Design of irrigation canals with minimum overall cost using particle swarm optimization – case study: El-Sheikh Gaber canal, north Sinai Peninsula, Egypt

Author:

El-Ghandour Hamdy A.1,Elbeltagi Emad2,Gabr Mohamed E.3

Affiliation:

1. Irrigation and Hydraulics Department, Faculty of Engineering, Mansoura University, Mansoura 35516, Egypt

2. Structural Engineering Department, Faculty of Engineering, Mansoura University, Mansoura 35516, Egypt

3. Civil Engineering Department, Higher Institute for Engineering and Technology, New Damietta, Egypt

Abstract

Abstract Nowadays, the scarcity of freshwater sources, climate change and the deterioration of freshwater quality have a great impact on the lives of human beings. As such, improving the design of irrigation canals will reduce water losses through evaporation and seepage. In this paper, particle swarm optimization (PSO) is used to determine the optimum design of irrigation canals' cross-sections with the objective to minimize the overall costs. The overall costs include the costs of earthwork, lining, and water loss by both seepage and evaporation. The velocity constraints for sedimentation and erosion have been taken into consideration in the proposed design method. The proposed PSO is compared with both the Probabilistic Global Search Lausanne (PGSL) and classical optimization methods to verify its usefulness in optimal design of canals' cross-sections. The proposed PSO is then used to design El-Sheikh Gaber canal, north Sinai Peninsula, Egypt and the obtained dimensions are compared with the existing canal dimensions. To facilitate the use of the developed model, optimal design graphs are presented. The results show that the reduction of overall cost ranged from 28 to 41% and consequently, the proposed PSO algorithm can be reliably used for the design of irrigation open canals without going through the conventional and cumbersome trial and error methods.

Publisher

IWA Publishing

Subject

Atmospheric Science,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering,Water Science and Technology

Reference22 articles.

1. Minimum cost design of irrigation canals using probabilistic global search Lausanne;Arabian Journal for Science and Engineering,2013

2. Optimizing channel cross-section based on cat swarm optimization;International Journal of Agricultural and Biological Engineering,2016

3. Comparison between genetic algorithms and particle swarm optimization;Porto,1998

4. Magnitude and characteristics of sand dunes encroachment towards El-Sheikh Gaber Channel, North Sinai, Egypt,2018

5. Design and analysis of a canal section for minimum water loss;Alexandria Engineering Journal,2011

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