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Study on Sustainable Utilization Coupled Management Model for Water Resources in an Arid Irrigation District (China)

机译:干旱灌区水资源可持续利用耦合管理模型研究(中国)

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The quantity of available water resources have been recognized as limiting factors in development of most of the arid regions. Therefore, sustainable use of water resources is key problem for development of these areas. In the present paper, Hetao irrigation district, one of the largest irrigation districts in the Yellow River basin, is selected as the research area. The sustainable utilization coupled management model for water resources is established by dynamically coupling numerical simulated model for ground water with optimal allocation model. In the coupled model, the groundwater level is adopted as the constraint condition and the optimal conjunctive utilization quantity of surface water and groundwater is set as the objective function. Finally, the coupled model is applied to calculate the optimal water supply quantity of surface water and groundwater and optimal sustainable utilization scheme of water resources in 2020 and 2030 of Hetao irrigation district. The results indicate that the water imported from the Yellow River can be reduced to the national limited amount of 4.0 7; 109 m3/a, with adjusting well-canal irrigated area and industry structure appropriately as well as using the ground water reasonably. The research result can offer a valuable reference to efficiently use water resources and prevent the salinization for other similar regions.
机译:可用水资源的数量已被认为是大多数干旱地区发展的限制因素。因此,水资源的可持续利用是这些地区发展的关键问题。本文以黄河流域最大的灌区之一的河套灌区为研究区域。通过将地下水数值模拟模型与最优分配模型动态耦合,建立了水资源可持续利用耦合管理模型。在耦合模型中,以地下水位为约束条件,以地表水和地下水的最佳联合利用量为目标函数。最后,运用耦合模型计算河套灌区2020年和2030年地表水和地下水的最优供水量和水资源的可持续利用最优方案。结果表明,从黄河进口的水可以减少到全国限量4.0。 7; 109立方米/年,适当调整运河的灌溉面积和产业结构,以及合理使用地下水。研究结果可为有效利用水资源,防止盐碱化提供参考。

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