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Simulation of spatial and temporal trends in nitrate concentrations at the regional scale in the Upper Dyle basin, Belgium

机译:比利时上戴尔河流域区域尺度硝酸盐浓度的时空趋势模拟

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摘要

Models are the only tools capable of predicting the evolution of groundwater systems at a regional scale in taking into account a large amount of information. This study presents the association of a water balance model (WetSpass) with a groundwater flow and solute transport model (SUFT3D, « Saturated and Unsaturated Flow and Transport in 3D ») in order to simulate the present and future groundwater quality in terms of nitrate in the Upper Dyle basin (439 km², Belgium). The HFEMC (« Hybrid Finite Element Mixing Cell ») method implemented in the SUFT3D code is used to model groundwater flow and nitrate transport. A spatially-distributed recharge modelled with WetSpass is considered for prescribing the recharge to the groundwater flow model. The feasibility of linking WetSpass model with the finite-elements SUFT3D code is demonstrated. Time evolution and distribution of nitrate concentration are then simulated using the calibrated model. Nitrate inputs are spatially-distributed according to land use. The spatial simulations and temporal trends are compared with previously published data on this aquifer and show good results.
机译:考虑到大量信息,模型是唯一能够预测区域范围内地下水系统演化的工具。这项研究提出了水平衡模型(WetSpass)与地下水流动和溶质运移模型(SUFT3D,《 3D的饱和和不饱和流动与运输》)的关联,以模拟当前和未来地下水中硝酸盐的质量。上戴尔盆地(439km²,比利时)。 SUFT3D代码中实现的HFEMC(“混合有限元混合单元”)方法用于对地下水流量和硝酸盐迁移进行建模。考虑使用用WetSpass建模的空间分布补给来规定补给地下水流量模型。证明了将WetSpass模型与有限元SUFT3D代码链接的可行性。然后使用校准模型模拟硝酸盐浓度的时间演变和分布。硝酸盐输入量根据土地用途在空间上分配。将空间模拟和时间趋势与该含水层上先前发布的数据进行了比较,并显示出良好的结果。

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