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首页> 外文期刊>Pure and Applied Geophysics >Potential of Electrical Resistivity Tomography to Detect Fault Zones in Limestone and Argillaceous Formations in the Experimental Platform of Tournemire, France
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Potential of Electrical Resistivity Tomography to Detect Fault Zones in Limestone and Argillaceous Formations in the Experimental Platform of Tournemire, France

机译:电阻层析成像技术在法国Tournemire实验平台上探测石灰岩和泥质岩层断裂带的潜力

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The Experimental platform of Tournemire (Aveyron, France) developed by IRSN (French Institute for Radiological Protection and Nuclear Safety) is located in a tunnel excavated in a clay–rock formation interbedded between two limestone formations. A well-identified regional fault crosscuts this subhorizontal sedimentary succession, and a subvertical secondary fault zone is intercepted in the clay–rock by drifts and boreholes in the tunnel at a depth of about 250 m. A 2D electrical resistivity survey was carried out along a 2.5 km baseline, and a takeout of 40 m was used to assess the potential of this method to detect faults from the ground surface. In the 300 m-thick zone investigated by the survey, electrical resistivity images reveal several subvertical low-resistivity discontinuities. One of these discontinuities corresponds to the position of the Cernon fault, a major regional fault. One of the subvertical conductive discontinuities crossing the upper limestone formation is consistent with the prolongation towards the ground surface of the secondary fault zone identified in the clay–rock formation from the tunnel. Moreover, this secondary fault zone corresponds to the upward prolongation of a subvertical fault identified in the lower limestone using a 3D high-resolution seismic reflection survey. This type of large-scale electrical resistivity survey is therefore a useful tool for identifying faults in superficial layers from the ground surface and is complementary to 3D seismic reflection surveys.
机译:IRSN(法国放射防护和核安全研究所)开发的Tournemire实验平台(法国,Aveyron)位于隧道中,该隧道位于两个石灰岩地层之间的粘土-岩层中。一个清晰可辨的区域断层横切了这个水平下的沉积演替,并且在大约250 m的深度中,隧道中的漂移和钻孔在粘土岩中截断了一个亚垂直次生断层带。沿着2.5 km基线进行了2D电阻率调查,并使用40 m的输出量评估了该方法检测地面故障的潜力。在调查所调查的300 m厚的区域中,电阻率图像显示了几个垂直低电阻率的不连续性。这些不连续之一对应于Cernon断层的位置,Cernon断层是主要的区域性断层。与上部石灰岩地层相交的亚垂直导电间断之一与隧道中粘土-岩层中所识别的次生断裂带向地面的延伸一致。此外,该次级断层带对应于使用3D高分辨率地震反射勘测在下部石灰岩中识别出的亚垂直断层的向上延伸。因此,这种类型的大规模电阻率测量是从地表识别表层中的断层的有用工具,并且是3D地震反射测量的补充。

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