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Analytical and numerical analysis of constant-rate pumping test data considering aquifer boundary effect

机译:考虑含水层边界效应的恒流泵浦测试数据分析与数值分析

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摘要

The constant-rate pumping test (CRT) is commonly used to determine the aquifer properties. In this method, measured drawdown in the pumping well and the monitoring wells are usually matched with type curves developed by various analytical methods. However, numerous assumptions used to develop the analytical solution are not always compatible with the actual site conditions. In this study, drawdown records collected in a pumping well and two monitoring wells located near a river, were analyzed to investigate the boundary effects on the estimated aquifer properties. This site condition violates the assumption that the aquifer is of infinite areal extent. Moreover, time varying water heads during the pumping and recovery tests were simulated numerically to determine the effect of hydraulic gradient, which does not satisfy the assumption of horizontal potentiometric surface used in the analytical solution. Calibrated aquifer properties without the boundary effect showed clear differences, where the transmissivity, anisotropy ratio and specific yield varied by 12%, 34% and 53%, respectively, as compared to the results obtained by including the boundary effect. Numerical simulation conducted by considering a horizontal potentiometric surface as in the analytical model produced an averaged root-mean-squared-error (RMSE) of 0.055 m, which was approximately 57% higher than the RMSE value estimated with the effect of the hydraulic gradient. Therefore, it was concluded that the simplified analytical solutions may lead to misleading estimations of aquifer properties when the pumping test was conducted in an area with complex site conditions.
机译:恒定速率泵送测试(CRT)通常用于确定含水层性质。在该方法中,泵送井和监测孔中的测量缩减通常与各种分析方法开发的类型曲线匹配。然而,用于开发分析解决方案的许多假设并不总是与实际现场条件兼容。在本研究中,分析了在河流附近的泵浦井和两个监测井中收集的绘图记录,以研究对估计含水层性质的边界效应。该网站条件违反了含水层在无限的区域范围内的假设。此外,在数量上模拟泵送和恢复测试期间的时间变化的水头以确定液压梯度的影响,这不满足分析溶液中使用的水平电位表面的假设。校准的含水层特性没有边界效果显示出明显的差异,其中透射率,各向异性比和特定产量分别在通过包括边界效应获得的结果相比,分别变化了12%,34%和53%。通过在分析模型中考虑水平电位表面进行的数值模拟产生了0.055μm的平均根平均分子误差(RMSE),其比液压梯度效果估计的RMSE值高约57%。因此,得出结论是,当在具有复杂位点状况的区域进行泵送试验时,简化的分析溶液可能导致含水层性质的误导性估计。

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