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基于兩層協(xié)調(diào)模型的多級揚水灌區(qū)供水調(diào)配優(yōu)化
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國家重點研發(fā)計劃項目(2016YFC0400206-04)和農(nóng)業(yè)部作物需水與調(diào)控重點實驗室開放項目(FIRI2016-09)


Optimization of Irrigation Water Regulation for Multi-stage Irrigation Pumping System Based on Two-level Coordination Model
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    摘要:

    針對寧夏回族自治區(qū)揚水灌區(qū)水資源緊缺,、供水揚程高,、不同灌溉方式并存、供水調(diào)配困難,、運行成本高等問題,,開展了多級揚水灌區(qū)的供水調(diào)配優(yōu)化研究??紤]研究區(qū)供水具有多層次,、相互聯(lián)系、組成復(fù)雜,、影響因素眾多等特點,,建立了具有二層遞階結(jié)構(gòu)的供水調(diào)配多目標優(yōu)化模型。模型以各層缺水量平方和最小和運行功耗最小為目標,,考慮不同灌溉時段影響,第1層建立單個泵站供水調(diào)度優(yōu)化模型,,以進行單個泵站控制區(qū)內(nèi)各時段輸蓄水量分配優(yōu)化,;第2層建立多級泵站供水調(diào)配優(yōu)化模型,,以優(yōu)化系統(tǒng)內(nèi)各級泵站系統(tǒng)各時段供水量和提水量。兩層之間以供水量作為協(xié)調(diào)變量,,依據(jù)大系統(tǒng)分解-協(xié)調(diào)原理進行求解,,充分考慮了不同層次之間水量調(diào)配和主體利益的協(xié)調(diào)。灌區(qū)應(yīng)用表明,,所構(gòu)建模型能有效進行多級揚水灌區(qū)水量調(diào)配優(yōu)化,,給出了核定水量下各級泵站系統(tǒng)水量分配優(yōu)化方案,優(yōu)化方案較好地緩解了各級泵站間的供水調(diào)配時空矛盾,,顯著減小了系統(tǒng)缺水量,。研究結(jié)果可為灌區(qū)管理者進行實際水量調(diào)配和管理提供決策支持和技術(shù)支撐。

    Abstract:

    Multistage irrigation pumping system is often faced with these typic problems of scarce water resource, high lift of water pumping, coexistence of different irrigation methods, difficult allocation of water, high cost of operation etc. It is significant to optimize the water regulation to alleviate above problems. A typical multistage irrigation pumping system (Guhai irrigation system) in Ningxia Hui Autonomous Region was taken as a case study area, and a regional multiobjective optimization model was developed with a twolevel hierarchical structure for optimal regulation of irrigation water. Water requirement and energy consumption were taken as two objectives in the model so as to consider the operations of pumping stations. Meanwhile, different irrigation periods were considered to obtain detailed schedules for water allocation and operation. Based on the decompositionharmonization method for large system, a twolevel structure was constructed to better describe the characteristics of multilevel and interrelated relationship, complicated structures and multiple impact factors. The first level dealt with the optimal allocation of irrigation water supply among various crops in each pumping station. The second level sought out the optimal schemes of pumping and allocating water among multistage pumping stations. Each level was solved independently, while they were coordinated through taking water supply amount as coordinating variables. Based on the optimization model, optimal schemes for water allocation and pumping station operation were presented for all stages of pumping stations under approved amount of water resources in the study area. Results indicated that the total water shortage amount was significantly 〖JP3〗reduced from 5.77×10 6m3 to 1.30×10 4m3 in the whole system, and it was reduced from -3.22×106~2.47×106m3 to -8.30×104~9.50×104m3 among each pumping station. The spatialtemporal contradictions of water supply among multistage pumping stations were effectively alleviated through the optimization of water supply. The research provided an effective and practicable tool to optimize the regional water allocation for complex multistage pumping irrigation system, and the model can be further practiced for actual water management.

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姜瑤,熊呂陽,姚付啟.基于兩層協(xié)調(diào)模型的多級揚水灌區(qū)供水調(diào)配優(yōu)化[J].農(nóng)業(yè)機械學(xué)報,2019,50(5):310-319. JIANG Yao, XIONG Lüyang, YAO Fuqi. Optimization of Irrigation Water Regulation for Multi-stage Irrigation Pumping System Based on Two-level Coordination Model[J]. Transactions of the Chinese Society for Agricultural Machinery,2019,50(5):310-319.

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  • 收稿日期:2018-12-09
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  • 在線發(fā)布日期: 2019-05-10
  • 出版日期: 2019-05-10
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