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Water quantity and quality optimization modeling of dams operation based on SWAT in Wenyu River Catchment, China

机译:Water quantity and quality optimization modeling of dams operation based on sWaT in Wenyu River Catchment, China

摘要

Water quantity and quality joint operation is a new mode in the present dams' operation research. It has become a hot topic in governmental efforts toward integrated basin improvement. This paper coupled a water quantity and quality joint operation model (QCmode) and genetic algorithm with Soil and Water Assessment Tool (SWAT). Together, these tools were used to explore a reasonable operation of dams and floodgates at the basin scale. Wenyu River Catchment, a key area in Beijing, was selected as the case study. Results showed that the coupled water quantity and quality model of Wenyu River Catchment more realistically simulates the process of water quantity and quality control by dams and floodgates. This integrated model provides the foundation for research of water quantity and quality optimization on dam operation in Wenyu River Catchment. The results of this modeling also suggest that current water quality of Wenyu River will improve following the implementation of the optimized operation of the main dams and floodgates. By pollution control and water quantity and quality joint operation of dams and floodgates, water quality of Wenyu river will change significantly, and the available water resources will increase by 134%, 32%, 17%, and 82% at the downstream sites of Sha River Reservoir, Lutong Floodgate, Xinpu Floodgate, and Weigou Floodgate, respectively. The water quantity and quality joint operation of dams will play an active role in improving water quality and water use efficiency in Wenyu River Basin. The research will provide the technical support for water pollution control and ecological restoration in Wenyu River Catchment and could be applied to other basins with large number of dams. Its application to the Wenyu River Catchment has a great significance for the sustainable economic development of Beijing City.
机译:水量和水质联合运行是当前大坝运行研究的一种新模式。这已成为政府为改善流域而做出的努力中的热门话题。本文结合水量和水质联合运行模型(QCmode)和遗传算法与土壤和水评估工具(SWAT)。这些工具一起用于在流域范围内探索水坝和水闸的合理运行。以北京重点地区温榆河集水区为案例研究。结果表明,温榆河流域水量水质耦合模型更真实地模拟了水坝和水闸控制水量和水质的过程。该综合模型为温榆河流域大坝运行水量和水质优化研究提供了基础。该模型的结果还表明,随着主要水坝和水闸的优化运行的实施,温榆河当前的水质将得到改善。通过污染控制以及水坝和闸坝的水量和水质联合运行,温榆河的水质将发生显着变化,沙河下游站点的可用水资源将分别增加134%,32%,17%和82%。河水库,鲁通闸,新浦闸和渭沟闸。大坝的水量和水质联合运行将为改善温榆河流域的水质和用水效率发挥积极作用。该研究将为温榆河流域的水污染控制和生态修复提供技术支持,并可应用于其他有大坝的流域。将其应用于温榆河集水区对于北京市的可持续经济发展具有重要意义。

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