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Integrated Simulation-Optimization Framework for Water Allocation Based on Sustainability of Surface Water and Groundwater Resources

机译:基于地表水和地下水资源可持续性的水分配综合仿真优化框架

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The aim of this study is to develop a framework for the optimal conjunctive use of surface and groundwater in a case study of the Zayandehrud river basin in Iran. The basis of the framework is an integrated simulation-optimization model that can be used to optimize a number of decisions, including (1) the operation of a reservoir, (2) allocations of water to irrigation canals, and (3) withdrawals from the river and groundwater sources. A water evaluation and planning system (WEAP) model is coupled with the nondominated sorting genetic algorithm II (NSGA-II) optimization algorithm to optimize the following two criteria: (1) a fuzzy sustainability criterion, and (2) the normalized shortfall of supply compared to demand. Each point on the generated Pareto front corresponds to a set of releases from the reservoir and allocations from surface and groundwater resources to the various agricultural regions. A compromise solution is selected from the Pareto front using an established method. The total sustainability of the compromise solution is 26% higher than that obtained previously by using the simulation model alone. It also represents an increase in the sustainability of the reservoir by 37% and the sustainability of the aquifers by 16%.
机译:本研究的目的是制定一个框架,以便在伊朗Zayandehrud河流域的案例研究中实现表面和地下水的最佳联合使用。框架的基础是一个集成的仿真优化模型,可用于优化许多决策,包括(1)储层的操作,(2)水分配到灌溉运河,(3)从中取出河流和地下水来源。水评估和规划系统(WEAP)模型与NondoMinated分类遗传算法II(NSGA-II)优化算法耦合,以优化以下两个标准:(1)模糊可持续性标准,以及(2)供应的标准化不足与需求相比。所生成的帕累托前部上的每个点对应于从储存器和从地面和地下水资源分配到各种农业区域的一组释放。使用已建立的方法从Pareto正面选中折衷溶液。折衷溶液的总可持续性比单独使用仿真模型获得的预先高出26%。它还代表储层可持续性的增加37%,含水层的可持续性将增加16%。

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