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Saltwater Upconing Due to Cyclic Pumping by Horizontal Wells in Freshwater Lenses

机译:淡水透镜中水平井循环抽水引起的盐水补漏

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摘要

This article deals with the quantification of saltwater upconing below horizontal wells in freshwater lenses using analytical solutions as a computationally fast alternative to numerical simulations. Comparisons between analytical calculations and numerical simulations are presented regarding three aspects: (1) cyclic pumping; (2) dispersion; and (3) finite horizontal wells in a finite domain (a freshwater lens). Various hydrogeological conditions and pumping regimes within a dry half year are considered. The results show that the influence of elastic and phreatic storage (which are not taken into account in the analytical solutions) on the upconing of the interface is minimal. Furthermore, the analytical calculations based on the interface approach compare well with numerical simulations as long as the dimensionless interface upconing is below 1/3, which is in line with previous studies on steady pumping. Superimposing an analytical solution for mixing by dispersion below the well over an analytical solution based on the interface approach is appropriate in case the vertical flow velocity around the interface is nearly constant but should not be used for estimating the salinity of the pumped groundwater. The analytical calculations of interface upconing below a finite horizontal well compare well with the numerical simulations in case the distance between the horizontal well and the initial interface does not vary significantly along the well and in case the natural fluctuation of the freshwater lens is small. In order to maintain a low level of salinity in the well during a dry half year, the dimensionless analytically calculated interface upconing should stay below 0.25.
机译:本文使用解析解决方案作为数值模拟的一种计算快速替代方法,来处理淡水透镜中水平井下方咸水上升流的量化。本文从三个方面对分析计算和数值模拟进行了比较:(1)循环泵; (2)分散; (3)有限域内的有限水平井(淡水晶状体)。考虑了半年内的各种水文地质条件和抽水方式。结果表明,弹性和潜水存储(在分析解决方案中未考虑)对界面更新的影响最小。此外,基于接口方法的分析计算与数值模拟相比,只要无因次接口的上冲量小于1/3即可,这与以前关于稳定泵送的研究一致。如果界面周围的垂直流速几乎恒定,但不应用于估计泵送地下水的盐度,则在基于界面方法的分析溶液上叠加分析分散液以混合井下分散的溶液是合适的。在水平井和初始界面之间的距离沿井不明显变化的情况下,以及在淡水晶状体的自然波动较小的情况下,有限水平井下面的界面向上解析的分析计算与数值模拟可以很好地进行比较。为了在干燥的半年中保持井中盐度的较低水平,无因次分析计算的界面上探应保持在0.25以下。

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  • 来源
    《Ground water》 |2016年第4期|521-531|共11页
  • 作者单位

    Deltares, Dept Soil & Groundwater, POB 85467, NL-3508 AL Utrecht, Netherlands|Wageningen Univ, Dept Soil Phys & Land Management, POB 47, NL-6700 AA Wageningen, Netherlands;

    Wageningen Univ, Dept Soil Phys & Land Management, POB 47, NL-6700 AA Wageningen, Netherlands;

    Wageningen Univ, Dept Soil Phys & Land Management, POB 47, NL-6700 AA Wageningen, Netherlands;

    Deltares, Dept Soil & Groundwater, POB 85467, NL-3508 AL Utrecht, Netherlands|Univ Utrecht, Dept Phys Geog, NL-3584 CS Utrecht, Netherlands;

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