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The Assessment of Damage Around Critical Engineering Structures Using Induced Seismicity and Ultrasonic Techniques

机译:利用感应地震和超声波技术评估关键工程结构周围的破坏

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— Two large-diameter boreholes have been excavated vertically from the floor of a tunnel at the Äspö Hard Rock Laboratory, Sweden. The two deposition holes will have simulated high-level radioactive waste canisters installed in them in an experiment undertaken to test the retrievability of waste from a proposed repository. Induced seismicity and other acoustic monitoring techniques have been used to investigate the Excavation Damaged Zone (EDZ) around the two holes. High-frequency acoustic emission (AE) monitoring has been used to delineate regions of stress-induced microfracturing on the millimetre scale. This has been shown to locate in clusters around the perimeter of the deposition hole at azimuths orthogonal to the far-field maximum principal stress. Three-dimensional velocity surveys have been conducted along ray paths that pass through the damaged region and through a stress-disturbed zone around the excavation. Induced microfracturing and stress disturbance have been observed as sharp decreases in velocity as the excavation proceeds through the rock mass. The combination of the high-resolution velocity measurements and the AE source locations has allowed the linking of the velocity measurements to a volume of excavation damaged rock. This has provided a quantitative estimate of the effect of the EDZ on the rock mass.
机译:—在瑞典ÄspöHard Rock实验室的隧道底部垂直开挖了两个大直径钻孔。这两个沉积孔将在其中安装的模拟高放射性废物罐中进行模拟,以测试从提议的存储库中回收废物的实验。诱导地震活动和其他声学监测技术已被用于调查两个孔周围的基坑破坏带(EDZ)。高频声发射(AE)监测已被用来在毫米尺度上描绘应力引起的微裂缝的区域。已经证明,它位于沉积孔周边周围的簇中,位于与远场最大主应力正交的方位角。沿着穿过受损区域和开挖周围应力扰动区域的射线路径进行了三维速度调查。随着开挖通过岩体,速度急剧下降,从而引起了微裂缝和应力扰动。高分辨率速度测量值与AE源位置的结合,使速度测量值可以与大量开挖损坏的岩石联系起来。这提供了EDZ对岩体影响的定量估计。

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