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The Hydraulic Stability Assessment of Jointed Rock Mass by Analysis of Stress Path due to Underground Excavation

机译:地下开挖应力路径分析的节理岩体水力稳定性。

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In this study the effects of the stress path on the hydraulic conductivity characteristics during excavation are analyzed using a 2-D discrete element method. The variation of the stress path of the joints at specific locations (the bottom and wall) and around the periphery of an underground opening have been analyzed. The hydraulic stability of the opening is evaluated using the new concept of the trend distance ratio and trend orientation angle. The results from the analysis of the stress path at the bottom and wall of the opening are as follows: Firstly, most of the stress paths of the joints normal to the excavation surface are within the stable zone, and the hydraulic conductivity of the joints is decreased by 21% in average. Secondly, all of the stress paths of the joints parallel to the excavation surface are within the unstable zone, and the hydraulic conductivity is increased to 2.2 times in average. And the variation of the stress path and hydraulic conductivity is further analyzed for those joints having various distances from the opening. The joints parallel to the excavation surface showed the normal stress decreased by 38% and the hydraulic conductivity increased up to 1.9 times in average. This study makes it possible to determine the hydraulic stability of the underground opening excavated in a jointed rock mass.
机译:在这项研究中,使用二维离散元方法分析了应力路径对开挖过程中水力传导特性的影响。分析了特定位置(底部和墙壁)以及地下洞口周围的节点应力路径的变化。使用趋势距离比和趋势定向角的新概念评估开口的水力稳定性。对开口底部和开口处的应力路径进行分析的结果如下:首先,垂直于开挖面的节理的大部分应力路径在稳定区域内,并且节理的水力传导率为平均下降21%。第二,平行于开挖面的所有节理应力路径都在不稳定区内,并且水力传导率平均提高到2.2倍。并且进一步分析了距开口有各种距离的那些接头的应力路径和水力传导率的变化。与开挖面平行的节理显示法向应力降低了38%,水力传导率平均提高了1.9倍。这项研究使得确定节理岩体中地下洞口的水力稳定性成为可能。

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