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The influence of stream bed hydraulic conductivity on sustaining baseflow in rivers

机译:河床水力传导率对河流维持基流的影响

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This study presents the results of the influence of stream bed hydraulic conductivity on baseflow sustainability by using a coupled model of surface and subsurface hydrology. The model provides a coupled solution to the dynamic interactions between a river and a surfacial aquifer and is used to numerically study the effect of stream bed conductivity on the overall system response. To achieve this objective, the model is formulated to include a one-dimensional river flow model and a two-dimensional vertically averaged groundwater flow model in an unconfined aquifer. The coupling is achieved at the river bed via a hydraulic flux that is described as a function of river bed conductivity and the gradient between river stage and groundwater head. The model incorporates the concept of simultaneous presence of the two hydrologic processes for simulating the dynamic interactions and uses a novel numerical technique to solve the two systems concurrently. These interactions are analyzed by numerical experimentation under different hydraulic conductivity conditions. The influence of hydraulic conductivity and hydraulic gradient is studied under steady and unsteady flow regimes to assess the occurrence of baseflow. The analysis also reveals critical insights into the governing mechanisms that provide and sustain the baseflow in rivers.
机译:这项研究通过使用地表和地下水文学的耦合模型,提出了河床水力传导率对基流可持续性的影响的结果。该模型为河流和地表含水层之间的动力相互作用提供了一种耦合解决方案,并用于数值研究流化床电导率对整个系统响应的影响。为了达到这个目的,该模型被公式化为包括一个无限制含水层中的一维河水模型和二维垂直平均地下水流模型。通过水力通量在河床实现耦合,该通量被描述为河床电导率和河段与地下水位之间的梯度的函数。该模型结合了两个水文过程同时存在的概念来模拟动态相互作用,并使用一种新颖的数值技术来同时求解两个系统。在不同的水力传导率条件下,通过数值实验分析了这些相互作用。在稳态和非稳态流态下研究了水力传导率和水力梯度的影响,以评估基流的发生。该分析还揭示了对提供和维持河流底流的治理机制的重要见解。

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