DocumentCode
1888691
Title
Multi-Objective Evaluation Model of Groundwater Carrying Capacity in Irrigation District
Author
Qu, Jihong ; Wang, Hua ; Yang, Li
Author_Institution
North China Univ. of Water Conversancy & Hydroelectric Power, Zhengzhou, China
fYear
2010
fDate
25-26 Dec. 2010
Firstpage
1
Lastpage
4
Abstract
As groundwater resource in irrigation district is affected by many factors,evaluation of groundwater carrying capacity is a multi-objective optimal problem.A multi-objective quantitative evaluation model was established, which included four objectives,i.e.,GDP, grain yield, population and COD emissions. The improved Differential Evolution (DE) algorithm was built and adopted to solving the multi-objective evaluation model. In order to improve the population´s diversity and the ability of escaping from the local optimum,a self-adapting crossover probability factor was presented in DE algorithm. Furthermore,a chaotic sequence based on logistic map was employed to self-adaptively adjust mutation factor based on linear crossover. Dynamic penalty function,to transform the constrained problem to unconstrained one, was employed. The multi-objective quantitative evaluation model was applied to evaluate groundwater carrying capacity of People´s Victory Canal irrigation district in different frequency year. The result shows that, with groundwater resource increasing, all objectives of groundwater carrying, including GDP, population, grain yield and COD emissions, in 50% frequency year are more than in 75% frequency year.
Keywords
environmental factors; evolutionary computation; groundwater; irrigation; socio-economic effects; water resources; COD emissions; differential evolution algorithm; groundwater carrying capacity; irrigation district; multiobjetive quantitative evaluation model; population diversity; self adaptive mutation factor; Biological system modeling; Economic indicators; Heuristic algorithms; Irrigation; Water conservation; Water resources;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Engineering and Computer Science (ICIECS), 2010 2nd International Conference on
Conference_Location
Wuhan
ISSN
2156-7379
Print_ISBN
978-1-4244-7939-9
Electronic_ISBN
2156-7379
Type
conf
DOI
10.1109/ICIECS.2010.5677808
Filename
5677808
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