首页> 外文期刊>Journal of environmental & engineering geophysics >GPR Study of a Thrust-Fault in an Active Limestone Quarry (SW Slovenia)
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GPR Study of a Thrust-Fault in an Active Limestone Quarry (SW Slovenia)

机译:GPR在活性石灰石采石场中的推力故障研究(SW斯洛文尼亚)

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摘要

After conducting a successful GPR pilot study in a tectonically complex area of the Karst Thrust Edge, a follow-up study was carried out. In the pilot study, the geometry and spatial extent of the Socerb thrust-fault, which separates limestone above from flysch below, were investigated using a 50 MHz antenna in the Crnotice quarry. After one part of the quarry was deepened and widened, new flysch outcrops were exposed and GPR profiling was made possible in areas where the thrust contact could not be reached before. By comparing the first GPR results with the locations of new flysch outcrops, we found it reached the surface almost exactly where we had predicted. In order to gain new information about the location of the thrust contact, nine new profiles were recorded. In this newly deepened area, the thrust contact runs close to the surface, therefore a 250 MHz antenna was used in addition to the 50 MHz antenna in order to ensure an adequate level of resolution. This combination of antennas provided the depth penetration of 34 m as well as resolution high enough to obtain accurate information from the shallowest parts. GPR profiles were used to create a 3D model of the thrust-fault plane, providing information about the spatial position and lateral undulations of the thrust contact. The results provided new data about the geometry of the Socerb thrust-fault and correlated well with existing borehole data. The results also showed the importance of using appropriate antenna frequencies as other features capable of becoming hazardous during excavation (air-filled and sediment-filled karst caves) could otherwise be misinterpreted or overlooked. The follow-up research not only provides new data important for understanding the tectonic setting of the area, but also information needed for calculating exploitable material quantities and for planning safe excavation processes.
机译:在喀斯特推力边缘的根本复杂区域进行成功的GPR试点研究后,进行了后续研究。在试验研究中,使用Crnotice采石场中的50 MHz天线研究了SOCERB推力故障的几何和空间范围,其将高于捕蝇的速度从下面进行研究。在采石场的一部分加深并扩大后,新的鸡舍暴露,并且在无法达到推力接触之前的区域可以实现GPR分析。通过将第一个GPR结果与新的Flysch露头的位置进行比较,我们发现它几乎完全达到了我们预测的地方。为了获得有关推力接触位置的新信息,记录了九种新型材。在这个新加深的区域中,推力接触靠近表面延伸,因此除了50MHz天线之外还使用250MHz天线,以确保足够的分辨率水平。该天线的这种组合提供了34米的深度渗透以及足够高的分辨率,以从最浅部件获得准确的信息。 GPR配置文件用于创建推力故障平面的3D模型,提供有关推力接触的空间位置和横向波动的信息。结果提供了有关Socerb推力故障的几何形状的新数据,并与现有的钻孔数据相关。结果还表明,使用适当的天线频率作为能够在挖掘过程中变得危险的其他特征(充满沉积的和沉积的岩溶洞穴)的其他特征可以误解或被忽视。后续研究不仅为了解该区域的构造环境而重要的新数据,还提供了计算可利用材料量和规划安全挖掘过程所需的信息。

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