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Characterization on jointed rock masses based on PFC2D

机译:基于PFC2D的节理岩体表征。

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摘要

Geometrical parameters of discontinuities, such as spacing, length, dip and fault throw between joints have a great influence on the mechanical behavior of jointed rock masses. Accurate characterization for discontinuities is important for investigate the stability of rock masses. In this paper, the PFC2D is combined with joint network generation method to examine the mechanical behaviors of jointed mass. Taking Miaogou Open-pit Mine as an example, the information and statistical distributions of discontinuities of the slope rock masses are measured by ShapeMetriX3D measuring tool. Then, the automatic generation algorithm of random joints network based on the Monte-Carlo method is proposed using the programming language (FISH) embedded within PFC2D. This algorithm could represent the discontinuities compared with the geological surveys. In simulating the compression test of a jointed rock sample, the mechanical behavior and crack propagation were investigated. The results reveal that the failure mode and crack propagation of the jointed rock are dominated by the distribution of joints in addition to the intact rock properties. The simulation result shows the feasibility of the joints generating method in application to jointed rock mass.
机译:节理之间的不连续性的几何参数,例如间距,长度,倾角和断层投掷,对节理岩体的力学行为有很大的影响。不连续性的准确表征对于研究岩体的稳定性很重要。本文将PFC2D与联合网络生成方法相结合,以检查联合质量的力学行为。以庙沟露天矿为例,利用ShapeMetriX3D测量工具对边坡岩体的不连续性信息和统计分布进行了测量。然后,使用嵌入在PFC2D中的编程语言(FISH)提出了基于蒙特卡洛方法的随机关节网络自动生成算法。与地质调查相比,该算法可以表示不连续性。在模拟节理岩样的压缩试验中,研究了力学性能和裂纹扩展。结果表明,节理岩石的破坏模式和裂纹扩展除了完整的岩石特性外,还受节理分布的支配。仿真结果表明了节理生成方法应用于节理岩体的可行性。

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