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A game theoretic approach for interbasin water resources allocation considering the water quality issues

机译:考虑水质问题的跨流域水资源分配的博弈论方法

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摘要

In this paper, a new game theoretic methodology is developed for interbasin water transfer management with regard to economic, equity, and environmental criteria. The main objective is to supply the competing users in a fair way, while the efficiency and environmental sus-tainability criteria are satisfied and the utilities of water users are incorporated. Firstly, an optimization model is developed to proportionally allocate water to the competing users in water donor and receiving basins based on their water demands. Secondly, for different coalitions of water users, the water shares of the coalitions are determined using an optimization model with economic objectives regarding the physical and environmental constraints of the system. In order to satisfy water-quality requirements, the impacts of decreasing the instream flow in donor basin are estimated using a water-quality simulation model, and the required treatment levels for effluents discharged into the river, downstream of the water transfer point are determined. Finally, to achieve equityrnand to provide sufficient incentives for water users to participate in the cooperation, some cooperative game theoretic approaches are utilized for reallocation of net benefits to water users. This model is applied to a large-scale interbasin water allocation problem including two different basins struggling with water scarcity in Iran. The results show that this model can be utilized as an effective tool for optimal interbasin water allocation management involving stakeholders with conflicting objectives subject to physical and environmental constraints.
机译:本文针对经济,公平和环境标准,为流域间的调水管理开发了一种新的博弈论方法。主要目标是公平地为竞争用户提供水,同时满足效率和环境可持续性标准,并纳入用水用户的效用。首先,建立了一个优化模型,根据给水者和接受者的用水需求,按比例向他们分配水。其次,对于用水户的不同联盟,使用具有经济目标的优化模型来确定联盟的水份额,该经济目标涉及系统的物理和环境约束。为了满足水质要求,使用水质模拟模型估算了施主流域内流入流量减少的影响,并确定了水转移点下游排入河中的污水的要求处理水平。最后,为了实现公平并为水用户参与合作提供足够的激励,一些合作博弈理论方法被用于将净收益重新分配给水用户。该模型适用于大规模的跨流域水资源分配问题,其中包括两个在伊朗因缺水而苦苦挣扎的流域。结果表明,该模型可作为有效的工具来优化跨流域水分配管理,涉及利益相关者受到物理和环境约束的利益相关者。

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