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Joint orientations for TBM performance analysis using borehole geophysics to orient rock cores

机译:使用钻孔地球物理学对东方岩石核心的TBM性能分析的联合取向

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A borehole televiewer was used to orient rock core for joint analysis as part of the Atlanta CSO Tunnel Geotechnical Investigation. The Atlanta CSO tunnels are about 30 feet in diameter and will be bored through medium grade gneiss and schist. The televiewer is a wireline geophysical tool that uses sonic waves to map the traces of individual joints around the inside of the borehole wall. From these traces, the televiewer software calculates the strike, dip, and aperture of each joint. The televiewer was used in 51 core holes averaging 300 feet in depth, and was much less expensive, faster, and more accurate than using oriented core. The televiewer provided joint characteristics, an acoustic velocity log to indicate areas of weathered or blocky ground where core recovery is typically poor, and a graphical picture of the borehole that can be used to orient the core for more detailed analysis. Each joint in the televiewer data was correlated to the core and classified in terms of RMR and Q parameters. Machine breaks and core damage were easily recognized because they occurred only in the core, but were not read by the televiewer in the borehole wall. A stereoplot of the joint data was made for each borehole and for the project as a whole. These stereoplots were used for three purposes: (1) kinematic wedge analysis and support design; (2) classifying the ground into different baseline types; and (3) estimating the potential benefits of the fractures on TBM performance using the Norwegian Fracturing Factor criteria.
机译:作为亚特兰大CSO隧道岩土工程调查的一部分,用于将岩石核心定向联合分析的联合分析。亚特兰大CSO隧道的直径约为30英尺,通过中等鳞片和分型钻孔。 Televiewer是一种有线地球物理工具,使用声波映射朝向钻孔壁的内部围绕各个关节的痕迹。从这些迹线,Televiewer软件计算每个关节的击打,倾角和光圈。 Televiewer用于51个核心孔,平均深入300英尺,比使用定向核心更便宜,更快,更准确,更准确。 Televiewer提供了关节特性,声速日志表示风化或块状地面的区域,其中核心恢复通常差,并且钻孔的图形图像可用于定向核心以进行更详细的分析。 Televiewer数据中的每个关节与核心相关并根据RMR和Q参数进行分类。机器休息和核心损坏很容易被识别,因为它们仅在核心中发生,而是由Televiewer在钻孔墙中读取。为每个钻孔和整个项目制作联合数据的立体层。这些立体层用于三种目的:(1)运动楔分析和支持设计; (2)将地面分类为不同的基线类型; (3)使用挪威压裂因子标准估算骨折对TBM性能的潜在益处。

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