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首页> 外文期刊>Journal of Hydrology >The representative stream length for estimating surface water–groundwater exchange using Darcy's Law
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The representative stream length for estimating surface water–groundwater exchange using Darcy's Law

机译:用达西定律估算地表水-地下水交换量的代表性水流长度

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Groundwater discharge to streams is spatially variable. We often estimate this flux based on an averaged measurement of hydraulic gradient and local estimate of hydraulic conductivity. It is important to understand how this estimated flux value relates to the flux into the stream. In this study we introduce the concept of representative stream length. The estimated flux value best represents the groundwater discharge over the representative stream length. We simulated groundwater discharge to a stream using synthetic stochastic hydraulic conductivity fields to investigate the impact of heterogeneity (variance and correlation length) on the estimated groundwater discharge and the representative stream length of this discharge. To obtain estimates of hydraulic conductivity between the stream and piezometer, the groundwater head response to a known change in stream stage was simulated and analyzed using a well-known analytical solution. The results of the theoretical investigation showed that the representative stream length of the groundwater discharge estimate was approximately equal to the distance of the piezometer from the stream, that is, groundwater discharge estimated using Darcy's law from a piezometer 50 m from a stream will approximately represent the discharge occurring over a 50 m length of the stream. Furthermore, the results suggest that the variability in the estimated groundwater discharge significantly reduced when the distance of the piezometer from the stream increased. A field experiment was conducted using two controlled stream-stage change tests and found that results were consistent with the theoretical experiment. That is, as the distance of the piezometer from the stream increased, the variability in discharge estimates reduced. The implication of this finding is that future studies estimating groundwater discharge to streams applying Darcy's law need to consider the representative stream length, as this will impact the spatial scale over which the discharge estimate can be applied.
机译:地下水向河流的排放在空间上是可变的。我们通常根据水力梯度的平均测量值和水力传导率的局部估计值来估算此流量。重要的是要了解此估计的通量值与流入气流的通量之间的关系。在这项研究中,我们介绍了代表流长度的概念。估算的通量值最能代表代表流长度内的地下水排放量。我们使用合成的随机水力传导率场模拟了地下水的流向,以研究非均质性(方差和相关长度)对估算的地下水流和该流的代表流长度的影响。为了获得水流和测压计之间的水力传导率的估算值,使用众所周知的分析解决方案模拟并分析了地下水水头对水位变化的响应。理论研究的结果表明,地下水排放量估算值的代表河段长度近似等于压力计与河流之间的距离,也就是说,使用达西定律从压力计中估算的地下水流量约为50 m。在流长50 m处发生排放。此外,结果表明,当测压仪与水流之间的距离增加时,估计的地下水排放量的可变性将大大降低。使用两个受控的流阶段变化测试进行了现场实验,发现结果与理论实验一致。即,随着压强计与流的距离的增加,排放估计的可变性减小。这一发现的含义是,未来应用达西定律估算河水地下水流量的研究需要考虑代表性的河水长度,因为这将影响可应用流量估算的空间尺度。

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