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首页> 外文期刊>Engineering Geology >On the potential of Ground Penetrating Radar to help rock fall hazard assessment: A case study of a limestone slab, Gorges de la Bourne (French Alps)
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On the potential of Ground Penetrating Radar to help rock fall hazard assessment: A case study of a limestone slab, Gorges de la Bourne (French Alps)

机译:关于探地雷达在帮助岩崩危险评估中的潜力:以石灰岩板块为例,法国阿尔卑斯山(Gorges de la Bourne)

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摘要

The stability of a potentially unstable rock mass is highly sensitive to the continuity of the joints cutting it. The rock fall hazard assessment, generally based on surface geological observations and on a simple geomechanical model, suffers from the lack of information on the 3D geometry and the properties of the joints. This case study investigates the potential of Ground Penetrating Radar (GPR) measurements regarding hazard assessment in hard rock. GPR was used to detect and characterize joints that could cause the failure of an overhanging rock mass located above a road in the "Gorges de la Bourne" (France). GPR data were acquired using high frequency shielded antennae (500 and 800 MHz) to assess the extension of these joints and to detect other possible fractures. Combined with a velocity profile deduced from a Common Mid-Point (CMP) analysis, these measurements provided detailed images of the fracture network, which were locally consistent with turn rate velocity measurements performed within two horizontal boreholes. The rock bridge percentage in the critical joints was estimated from GPR data to be too low to ensure the stability of the overhanging rock mass. Consequently, mining of the rock mass was decided on. Afterwards, a comparison between GPR images and the real joints observed after mining also confirmed the GPR interpretation for the location and the extension of the joints.
机译:潜在不稳定岩体的稳定性对切割岩缝的连续性高度敏感。通常基于表面地质观测和简单的地质力学模型进行的岩崩危害评估缺乏有关3D几何形状和节理特性的信息。本案例研究调查了硬岩危险性评估中探地雷达(GPR)测量的潜力。 GPR被用于检测和表征可能导致位于“ Gorges de la Bourne”(法国)道路上方的悬垂岩体发生故障的节理。使用高频屏蔽天线(500和800 MHz)获取GPR数据,以评估这些关节的延伸并检测其他可能的骨折。结合从通用中点(CMP)分析得出的速度剖面,这些测量结果提供了裂缝网络的详细图像,这些图像与两个水平井眼中进行的转弯速率速度测量结果局部一致。根据GPR数据,关键节理中的岩桥百分比太低,无法确保悬垂岩体的稳定性。因此,决定开采岩体。之后,对GPR图像和采矿后观察到的真实关节之间的比较也证实了GPR对关节位置和延伸的解释。

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