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首页> 外文期刊>Geophysical Prospecting >Detection of preferential infiltration pathways in sinkholes using joint inversion of self-potential and EM-34 conductivity data
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Detection of preferential infiltration pathways in sinkholes using joint inversion of self-potential and EM-34 conductivity data

机译:利用自电势和EM-34电导率数据的联合反演检测下沉孔中的优先渗透途径

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The percolation of water in the ground is responsible for measurable electric potentials called self-potentials. These potentials are influenced by the distribution of the electrical conductivity of the ground. Because sinkholes are associated both with self-potential and electrical conductivity anomalies, a joint inversion of EM-34 conductivity and self-potential data is proposed as a way of delineating the location of these features. Self-potential and EM conductivity data were obtained at a test site in Normandy (France) where sinkholes and crypto-sinkholes are present over a karstic area in a chalk substratum overlain by clay-with-flint and loess covers. The presence of sinkholes and crypto-sinkholes is associated with negative self-potential anomalies with respect to a reference electrode located outside the area where the sinkholes are clustered. The sinkholes also have a conductivity signature identified by the EM-34 conductivity data. We used the simulated-annealing method, which is a global optimization technique, to invert jointly EM-34 conductivity and self-potential data. Self-potential and electrical conductivity provide clear complementary information to determine the interface between the loess and clay-with-flint formations. The sinkholes and crypto-sinkholes are marked by depressions in this interface, focusing the groundwater flow towards the aquifer contained in the chalk substratum.
机译:地下的水渗透是造成可测量电位(称为自电位)的原因。这些电势受地面电导率分布的影响。由于下陷与自电势和电导率异常都相关,因此提出了EM-34电导率和自电势数据的联合反演,作为描绘这些特征位置的一种方式。自电势和EM电导率数据是在法国诺曼底的一个测试点获得的,那里的白垩岩层中的一个岩溶区上覆盖着火石粘土和黄土覆盖层,在该岩溶区中存在下陷孔和隐性下陷孔。相对于位于沉孔聚集区域之外的参比电极而言,沉孔和隐窝的存在与负自电势异常有关。污水坑还具有由EM-34电导率数据识别的电导率特征。我们使用模拟退火方法(这是一种全局优化技术)来共同反转EM-34电导率和自电位数据。自电位和电导率提供了明确的补充信息,以确定黄土和带火石的粘土地层之间的界面。在该界面上的凹陷处标志着下沉孔和隐性下沉孔,使地下水流向白垩层中所包含的含水层集中。

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