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Investigating the Failure Mechanism of Jointed Rock Slopes Based on Discrete Element Method

机译:基于离散元法研究关节岩石斜坡的故障机理

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This paper presents a comprehensive engineering method to investigate the failure mechanism of the jointed rock slopes. The field geology survey is first carried out to obtain the slope joint data. A joint network model considering the structural complexity of rock mass is generated in the PFC software. The synthetic rock mass (SRM) approach for simulating the mechanical behavior of jointed rock mass is employed, in which the flat-jointed bonded-particle model (FJM) and smooth joint contact model (SJM) represent intact rock and joints, respectively. Subsequently, the effect of microparameters on macromechanical properties of rock is investigated for parameter calibration. Moreover, the scale effect is analyzed by multiscale numerical tests, and the representative elementary volume (REV) size in the selected research area is found as 16?m?×?16??m?×?16?m. The microparameters of the SRM model are calibrated to match the mechanical properties of the engineering rock mass. Finally, an engineering case from Shuichang open-pit mine is analyzed and the failure process of the slope during the excavation process from micro- to macroscale is obtained. It has been found that failure occurs at the bottom of the slope and gradually develops upwards. The overall failure of the slope is dominated by the shallow local tension fracture and wedge failure.
机译:本文介绍了一种综合工程方法,用于研究关节岩石斜坡的故障机理。首先进行现场地质调查以获得斜坡关节数据。考虑到PFC软件产生了考虑岩体结构复杂性的联合网络模型。采用用于模拟关节岩体力学行为的合成岩体(SRM)方法,其中平面接合粒子模型(FJM)和平滑的接头接触模型(SJM)分别代表完整的岩石和关节。随后,对参数校准研究了微迁移率对岩石大致力学性质的影响。此外,通过多尺度数值测试分析了比例效应,并且所选研究区域中的代表性基本体积(Rev)尺寸被发现为16?×16?16?16?16?16。 SRM模型的微迁移仪校准以匹配工程岩体的机械性能。最后,分析了来自水平露天矿井的工程案例,并获得了从微到宏观的挖掘过程中的斜率的故障过程。已经发现,失败发生在坡度的底部并逐渐向上发展。斜坡的总体故障由浅局部张力骨折和楔形失效主导。

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