首页> 外文期刊>Journal of Hydrology >Improved predictions of saturated and unsaturated zone drawdowns in a heterogeneous unconfined aquifer via transient hydraulic tomography: Laboratory sandbox experiments
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Improved predictions of saturated and unsaturated zone drawdowns in a heterogeneous unconfined aquifer via transient hydraulic tomography: Laboratory sandbox experiments

机译:通过瞬态水力层析成像技术改进对非均质非承压含水层中饱和和不饱和带降落量的预测:实验室沙箱实验

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Interpretation of pumping tests in unconfined aquifers has largely been based on analytical solutions that disregard aquifer heterogeneity. In this study, we investigate whether the prediction of drawdown responses in a heterogeneous unconfined aquifer and the unsaturated zone above it with a variably saturated groundwater flow model can be improved by including information on hydraulic conductivity (K) and specific storage (S _s) from transient hydraulic tomography (THT). We also investigate whether these predictions are affected by the use of unsaturated flow parameters estimated through laboratory hanging column experiments or calibration of in situ drainage curves. To investigate these issues, we designed and conducted laboratory sandbox experiments to characterize the saturated and unsaturated properties of a heterogeneous unconfined aquifer. Specifically, we conducted pumping tests under fully saturated conditions and interpreted the drawdown responses by treating the medium to be either homogeneous or heterogeneous. We then conducted another pumping test and allowed the water table to drop, similar to a pumping test in an unconfined aquifer. Simulations conducted using a variably saturated flow model revealed: (1) homogeneous parameters in the saturated and unsaturated zones have a difficult time predicting the responses of the heterogeneous unconfined aquifer; (2) heterogeneous saturated hydraulic parameter distributions obtained via THT yielded significantly improved drawdown predictions in the saturated zone of the unconfined aquifer; and (3) considering heterogeneity of unsaturated zone parameters produced a minor improvement in predictions in the unsaturated zone, but not the saturated zone. These results seem to support the finding by Mao et al. (2011) that spatial variability in the unsaturated zone plays a minor role in the formation of the S-shape drawdown-time curve observed during pumping in an unconfined aquifer.
机译:对无限制含水层中抽水试验的解释主要基于忽略含水层非均质性的分析解决方案。在这项研究中,我们调查是否可以通过包括以下方面的水力传导率(K)和特定储量(S _s)的信息来改进对非均质非承压含水层及其上方的非饱和带的地下水位响应以及可变饱和地下水流模型的预测。短暂性液压层析成像(THT)。我们还调查了这些预测是否受到实验室悬挂柱实验或现场排水曲线校准估算的非饱和流量参数的影响。为了调查这些问题,我们设计并进行了实验室沙盒实验,以表征非均质非承压含水层的饱和和不饱和特性。具体而言,我们在完全饱和的条件下进行了抽水测试,并通过将介质处理为均匀或非均匀介质来解释沉降响应。然后,我们进行了另一次抽水测试,并允许地下水位下降,这类似于在无限制含水层中进行抽水测试。使用可变饱和流模型进行的模拟显示:(1)饱和区和非饱和区中的均质参数很难预测非均质非承压含水层的响应; (2)通过THT获得的非均质饱和水力参数分布在未承压含水层的饱和带中显着改善了垂降预测; (3)考虑到非饱和区参数的非均质性,对非饱和区的预测略有改善,但对饱和区却没有。这些结果似乎支持毛等人的发现。 (2011年),在无限制含水层抽水过程中观察到的S形回落时间曲线的形成中,非饱和区的空间变化起着较小的作用。

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