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首页> 外文期刊>Aquatic Sciences >Analysis of aquifer heterogeneity within a well capture zone, comparison of model data with field experiments: A case study from the river Wiese, Switzerland
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Analysis of aquifer heterogeneity within a well capture zone, comparison of model data with field experiments: A case study from the river Wiese, Switzerland

机译:分析井捕获区内含水层的非均质性,将模型数据与现场实验进行比较:以瑞士维斯河为例

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This paper describes two groundwater models simulating a well capture zone in a heterogeneous aquifer located near an infiltrating river. A deterministic, large-scaled groundwater model (1.8 x 1.2 km) is used to simulate the average behavior of groundwater flow and ad-vective transport. It is also used to assign the boundary conditions for a small-scaled groundwater model (550 x 400 m) which relies on stochastically generated aquifer properties based on site-specific drill core and georadar data. The small-scaled groundwater model is used to include the large subsurface heterogeneity at the location of interest. The stochastic approach in the small-scaled groundwater model does not lead to a clearly defined well capture zone, but to a plane representation of the probability of a certain surface location belonging to the well capture zone. The models were applied to a study site, which is located in an area of artificial groundwater recharge and production, in Lange Erlen near Basel, Northwestern Switzerland. The groundwater at this site contributes to the city's drinking water supply, and the site serves as a recreational area to the population of Basel. The river is channelized, but there are initiatives to restore the riverbank to more natural conditions. However, they conflict with the requirements of groundwater protection, especially during flood events. Therefore, a river section of 600 m in the vicinity of an unused and disconnected drinking water well was restored to study changes in the groundwater flow regime depending on hydrologic variations, water supply operation data, progress of river restoration, and subsurface heterogeneity. The results of the groundwater models are compared with data from two tracer experiments using Uranine and the natural Radon isotope Rn-222, and with physical, chemical, and microbiological data sampled in monitoring wells between the river and the drinking water well. The ground-water models document significant variations regarding the dimension of the well capture zone depending on changing boundary conditions and the variability of the hydraulic aquifer properties. The knowledge of the subsurface heterogeneity is important to evaluate transport times and distances of microorganisms from the infiltrating river or the riverbank to the drinking water well. The data from the monitoring wells show that chemical and microbiological processes predominantly occur in the hyporheic interstitial zone and the riverbank within a range of a few meters up to a few 10s of meters from the river. The methods presented here can be used to define and evaluate groundwater protection zones in heterogeneous aquifers associated with infiltration from rivers under changing boundary conditions, and under the uncertainty of subsurface heterogeneity. Furthermore, they allow one to study the site-specific operational alternatives associated with river restoration.
机译:本文介绍了两种地下水模型,它们模拟了一条渗水河附近的非均质含水层中的一个井捕获区。确定性的大型地下水模型(1.8 x 1.2 km)用于模拟地下水流量和平流运输的平均行为。它也可用于分配小规模地下水模型(550 x 400 m)的边界条件,该模型依赖于基于特定地点的钻芯和地雷达数据的随机生成的含水层特性。小规模的地下水模型用于在目标位置包括较大的地下异质性。小规模地下水模型中的随机方法不会导致明确定义井捕获区域,而是导致平面表示某个表面位置属于井捕获区域的概率。这些模型已应用于位于瑞士西北巴塞尔附近的Lange Erlen的人工地下水补给和生产区域的研究地点。该地点的地下水有助于城市的饮用水供应,而该地点是巴塞尔居民的休闲区。这条河是通道化的,但是有一些举措可以使河岸恢复到更自然的条件。但是,它们与地下水保护的要求相抵触,尤其是在洪水事件期间。因此,在未使用和断开连接的饮用水井附近恢复了一条600 m的河段,以研究地下水流态的变化,这取决于水文变化,供水运营数据,河流恢复的进展以及地下非均质性。将地下水模型的结果与使用尿素和天然Rad同位素Rn-222进行的两次示踪实验数据以及在监测河流和饮用水井之间的水井中采样的物理,化学和微生物数据进行了比较。地下水模型根据边界条件的变化和水力含水层性质的变化,记录了有关井口捕获区尺寸的重大变化。地下异质性的知识对于评估微生物从渗透河或河岸到饮用水井的运输时间和距离很重要。监测井的数据表明,化学和微生物过程主要发生在流变间隙区和河岸,距离河只有几米到几十米。在边界条件不断变化以及地下非均质性不确定的情况下,此处介绍的方法可用于定义和评估与河流入渗有关的非均质含水层中的地下水保护区。此外,他们还允许人们研究与河流修复相关的特定地点的运营方案。

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