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A quantitative analysis of hydraulic interaction processes in stream-aquifer systems

机译:流-含水层系统中水力相互作用过程的定量分析

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摘要

The hydraulic relationship between the stream and aquifer can be altered from hydraulic connection to disconnection when the pumping rate exceeds the maximum seepage flux of the streambed. This study proposes to quantitatively analyze the physical processes of stream-aquifer systems from connection to disconnection. A free water table equation is adopted to clarify under what conditions a stream starts to separate hydraulically from an aquifer. Both the theoretical analysis and laboratory tests have demonstrated that the hydraulic connectedness of the stream-aquifer system can reach a critical disconnection state when the horizontal hydraulic gradient at the free water surface is equal to zero and the vertical is equal to 1. A boundary-value problem for movement of the critical point of disconnection is established for an analytical solution of the inverted water table movement beneath the stream. The result indicates that the maximum distance or thickness of the inverted water table is equal to the water depth in the stream, and at a steady state of disconnection, the maximum hydraulic gradient at the streambed center is 2. This study helps us to understand the hydraulic phenomena of water flow near streams and accurately assess surface water and groundwater resources.
机译:当抽水速率超过河床的最大渗透通量时,可以将水流与含水层之间的水力关系从水力连接改变为断开。这项研究提出定量分析流-含水层系统从连接到断开的物理过程。采用自由水位方程来阐明在什么条件下溪流开始从含水层中水力分离。理论分析和实验室测试均表明,当自由水面的水平水力梯度等于零且垂直方向等于1时,水流-含水层系统的水力连通性可以达到临界断开状态。建立了断开临界点运动的数值问题,以分析水流下方倒置地下水位运动的解析解。结果表明,倒置水位的最大距离或厚度等于河流中的水深,在断流稳定状态下,河床中心的最大水力梯度为2。溪流附近水流的水力现象,并准确评估地表水和地下水资源。

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