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Potential of Surface-to-Tunnel Seismic Tomography to Detect Vertical Faults: Application to the Tournemire Underground Research Laboratory, France

机译:地表隧道地震断层扫描的潜力,以检测垂直故障:在法国的塔内斯地下研究实验室应用

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The Tournemire Underground Research Laboratory (Aveyron, France), developed by the French Institute for Radiological Protection and Nuclear Safety, is composed of a tunnel excavated in an argillaceous geological layer belonging to a limestone-argillite-limestone sub-horizontal sedimentary sequence. Sub-vertical fault zones are intercepted by drifts and boreholes excavated from the tunnel in the argillaceous layer at a depth of about 250 m. These fault zones are characterized by velocities lower than those of the embedding rocks. In this study, we assess the capacity of first arrival traveltime tomography to detect and characterize such fault zones in a surface-to-depth transmission configuration with a limited angle aperture. The source at the surface is a sledgehammer and turns out to be very repetitive. The source trigger is transmitted to the acquisition bay via a VHF transmitter. Receivers are located at depth in underground works. First arrivals are clear and traveltime picking is straightforward. Before inverting real data, we conduct synthetic tests with the real acquisition geometry to assess limits and validity of first arrival traveltime tomography to detect a lower velocity fault zone using different initial configurations and inversion constraints during the inversion. We show that introducing a priori information on velocities in the shallow subsurface, limestones and argillaceous layers and constraints on maximum velocities greatly helps improving results and subsequent interpretation. Velocities obtained from the real data display a main lower velocity zone that extends from the galleries in the argillaceous layer right up to the surface in limestones. The location and extension of this lower velocity zone are consistent with fault and fracture zones mapped from geological observations.
机译:由法国放射保护和核安全研究所开发的Tournemire地下研究实验室(法国Aveyron)由属于石灰石 - 粒状石灰级沉积序列的骨质地质层挖掘的隧道组成。亚垂直故障区由漂移和钻孔拦截从野生岩层中挖掘的散热,深度约为250米。这些断层区域的特征在于低于嵌入岩石的速度。在这项研究中,我们评估了第一到来旅行时间断层摄影的能力,以通过有限的角度孔径检测和表征表面到深度传输配置中的这种断层区域。表面上的源是一个大锤,结果是非常重复的。通过VHF发射器将源触发传输到采集托架。接收器位于地下工程中深度。首先抵达很清楚,旅行时间采摘很简单。在反转真实数据之前,我们使用实际采集几何进行合成测试,以评估首次到达行程断层扫描的限制和有效性,以在反转期间使用不同初始配置和反演约束来检测较低速度故障区域。我们展示了关于浅层地下,石灰岩和骨质层中的速度的先验信息以及最大速度的约束极大地有助于提高结果和随后的解释。从真实数据获得的速度显示一个主下速度区域,其从骨灰层中的画廊延伸到石灰岩中的表面。该较低速度区的位置和延伸与从地质观察中映射的故障和裂缝区域一致。

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