长井筛管对淡水-咸水过渡区监测的影响

IF 2 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Groundwater Pub Date : 2025-01-24 DOI:10.1111/gwat.13465
Frédérik Croteau, Cécile Coulon, John Molson, Jean-Michel Lemieux
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引用次数: 0

摘要

在沿海地区经常使用跨越淡水和咸水过渡带的长屏深监测井来表征淡水地下水资源和咸水地下水的深度。然而,过去的研究表明,长筛管井可能导致对过渡区的观测偏差,因为与没有井的情况相比,井内的垂直流动可以改变井内和井周围过渡区的形状和高度。本文通过现场观测和变密度数值流动模拟来评估在自然流动条件下,长筛井的安装如何提供淡水-咸水过渡区随时间变化的偏差观测,以及不同含水层和井参数如何影响这些偏差的大小。结果表明,长筛井可使界面更加分散,过渡区位移向上移动5 ~ 10 m,井中盐水部分矿化度降低10 ~ 15 g/L。这些扰动需要长达5年的时间才能完全发展和稳定下来。驱替程度取决于筛管直径、筛管长度、含水层各向异性和水力导电性,而驱替程度与井距海岸的距离无关。该分析提供了在长筛管井中,哪些井和含水层特征增加了获得偏差观测的风险,并提供了这些偏差的数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Impact of Long Well Screens on Monitoring of the Freshwater-Saltwater Transition Zone

Impact of Long Well Screens on Monitoring of the Freshwater-Saltwater Transition Zone

Deep monitoring wells with long screens crossing the transition zone between freshwater and saltwater are often used in coastal areas to characterize fresh groundwater resources and the depth of saline groundwater. However, past studies have demonstrated that long-screen wells can lead to biased observations of the transition zone, since vertical flow within the borehole can modify the shape and elevation of the transition zone in and around the borehole compared to undisturbed conditions without a well. Here, field observations and variable-density numerical flow simulations are used to evaluate, under natural flow conditions, how the installation of long-screen wells can provide time-varying biased observations of the freshwater-saltwater transition zone, and how various aquifer and well parameters affect the magnitude of these biases. Results show that long-screen wells can lead to a more dispersed interface, an upward displacement of the transition zone of between 5 and 10 m, and a salinity decrease in the saltwater portion of the well on the order of 10 to 15 g/L. The perturbations take up to 5 years to fully develop and stabilize. The degree of displacement depends on the screen diameter, screen length, aquifer anisotropy, and hydraulic conductivity, whereas the displacement is independent of the distance of the well from the coast. This analysis provides insight into which well and aquifer characteristics increase the risk of obtaining biased observations in long-screen wells, and provides orders of magnitude for these biases.

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来源期刊
Groundwater
Groundwater 环境科学-地球科学综合
CiteScore
4.80
自引率
3.80%
发文量
0
审稿时长
12-24 weeks
期刊介绍: Ground Water is the leading international journal focused exclusively on ground water. Since 1963, Ground Water has published a dynamic mix of papers on topics related to ground water including ground water flow and well hydraulics, hydrogeochemistry and contaminant hydrogeology, application of geophysics, groundwater management and policy, and history of ground water hydrology. This is the journal you can count on to bring you the practical applications in ground water hydrology.
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