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首页> 外文期刊>Hydrogeology Journal >Characterization of a karstic aquifer using magnetic resonance sounding and electrical resistivity tomography: a case-study of Estaña Lakes (northern Spain)
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Characterization of a karstic aquifer using magnetic resonance sounding and electrical resistivity tomography: a case-study of Estaña Lakes (northern Spain)

机译:利用磁共振测深和电阻率层析成像法对岩溶含水层进行表征:EstañaLakes(西班牙北部)的案例研究

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摘要

The geophysical characterization of a previously unstudied endorheic karstic system is presented. The studied area, known as the Estaña Lakes, is located in the Pyrenean Marginal Sierras, northern Spain. The Estaña Lakes are a set of natural water ponds on a bedrock of Triassic evaporites, lutites and carbonates. This wetland is included in the Natura 2000 European network of nature protection areas as a “Site of Community Importance”. Two geophysical techniques were used, magnetic resonance sounding (MRS) and electrical resistivity tomography (ERT), to map the subsurface geology and characterize the aquifer layers and the hydraulic links between the aquifers and lakes. The geophysical data were integrated with the surface geology and data from six boreholes. Ten electrical profiles were performed to identify the thickness of the units and lithological changes, whereas the MRS was used to determine the top of the saturated zone. As result, the aquifer in the Estaña Lakes system and surrounding area has been identified as Middle Triassic carbonates, which does not correspond with the regional aquifer in the area (Upper Cretaceous and Eocene). This work shows the power of geophysical methods in poorly understood and tectonically complex areas in addition to the standard aquifer tests to evaluate hydraulic properties.
机译:介绍了以前未研究的溶洞岩溶岩溶体系的地球物理特征。被研究的地区称为Estaña湖,位于西班牙北部的比利牛斯山脉边缘山脉。 Estaña湖是在三叠纪蒸发岩,褐铁矿和碳酸盐岩基岩上的一组天然水塘。该湿地被列入2000年自然保护区欧洲网络的“社区重要站点”。使用了两种地球物理技术,即磁共振测深(MRS)和电阻率层析成像(ERT),以绘制地下地质图并表征含水层和含水层与湖泊之间的水力联系。地球物理数据与地表地质和来自六个钻孔的数据集成在一起。进行了十次电剖面分析,以确定单元的厚度和岩性变化,而MRS用于确定饱和带的顶部。结果,已将EstañaLakes系统及周边地区的含水层确定为中三叠世碳酸盐岩,这与该地区(上白垩统和始新世)的区域含水层不符。除标准的含水层测试以评估水力特性外,这项工作还显示了在人们了解不多且构造复杂的地区中使用地球物理方法的能力。

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