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An Investigation Of The Excavation Damaged Zone At The Kaeri Underground Research Tunnel

机译:Kaeri地下研究隧道开挖损伤区的研究

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The disturbance of a rock due to a blasting impact or stress redistribution can significantly influence the overall performance of an underground excavation. In order to investigate the characteristics of the EDZ (Excavation Damaged Zone) developed during the construction of the KAERI underground research tunnel in Korea (KURT), which is an underground research tunnel for a Korean high-level radioactive waste disposal program, various in situ and laboratory tests were carried out. A Goodman jack test showed that the deformation modules were influenced by a blasting to a depth of 1.5-2 m. With empirical equations, the EDZ could be predicted as 0.3-2.3 m. The average RQD from the rock cores at 0-2 m, where the blasting impact was significant, was 17% lower than that from the deeper regions. From the laboratory tests, the EDZ size could be estimated to be around 0.9-1.5 m. The elastic modules in the EDZ were decreased by about 56%. From a borehole radar reflection survey and a subtracting technique, it was possible to detect the new reflectors generated by a tunnel blasting. By using the determined EDZ size and the properties from the laboratory and in situ tests, a sensitivity analysis was performed. From the sensitivity analysis with seven parameters, it was possible to determine that the in situ stress ratio, Young's modules, and EDZ size were the three main parameters.
机译:由于爆破冲击或应力重新分布而引起的岩石扰动会严重影响地下开挖的整体性能。为了调查在韩国KAERI地下研究隧道(KURT)的建设过程中开发的EDZ(挖掘破坏区)的特性,该隧道是韩国高水平放射性废物处置计划的地下研究隧道,在各种现场进行并进行了实验室测试。 Goodman千斤顶测试表明,变形模块受爆破影响为1.5-2 m的深度。利用经验方程,EDZ可以预测为0.3-2.3 m。在爆破影响显着的0-2 m处,岩心的平均RQD比深部区域的平均RQD低17%。根据实验室测试,EDZ的大小估计约为0.9-1.5 m。 EDZ中的弹性模量减少了约56%。通过钻孔雷达反射勘测和减法技术,可以检测到隧道爆破产生的新反射器。通过使用确定的EDZ尺寸以及实验室和原位测试的性能,进行了灵敏度分析。从具有七个参数的敏感性分析中,可以确定原位应力比,杨氏模量和EDZ尺寸是三个主要参数。

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