Optimal allocation model and method for parallel ‘reservoir and pumping station’ irrigation system under insufficient irrigation conditions

Abstract The effective regulation and storage of water resources by reservoirs in arid and semi-arid areas is important for alleviating water resource shortages. In this paper, multiple irrigation reservoirs and pumping stations are evaluated, according to their special hydraulic connections and use...

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Main Authors: Cong Wei, Hengjun Ge, Jilin Cheng, Shaoqing Zhang
Format: Article
Language:English
Published: SpringerOpen 2023-09-01
Series:Applied Water Science
Subjects:
Online Access:https://doi.org/10.1007/s13201-023-02006-0
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author Cong Wei
Hengjun Ge
Jilin Cheng
Shaoqing Zhang
author_facet Cong Wei
Hengjun Ge
Jilin Cheng
Shaoqing Zhang
author_sort Cong Wei
collection DOAJ
description Abstract The effective regulation and storage of water resources by reservoirs in arid and semi-arid areas is important for alleviating water resource shortages. In this paper, multiple irrigation reservoirs and pumping stations are evaluated, according to their special hydraulic connections and used to establish the water resources optimal allocation model of the parallel ‘reservoir and pumping station’ irrigation system. The mathematical model takes the maximum total income of the whole irrigation area as the objective function, the water supply and spill of the reservoir and the water replenishment of the pumping station as the decision variables, and the system water supply, agricultural water rights, reservoir operation criteria as the constraints. A new multilevel decomposition aggregation dynamic programming (MDADP) algorithm is proposed to solve the complex nonlinear model and is compared with the real-coded genetic algorithm, particle swarm optimization, cat swarm optimization and whale optimization algorithm. From the analysis of optimality and the applicability of the algorithm, MDADP was found to be more suitable than the above heuristic models for solving problems in the field of the optimal allocation of water resources.
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spelling doaj.art-dc5f4013a416445ebf83caea6b2d9c472023-10-01T11:23:50ZengSpringerOpenApplied Water Science2190-54872190-54952023-09-01131011610.1007/s13201-023-02006-0Optimal allocation model and method for parallel ‘reservoir and pumping station’ irrigation system under insufficient irrigation conditionsCong Wei0Hengjun Ge1Jilin Cheng2Shaoqing Zhang3College of Hydraulic Science and Engineering, Yangzhou UniversityYangzhou Survey and Design Research Institute CO., LTDCollege of Hydraulic Science and Engineering, Yangzhou UniversityNanjing Water Conservancy Planning and Design Institute CO., LTDAbstract The effective regulation and storage of water resources by reservoirs in arid and semi-arid areas is important for alleviating water resource shortages. In this paper, multiple irrigation reservoirs and pumping stations are evaluated, according to their special hydraulic connections and used to establish the water resources optimal allocation model of the parallel ‘reservoir and pumping station’ irrigation system. The mathematical model takes the maximum total income of the whole irrigation area as the objective function, the water supply and spill of the reservoir and the water replenishment of the pumping station as the decision variables, and the system water supply, agricultural water rights, reservoir operation criteria as the constraints. A new multilevel decomposition aggregation dynamic programming (MDADP) algorithm is proposed to solve the complex nonlinear model and is compared with the real-coded genetic algorithm, particle swarm optimization, cat swarm optimization and whale optimization algorithm. From the analysis of optimality and the applicability of the algorithm, MDADP was found to be more suitable than the above heuristic models for solving problems in the field of the optimal allocation of water resources.https://doi.org/10.1007/s13201-023-02006-0Multi-reservoirMulti-pumping stationsJoint operationAgricultural water rightsDecomposition-aggregation methodDynamic programming
spellingShingle Cong Wei
Hengjun Ge
Jilin Cheng
Shaoqing Zhang
Optimal allocation model and method for parallel ‘reservoir and pumping station’ irrigation system under insufficient irrigation conditions
Applied Water Science
Multi-reservoir
Multi-pumping stations
Joint operation
Agricultural water rights
Decomposition-aggregation method
Dynamic programming
title Optimal allocation model and method for parallel ‘reservoir and pumping station’ irrigation system under insufficient irrigation conditions
title_full Optimal allocation model and method for parallel ‘reservoir and pumping station’ irrigation system under insufficient irrigation conditions
title_fullStr Optimal allocation model and method for parallel ‘reservoir and pumping station’ irrigation system under insufficient irrigation conditions
title_full_unstemmed Optimal allocation model and method for parallel ‘reservoir and pumping station’ irrigation system under insufficient irrigation conditions
title_short Optimal allocation model and method for parallel ‘reservoir and pumping station’ irrigation system under insufficient irrigation conditions
title_sort optimal allocation model and method for parallel reservoir and pumping station irrigation system under insufficient irrigation conditions
topic Multi-reservoir
Multi-pumping stations
Joint operation
Agricultural water rights
Decomposition-aggregation method
Dynamic programming
url https://doi.org/10.1007/s13201-023-02006-0
work_keys_str_mv AT congwei optimalallocationmodelandmethodforparallelreservoirandpumpingstationirrigationsystemunderinsufficientirrigationconditions
AT hengjunge optimalallocationmodelandmethodforparallelreservoirandpumpingstationirrigationsystemunderinsufficientirrigationconditions
AT jilincheng optimalallocationmodelandmethodforparallelreservoirandpumpingstationirrigationsystemunderinsufficientirrigationconditions
AT shaoqingzhang optimalallocationmodelandmethodforparallelreservoirandpumpingstationirrigationsystemunderinsufficientirrigationconditions