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A hydro-environmental watershed model improved in canal-aquifer water exchange process

机译:渠—水交换过程中改进的水环境分水岭模型

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Long-term simulation using the distributed hydro-environmental watershed model is efficacious for assessing irrigation impacts on hydrological cycle in detail and for implementing watershed management successfully. In this article, the previously developed hydro-environmental watershed model (HEWM-1) is improved in the water exchange process caused by surface water-groundwater interaction via drainage canals and/or underdrains. The time-varying stream flow in canals is described by the complete one-dimensional shallow water equations in a newly introduced submodel, the open channel flow submodel. This submodel coordinates with the other submodels: the tank, soil moisture and groundwater flow submodels which are interlinked in a cascade manner. The improved model (HEWM-2) is applied to an agricultural watershed covering an area from an alluvial fan onto a nearly level alluvial plain, to be validated. The simulation by HEWM-2 is informative for identifying whether any drainage canal is gaining or losing water in relation to groundwater level. It could thus provide useful information for conserving a complex network of drainage canals which also functions as a passage for aquatic animals like fishes.
机译:使用分布式水环境流域模型进行长期模拟,对于详细评估灌溉对水文循环的影响并成功实施流域管理非常有效。在本文中,先前开发的水环境分水岭模型(HEWM-1)在由地表水与地下水通过排水渠和/或地下渠相互作用引起的水交换过程中得到了改进。运河中随时间变化的水流由新引入的子模型明渠水流子模型中的完整一维浅水方程式描述。该子模型与其他子模型相协调:以级联方式相互关联的储罐,土壤水分和地下水流子模型。改进后的模型(HEWM-2)被应用于农业流域,该流域覆盖了从冲积扇到近水平冲积平原的区域,待验证。 HEWM-2进行的模拟有助于确定排水渠相对于地下水位而言是增水还是失水。因此,它可以为维护复杂的排水渠网络提供有用的信息,该排水渠网络还可以用作鱼类等水生动物的通道。

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