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Optimization of inter-sectorial water reallocation for arid-zone megacity-dominated area

机译:干旱区大城市主导地区跨部门调水优化

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摘要

Current water demand management of megacity-dominated areas in arid-zones should be revised to optimize water allocation for sustainable development. A novel hierarchical optimization model is proposed and examined for such an area in the arid zone of Iran. The model can significantly increase water economic efficiency, reduce unsatisfied demand, and maintain necessary agricultural production. Model sub-optimization provides the cropping pattern and transient four-phenological-stage deficit-irrigation strategy that maximizes economic benefit per unit agricultural allocation. The model employs a nonlinear benefit function for industry, a linear benefit function for service, and a cubic benefit function for deficit-irrigated agriculture. If available water is unchanged, optimal economic benefit increases 283 percent from the current situation. This requires decreasing agricultural water allocation, changing cropping patterns, using deficit irrigation, and increasing development of industrial and service sectors. If annual available water decreases by 25%, or by 40%, net economic benefit can increase 101% and 19%, respectively.
机译:应当对干旱地区大城市占主导地区的当前需水管理进行修订,以优化水资源分配以实现可持续发展。针对伊朗干旱地区的这一地区,提出并研究了一种新颖的分层优化模型。该模型可以显着提高水的经济效率,减少不满意的需求,并维持必要的农业生产。模型亚优化提供了种植模式和短暂的四物候阶段亏缺灌溉策略,可最大程度地提高单位农业配置的经济效益。该模型对工业采用非线性收益函数,对服务采用线性收益函数,对赤字灌溉农业采用三次收益函数。如果可用水保持不变,则最佳经济收益将比当前情况增加283%。这就要求减少农业用水分配,改变种植方式,利用亏缺灌溉,以及增加工业和服务业的发展。如果年可用水量减少25%或40%,则净经济收益分别可以增加101%和19%。

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