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Improved water resource management for a highly complex environment using three-dimensional groundwater modelling

机译:利用三维地下水建模改善了对高度复杂环境的水资源管理

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A three-dimensional groundwater model was used to improve water resource management for a study area in north-west Switzerland, where drinking-water production is close to former landfills and industrial areas. To avoid drinking-water contamination, artificial groundwater recharge with surface water is used to create a hydraulic barrier between the contaminated sites and drinking-water extraction wells. The model was used for simulating existing and proposed water management strategies as a tool to ensure the utmost security for drinking water. A systematic evaluation of the flow direction between existing observation points using a developed three-point estimation method for a large number of scenarios was carried out. It is demonstrated that systematically applying the developed methodology helps to identify vulnerable locations which are sensitive to changing boundary conditions such as those arising from changes to artificial groundwater recharge rates. At these locations, additional investigations and protection are required. The presented integrated approach, using the groundwater flow direction between observation points, can be easily transferred to a variety of hydrological settings to systematically evaluate groundwater modelling scenarios.
机译:三维地下水模型用于改善瑞士西北地区研究区的水资源管理,饮水生产靠近前垃圾填埋场和工业区。为避免饮用水污染,用地表水的人造地下水补给用于在污染的部位和饮用水萃取井之间产生液压屏障。该模型用于模拟现有和建议的水管理策略作为一种工具,以确保饮用水最大的安全性。进行了使用开发的三点估计方法对大量方案的现有观察点之间的流动方向的系统评价。据证明,系统地应用开发方法有助于识别对改变边界条件敏感的脆弱地点,例如由人造地下水补给率的变化产生的那些。在这些地点,需要额外的调查和保护。所提出的综合方法,使用观察点之间的地下水流向,可以容易地转移到各种水文环境中,以系统地评估地下水建模情景。

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