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Application of the discrete element method for modeling of rock crack propagation and coalescence in the step-path failure mechanism

机译:离散元法在岩石裂纹扩展与合并建模中的应用

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The present study evaluates the discrete element method (DEM) as a tool for understanding the step-path failure mechanism in fractured rock masses. Initially, the study simulates crack propagation and coalescence in biaxial and triaxial laboratory tests. The results of this analysis show that the DEM accurately represents these processes in comparison to other studies in the technical literature. The crack propagation and coalescence processes are important in the step-path failure mechanism for slopes. Simple examples of this mechanism were modeled, and their results were compared with those of the analytical model proposed by Jennings (1970). Among the possibilities suggested by Jennings, modeling with DEM did not provide a good approximation for the case of coplanar cracks, for which failures in the intact rock bridges should only be caused by shear forces. In modeling with DEM, tensile failures occur within the sliding block, generating forces that are not considered in the Jennings model. The non-coplanar crack condition provided a better approximation, since the Jennings model formulation for this case includes the tensile failure of the rock. The main advantage of the DEM over other computational tools is its micromechanical representation of discontinuous media, which permits a better understanding of the step-path failure mechanism. However, good calibration of the macroscopic parameters of the rock and its discontinuities is necessary to obtain good results.
机译:本研究评估离散元法(DEM)作为了解裂隙岩体中阶梯路径破坏机理的工具。最初,该研究在双轴和三轴实验室测试中模拟裂纹扩展和合并。分析的结果表明,与技术文献中的其他研究相比,DEM可以准确地代表这些过程。裂纹扩展和合并过程在斜坡的阶梯路径破坏机制中很重要。对这种机制的简单示例进行了建模,并将其结果与詹宁斯(1970)提出的分析模型的结果进行了比较。在詹宁斯(Jennings)提出的可能性中,使用DEM建模不能很好地估计共面裂纹的情况,因为共面裂纹的发生仅应由剪切力引起。在使用DEM进行建模时,滑块内会发生拉伸破坏,从而产生Jennings模型中未​​考虑的力。非共面裂纹条件提供了更好的近似值,因为针对这种情况的詹宁斯模型公式包括岩石的拉伸破坏。与其他计算工具相比,DEM的主要优点是其对不连续介质的微观力学表示,从而可以更好地理解阶跃路径失效机理。但是,对岩石的宏观参数及其不连续性进行良好的校准对于获得良好的结果是必要的。

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