357
Views
13
CrossRef citations to date
0
Altmetric
Original Articles

A two-phase simulation–optimization cellular automata method for sewer network design optimization

, &
Pages 620-636 | Received 15 May 2018, Accepted 18 Mar 2019, Published online: 24 May 2019

References

  • Afshar, M. H. 2006a. “Application of Genetic Algorithm to Storm Sewer Network Optimization.” Scientia Iranica, Sharif University of Technology 13 (3): 234–244.
  • Afshar, M. H. 2006b. “Improving the Efficiency of Ant Algorithms Using Adaptive Refinement: Application to Storm Water Network Design.” Advances in Water Resources 29 (9): 1371–1382. doi:10.1016/j.advwatres.2005.10.013.
  • Afshar, M. H. 2008. “Rebirthing Particle Swarm Optimization Algorithm: Application to Storm Water Network Design.” Canadian Journal of Civil Engineering 35 (10): 1120–1127. doi:10.1139/L08-056.
  • Afshar, M. H. 2010. “A Parameter Free Continuous Ant Colony Optimization Algorithm for the Optimal Design of Storm Sewer Networks: Constrained and Unconstrained Approach.” Advances in Engineering Software 41 (2): 188–195. doi:10.1016/j.advengsoft.2009.09.009.
  • Afshar, M. H., A. Afshar, M. A. Mariño, and A. A. S. Darbandi. 2006. “Hydrograph-Based Storm Sewer Design Optimization by Genetic Algorithm.” Canadian Journal of Civil Engineering 33 (3): 319–325. doi:10.1139/l05-121.
  • Afshar, M. H., and M. Rohani. 2012. “Optimal Design of Sewer Networks Using Cellular Automata-Based Hybrid Methods: Discrete and Continuous Approaches.” Engineering Optimization 44 (1): 1–22. doi:10.1080/0305215X.2011.557071.
  • Afshar, M. H., M. Shahidi, M. Rohani, and M. Sargolzaei. 2011. “Application of Cellular Automata to Sewer Network Optimization Problems.” Scientia Iranica 18 (3): 304–312. doi:10.1016/j.scient.2011.05.037.
  • Afshar, A., and H. Zamani. 2002. “An Improved Storm Water Network Design Model in Spreadsheet Template.” International Journal of Engineering and Science, Iran University of Science and Technology 12 (4): 135–148.
  • Dajani, J. S., and Y. Hasit. 1974. “Capital Cost Minimization of Drainage Networks.” Journal of the Environmental Engineering Division 100 (2): 325–337.
  • ElDessouki, W. M., Y. Fathi, and N. Rouphail. 2001. “Meta-optimization Using Cellular Automata with Application to the Combined Trip Distribution and Assignment System Optimal Problem.” Computer-Aided Civil and Infrastructure Engineering 16 (6): 384–398. doi:10.1111/0885-9507.00241.
  • Froise, S., and S. J. Burges. 1978. “Least-Cost Design of Urban-Drainage Networks.” Journal of the Water Resources Planning and Management Division 104 (1): 75–92.
  • Guo, Y., G. A. Walters, S. T. Khu, and E. Keedwell. 2007. “A Novel Cellular Automata Based Approach to Storm Sewer Design.” Engineering Optimization 39 (3): 345–364. doi:10.1080/03052150601128261.
  • Keedwell, E., and S. T. Khu. 2005. “A Hybrid Genetic Algorithm for the Design of Water Distribution Networks.” Engineering Applications of Artificial Intelligence 18 (4): 461–472. doi:10.1016/j.engappai.2004.10.001.
  • Kita, E., and T. Toyoda. 2000. “Structural Design Using Cellular Automata.” Journal of Structural and Multidisciplinary Optimization 19 (1): 64–73. doi:10.1007/s001580050086.
  • Li, G., and R. G. S. Matthew. 1990. “New Approach for Optimization of Urban Drainage Systems.” Journal of Environmental Engineering 116 (5): 927–944.
  • Liang, L. Y., R. G. Thompson, and D. M. Young. 2000. “Designing wastewater collection systems using genetic algorithms.” In 6th Pacific Rim International conference on Artificial Intelligence, edited by R. Mizoguchi and J. Slaney, 415–423. Berlin: Springer.
  • Liang, L. Y., R. G. Thompson, and D. M. Young. 2004. “Optimizing the Design of Sewer Networks Using Genetic Algorithms and Tabu Search.” Engineering, Construction and Architectural Management 11 (2): 101–112. doi:10.1108/09699980410527849.
  • Mays, L. W., J. r. Wenzel, and G. Harry. 1976. “Optimal Design of Multilevel Branching Sewer Systems.” Water Resources Research 12 (5): 913–917. doi:10.1029/WR012i005p00913.
  • Mays, L. W., and B. C. Yen. 1975. “Optimal Cost Design of Branched Sewer Systems.” Water Resources Research 11 (1): 37–47. doi:10.1029/WR011i001p00037.
  • Meredith, D. D. 1972. Dynamic Programming with Case Study on Planning and Design of Urban Water Facilities. Treaties on Urban Water Systems. Fort Collins, CO: Colorado State University.
  • Miles, S. W., and J. P. Heaney. 1988. “Better Than ‘Optimal’ Method for Designing Drainage Systems.” Journal of Water Resources Planning and Management 114 (5): 477–499. doi:10.1061/(ASCE)0733-9496(1988)114:5(477).
  • Moeini, R., and M. H. Afshar. 2013. “Constrained Ant Colony Optimisation Algorithm for the Layout and Size Optimisation of Sanitary Sewer Networks.” Urban Water Journal 10 (3): 154–173. doi:10.1080/1573062X.2012.716445.
  • Neumann, J. V., and A. W. Burks. 1966. Theory of Self-Reproducing Automata. Urbana: University of Illinois Press.
  • Packard, N. H. 1986. “Lattice Models for Solidification and Aggregation.” In First International Symposium for Science on Form, edited by S. Ishizaka, Y. Kato, R. Takaki, and J. Toriwaki, 95–101. Tokyo: KTK Scientific Publishers.
  • Provota, A., and C. Niocolis. 1994. “A Microscopic Aggregation Model of Droplet Dynamics in Warm Clouds.” Journal of Statistical Physics 74 (1-2): 75–89. doi:10.1007/BF02186807.
  • Robinson, D. K., and J. W. Labadie. 1981. “Optimal design of urban storm water drainage system.” In International symposium on urban hydrology, hydraulics, and sediment control, 145–156. Lexington, KY: University of Kentucky.
  • Rohani, M., and M. H. Afshar. 2014a. “GA–GHCA Model for the Optimal Design of Pumped Sewer Networks.” Canadian Journal of Civil Engineering 42 (1): 1–12. doi:10.1139/cjce-2014-0187.
  • Rohani, M., and M. H. Afshar. 2014b. “Sewer Networks Optimization Using Cellular Automata.” Studies in Engineering and Technology 1 (1): 1–12. doi:10.11114/set.v1i1.237.
  • Schonfisch, B., and M. Kinder. 2002. “A fish migration model.” In Proceedings of 5th international conference on cellular automata for research and industry, ACRI 2002, Springer, edited by S. Bandini, B. Chopard and M. Tomassini, 210–219. Berlin: Springer.
  • Shuai, D., and H. Zhao. 2004. “A new Generalized Cellular Automata Approach to Optimization of Fast Packet Switching.” Computer Networks 45 (4): 399–419. doi:10.1016/j.comnet.2004.02.001.
  • Sternberg, S. R. 1980. “Language and architecture for parallel image processing.” In Proceedings of the Conference in Pattern Recognition in Practice. Amsterdam: North Holland.
  • Ulam, S. 1960. A Collection of Mathematical Problems. Vol. 8. New York: Interscience Publishers.
  • Wang, L., Y. Zhou, and W. Zhao. 2009. Comparative Study on Bionic Optimization Algorithms for Sewer Optimal Design. Paper presented at the Fifth International Conference on Natural Computation, Tianjin, August 14–16.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.