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首页> 外文期刊>Journal of Hydrology: Regional Studies >Hydraulic characterization and identification of flow-bearing structures based on multi-scale investigations applied to the Lez karst aquifer
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Hydraulic characterization and identification of flow-bearing structures based on multi-scale investigations applied to the Lez karst aquifer

机译:基于Lez岩溶含水层的多尺度研究的承流结构的水力表征和识别

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摘要

Study RegionThe Lez aquifer is a Mediterranean karst system located in southern France, which supplies groundwater to the Montpellier urban area.Study FocusMulti-scale hydrodynamic investigations were carried out in a fractured and karstic aquifer in order to identify the flow-bearing structures and evaluate their hydraulic properties. The study is based on an extensive dataset developed from several hydraulic tests, performed at different spatial and temporal scales. The scales ranged spatially from a few meters to more than 15?km and temporally from a few minutes to a few months.New Hydrological Insights for the RegionThe data analysis shows that the hydraulic connectivity at both local and regional scales is mainly due to sub-horizontal flow-bearing structures, in which a conduit network has developed. This structure appears mainly to be located at the interface between two stratigraphic units, at the transition between Jurassic and Cretaceous limestones (Kimmeridgian-Berriasian interface). At the regional scale, this flow-bearing structure plays a major role in large-scale connectivity since a compartmentalization of the Lez aquifer appears where the continuity of this structure disappears. The hydraulic properties estimated appear to be strongly dependent on the investigated geological structures and on the different hydrogeological methods used for the borehole, local and regional scale of investigations.
机译:研究区Lez含水层是位于法国南部的地中海岩溶系统,为蒙彼利埃市区提供地下水。研究重点在裂缝和岩溶含水层中进行了多尺度水动力研究,以识别承流结构并对其进行评估液压性能。这项研究基于在不同时空尺度上进行的几次水力试验所建立的广泛数据集。规模在空间上从几米到超过15公里,在时间上从几分钟到几个月不等。该地区的新水文见解数据分析表明,地方和区域规模的水力连通性主要是由于亚水平承流结构,其中已开发出管道网络。这种结构似乎主要位于两个地层单元之间的界面处,在侏罗纪和白垩纪石灰岩之间的过渡处(Kimmeridgian-Berriasian界面)。在区域范围内,这种承流结构在大规模连通性中起着重要作用,因为Lez含水层的分隔出现在该结构的连续性消失的地方。估计的水力特性似乎在很大程度上取决于所研究的地质结构以及用于钻孔,局部和区域规模研究的不同水文地质方法。

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