165
Views
4
CrossRef citations to date
0
Altmetric
Original Articles

Sizing of water distribution pipes based on performance measure and breakage-repair-replacement economics

&
Pages 241-251 | Received 13 Jan 2012, Accepted 03 Sep 2012, Published online: 30 Oct 2012

References

  • Almoussawi , R and Christian , C . 2005 . Fundamentals of quantitative risk analysis . J. Hydroinform. , 7 ( 2 ) : 61 – 77 .
  • Alperovits , E and Shamir , U . 1977 . Design of optimal water distribution systems . Water Resour. Res. , 13 ( 6 ) : 885 – 900 .
  • Banos , R , Reca , J , Martinez , J , Gil , C and Marquez , AL . 2011 . Resilience indices for water distribution network design: a performance analysis under demand uncertainty . Water Resour. Manag. , 25 ( 10 ) : 2351 – 2366 .
  • Cunha , M and Sousa , J . 1999 . Water distribution network design optimization: simulated annealing approach . J. Water Resour. Plan. Manag. , 125 ( 4 ) : 215 – 221 .
  • Dandy , GC , Simpson , AR and Murphy , LJ . 1996 . An improved genetic algorithm for pipe network optimization . Water Resour. Res. , 32 ( 2 ) : 449 – 458 .
  • Eusuff , MM and Lansey , KE . 2003 . Optimization of water distribution network design using the shuffled frog leaping algorithm . J. Water Resour. Plan. Manag. , 129 ( 3 ) : 210 – 225 .
  • Filion , YR , Maclean , HL and Karney , BW . 2004 . Life-cycle energy analysis of a water distribution system . J. Infrastruct. Syst. , 10 ( 3 ) : 120 – 130 .
  • Goulter , IC and Bouchart , F . 1990 . Reliability constrained pipe networks model . J. Hydraul. Eng. , 116 ( 2 ) : 221 – 229 .
  • Goulter , IC and Morgan , DR . 1985 . An integrated approach to the layout and design of water distribution networks . Civil Eng. Syst. , 2 ( 2 ) : 104 – 113 .
  • Jayaram , N and Srinivasan , K . 2008 . Performance-based optimal design and rehabilitation of water distribution networks using life cycle costing . Water Resour. Res. , 44 ( W01417 ) : 1417
  • Kettler , AJ and Goulter , IC . 1985 . An analysis of pipe breakage in urban water distribution networks . Can. J. Civil Eng. , 12 ( 2 ) : 286 – 291 .
  • Loganathan , GV , Park , S and Sherali , HD . 2002 . Threshold break rate for pipeline replacement in water distribution systems . J. Water Resour. Plan. Manag. , 128 ( 4 ) : 271 – 279 .
  • Maier , HR , Simpson , AR , Zecchin , AC , Foong , WK , Phang , KY , Seah , HY and Tan , CL . 2003 . Ant colony optimization for design of water distribution systems . J. Water Resour. Plan. Manag. , 129 ( 3 ) : 200 – 209 .
  • Neelakantan , TR , Suribabu , CR and Lingireddy , S . 2008 . Pipe-sizing optimization including break-repair and replacement economics . Water SA. , 34 ( 2 ) : 217 – 224 .
  • Park , SW and Loganathan , GV . 2002 . Methodology for economically optimal replacement of pipes in water distribution systems: 2 applications . Water Eng., KSCE J. Civil Eng. , 6 ( 4 ) : 545 – 550 .
  • Pelletier , G , Mailhot , A and Villeneuve , JP . 2003 . Modeling water pipe breaks—three case studies . J. Water Resour. Plan. Manag. , 129 ( 2 ) : 115 – 123 .
  • Prasad , TD and Park , NS . 2004 . Multiobjective genetic algorithms for design of water distribution networks . J. Water Resour. Plan. Manag. , 130 ( 1 ) : 73 – 82 .
  • Quindry , GE , Brill , ED and Liebman , JC . 1981 . Optimization of looped water distribution systems . J. Environ. Eng. , 107 ( 4 ) : 665 – 679 .
  • Rossman , LA . (2000). EPANET 2—user manual.” National Risk Management Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, Cincinnati, OH
  • Savic , DA and Walters , GA . 1997 . Genetic algorithms for least cost design of water distribution networks . J. Water Resour. Plan. Manag. , 123 ( 2 ) : 67 – 77 .
  • Shamir , U and Howard , CDD . 1979 . Analytical approach to scheduling pipe replacement . J. Am. Water Works Assoc. , 74 ( 3 ) : 140 – 147 .
  • Storn , R . and Price, K. (1995). Differential evolution—a simple and efficient adaptive scheme for global optimization over continuous spaces.” Technical report, International Computer Science Institute, Berkeley, CA
  • Suribabu , CR . 2010 . Differential evolution algorithm for optimal design of water distribution networks . J. Hydroinform. , 12 ( 1 ) : 66 – 82 .
  • Suribabu , CR and Neelakantan , TR . 2006 . Design of water distribution networks using particle swarm optimization . Urban Water J. , 3 ( 2 ) : 111 – 120 .
  • Todini , E . 2000 . Looped water distribution networks design using a resilience index based heuristic approach . Urban Water J. , 2 ( 3 ) : 115 – 122 .
  • Vairavamoorthy , K and Ali , M . 2005 . Pipe index vector: a method to improve genetic-algorithm-based pipe optimization . J. Hydraul. Eng. , 131 ( 12 ) : 1117 – 1125 .
  • Vasan , A and Simonovic , SP . 2010 . Optimization of water distribution network design using differential evolution . J. Water Resour. Plan. Manag. , 136 ( 2 ) : 279 – 287 .
  • Walski , TM . 2001 . The wrong paradigm why water distribution optimization doesn't work . J. Water Resour. Plan. Manag. , 127 ( 4 ) : 203 – 205 .
  • Walski , TM and Pelliccia , A . 1982 . Economic analysis of water main breaks . J. Am. Water Works Assoc. , 74 ( 3 ) : 140 – 147 .
  • Wu , W , Maier , HR and Simpson , AR . 2011 . Surplus power factor as s resilience measure for assessing hydraulic reliability in water transmission system optimization . J. Water Resour. Plan. Manag. , 137 ( 6 ) : 542 – 546 .
  • Wu , ZY and Simpson , AR . 2001 . Competent genetic-evolutionary optimization of water distribution systems . J. Comput. Civil Eng. , 15 ( 2 ) : 89 – 101 .
  • Xu , C and Goulter , IC . 1999 . Reliability-based optimal design of water distribution networks . J. Water Resour. Plan. Manag. , 125 ( 6 ) : 352 – 362 .

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.