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Coupling hydrology, geochemistry and hydrodynamics towards rational management of discontinuous aquifers: application to the Ursuya massif (Basque Country, France)

机译:耦合水文,地球化学和流体动力学对不连续含水层的合理管理:在Ursuya Massif(巴斯克乡,法国)的应用

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The metamorphic massif of Ursuya (French Basque Country) is a strategic aquifer for the water supply of southwestern France. A multidisciplinary approach, conducted between 2009 and 2013, has led to understanding of the behaviour of this system made of discontinuous media. Isotopic and geochemical characteristics of rainwater were studied together with groundwater geochemistry, to delineate the water-rock interactions along the underground flowpaths. The chemical characteristics of groundwater, the residence times (less than 10 years to more than 50 years) and the associated mixing processes allow the achievement of a conceptual model of the groundwater flow. It highlights the role of the weathering profile from the point of view of mineralization as well as flowpaths. Finally, a quantitative approach shows highly heterogeneous hydrodynamic properties related to the weathering profile development. These results are synthesized and validated by a numerical model which forms the basis for rational management of the Ursuya aquifer in a region subject to a constant increase in water needs.
机译:Ursuya(法国巴斯克国家)的变质之泥是法国西南部供水的战略含水层。在2009年至2013年之间进行的多学科方法导致了解该系统的不连续媒体的行为。与地下水地球化学一起研究了雨水的同位素和地球化学特征,以沿地下流动路径描绘水岩相互作用。地下水的化学特性,停留时间(不到10年至50年)和相关的混合过程允许实现地下水流动的概念模型。它突出了风化轮廓从矿化的角度以及流动路径的角度。最后,定量方法显示了与风化轮廓显影有关的高度异质的流体动力学性质。这些结果由一个数字模型合成和验证,这些模型构成了在可能持续增加水需求的地区的Ursuya含水层的合理管理的基础。

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