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Simulation modeling for water governance in basins based on surface water and groundwater

机译:基于地表水和地下水的流域水治理模拟模型

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Accelerating future water shortages in the world require a development of operational water, governance models as illustrated by the case studies. Conversion process and its coupling simulation of surface water and groundwater are the foundation of water resources development, utilization, and scientific evaluation. In order to simulate the impact of climate change on the water cycle in basins, the quasi-distributed watershed Surface Water (SW) model was coupled with the fully-distributed Ground Water (GW) model in the simulation. The Hydrologic Response Units (HRU) in the SW model were exchanged with cells in the GW model. By using the HRU-CELL conversion interface, the distributed groundwater recharge rate (RCH) and the groundwater evapotranspiration (EVT) calculated by the SW model were imported into the RCH and EVT modules of the GW model. The application of groundwater simulation in the Heihe River basin demonstrated that the correlation coefficient between the simulation results and the measured values was 0.89, the deterministic coefficient of the simulation results was 0.86. Under future predictions the discharge from the Heihe River will decrease in the first 20 years (2020-2039). In the later 20 years (2040-2059) the discharge will increase. The simulation groundwater along with the recharge value showed the same change trend of the measured groundwater level. The coupled SW-GW model was capable of predicting the future water cycle. (C) 2016 Elsevier B.V. All rights reserved.
机译:如案例研究所示,世界范围内日益严重的未来水资源短缺需要开发运营用水,治理模型。地表水与地下水的转化过程及其耦合模拟是水资源开发,利用和科学评价的基础。为了模拟气候变化对流域水循环的影响,在模拟中将准分布的流域地表水(SW)模型与完全分布的地下水(GW)模型相结合。 SW模型中的水文响应单位(HRU)与GW模型中的单元交换了。通过使用HRU-CELL转换接口,将SW模型计算的分布式地下水补给率(RCH)和地下水蒸发蒸腾量(EVT)导入到GW模型的RCH和EVT模块中。黑河流域地下水模拟的应用表明,模拟结果与实测值的相关系数为0.89,确定性系数为0.86。根据未来的预测,黑河的排放量将在头20年(2020-2039年)减少。在随后的20年中(2040-2059),排放量将增加。模拟地下水和补给值显示出与所测地下水位相同的变化趋势。耦合的SW-GW模型能够预测未来的水循环。 (C)2016 Elsevier B.V.保留所有权利。

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