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首页> 外文期刊>Hydrogeology journal >The dependence of stream depletion by seasonal pumping on various hydraulic characteristics and engineering factors
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The dependence of stream depletion by seasonal pumping on various hydraulic characteristics and engineering factors

机译:季节性抽水对流的耗竭与各种水力特性和工程因素的关系

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Compensation pumping is used to alleviate deficiencies in streamflow discharge during dry seasons. Short-term groundwater pumping can use aquifer storage instead of catchment-zone water until the drawdown reaches the edge of the stream. The capacitance is a complex, dimensionless parameter of an aquifer system that defines the delayed effect on streamflow when there is groundwater pumping. This parameter is a function of aquifer hydraulic characteristics, pumping time, and distance between the well and stream edge; the latter can involve stream leakance and vertical leakance of an associated aquitard. Three typical hydraulic cases of combined water systems (major catchment-zone wells close to the stream and compensation pumping wells) were classified depending on their capacitance structure (i.e. the relationship between surface water and groundwater): (1) perfect hydraulic connection between the stream and aquifer; (2) imperfect hydraulic connection between the stream and aquifer; and (3) essentially imperfect hydraulic connection between the stream and the underlying confined aquifer. The impact of various hydraulic characteristics and engineering factors on stream depletion was examined by conceptual and numerical modeling. To predict the suitability and efficiency of a combined water system application, regression tests were undertaken on unit stream depletion and capacitance, and power dependencies were defined.
机译:补偿泵用于减轻干旱季节的水流排放不足。短期抽水可以使用蓄水层来代替集水区水,直到水位下降到河流边缘为止。电容是含水层系统的一个复杂的,无量纲的参数,它定义了抽取地下水时对水流的延迟影响。该参数是含水层水力特性,抽水时间以及井与流边缘之间的距离的函数。后者可能涉及到相关的海葵的水流泄漏和垂直泄漏。结合水系统的三种典型水力情况(靠近河流的主要集水区井和补偿抽水井)根据其电容结构(即地表水和地下水之间的关系)进行分类:(1)溪流之间的完美水力连接和含水层; (2)溪流与含水层之间的液压连接不完善; (3)溪流和下面的承压含水层之间的水力连接基本上不完善。通过概念模型和数值模型研究了各种水力特性和工程因素对流耗的影响。为了预测组合水系统应用的适用性和效率,对单位水流消耗和电容进行了回归测试,并定义了功率相关性。

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