No. 3, pp. 287-297. 10.11001/jksww.2014.28.3.287
10
Lansey, K., Pasha, F., Pool, S., Elshorbagy, W., and Uber, J. (2007). "Locating satellite booster disinfectant stations." Journal of Water Resources Planning and Management, Vol. 133, No. 4, pp. 372-376. 10.1061/(ASCE)0733-9496(2007)133:4(372)
11
Minaee, R.P., Afsharnia, M., Moghaddam, A., Ebrahimi, A.A., Askarishahi, M., and Mokhtari, M. (2019). "Calibration of water quality model for distribution networks using genetic algorithm, particle swarm optimization, and hybrid methods." MethodsX, Vol. 6, pp. 540-548. 10.1016/j.mex.2019.03.00830976527PMC6441747
12
Office of Waterworks Seoul Metropolitan Government (2022). Arisu public relations office, accessed 18 October 2023, <https://e-arisu.seoul.go.kr/promotion/report.jsp?peb_idx=618&brdType=R>.
13
Powell, J.C., West, R.J., Hallam, B.N., Forster, F.C., and Simms, J. (2000). "Performance of various kinectic models for chlorine decay." Journal of Water Resources Planning and Management, ACSE, Jan/Feb. Vol. 126, No. 1, pp. 13-20. 10.1061/(ASCE)0733-9496(2000)126:1(13)
14
Rossman, L., Woo, H., Tryby, M., Shang, F., Janke, R., and Haxton, T. (2020). EPANET 2.2 user manual. EPA/600/R-20/133, U.S. Environmental Protection Agency, Washington, DC, U.S.
15
Rossman, L.A., and Boulos, P.F. (1996). "Numerical methods for modeling water quality in distribution systems: A comparison." Journal of Water Resources Planning and Management, Vol. 122, No. 2, pp. 137-146. 10.1061/(ASCE)0733-9496(1996)122:2(137)
16
Rossman, L.A., Clark, R.M., and Grayman, W.M. (1994). "Modeling chlorine residuals in drinking-water distribution systems." Journal of Environmental Engineering, Vol. 120, No. 4, pp. 803-820. 10.1061/(ASCE)0733-9372(1994)120:4(803)
17
Seo, J., Kim, K., Hyung, J., Kim, T., and Koo, J. (2019). "Optimization model for location and operation schedule of chlorine booster stations in water distribution networks." Desalination Water Treatment, Vol. 140, pp. 91-102. 10.5004/dwt.2019.23373
18
Sherwood, T., Pigford, R., and Wilke, C. (1975). Mass transfer. McGraw-Hill, NY, U.S.
19
Sitzenfrei, R. (2021). "Using complex network analysis for water quality assessment in large water distribution systems." Water Research, Vol. 201, 117359. 10.1016/j.watres.2021.11735934171648
20
Yoo, D., Lee, S., Lee H., Choi, Y., and Kim, J. (2018). "Optimizing re-chlorination injection points for water supply networks using harmony search algorithm." Water, Vol. 10, 547. 10.3390/w10050547
Information
  • Publisher :KOREA WATER RESOURECES ASSOCIATION
  • Publisher(Ko) :한국수자원학회
  • Journal Title :Journal of Korea Water Resources Association
  • Journal Title(Ko) :한국수자원학회 논문집
  • Volume : 56
  • No :11
  • Pages :705-720
  • Received Date : 2023-09-25
  • Revised Date : 2023-10-19
  • Accepted Date : 2023-10-19