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REVIEW PAPER The bonded-particle model as a tool for rock mechanics research and application: current trends and future directions

机译:综述论文结合颗粒模型作为岩石力学研究和应用的工具:当前趋势和未来方向

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We generalize our view of a bonded-particle model (BPM) to consist of a base material (that is a packed assembly of rigid grains joined by deformable and breakable cement at grain-grain contacts) to which larger-scale joints can be added and whose mechanical behavior is simulated by the distinct-element method using the two- and three-dimensional discontinuum programs PFC2D and PFC3D. The micromechanical processes that control brittle fracture, and thus, should inform any micromechanical theory or model, are summarized. The rich variety of microstructural models that can be produced by the bonded-particle modeling methodology are described and classified with respect to their microstructural and larger-scale features. These models provide a wide range of rock behaviors that encompass both compact and porous rock at both an intact and rock-mass scale, and examples are provided of how BPMs are being used to model rock at these scales. The examples include an intact anisotropic material that may swell and contract in response to changes in saturation, the behavior of two alternative BPMs that can match both the uniaxial and tensile strengths of compact rock and the embedding of an intact BPM within a larger continuum model to study fracturing around a gold-mine stope in quartzite.
机译:我们将粘结颗粒模型(BPM)的观点概括为由基础材料(刚性颗粒的填充组件,通过在晶粒与晶粒之间的可变形和易碎的水泥连接而成)组成,可以在其中添加较大尺寸的接头,使用二维和三维不连续程序PFC2D和PFC3D,通过不同元素方法模拟其力学行为。总结了控制脆性断裂的微机械过程,因此应该指导任何微机械理论或模型。关于键合颗粒建模方法可以产生的各种微观结构模型,根据其微观结构和大规模特征进行了描述和分类。这些模型提供了广泛的岩石行为,包括完整和岩石质量尺度下的致密和多孔岩石,并提供了如何使用BPM在这些尺度上对岩石建模的示例。示例包括完整的各向异性材料,该材料可能会随着饱和度的变化而膨胀和收缩,两个可以与致密岩石的单轴和拉伸强度都匹配的替代BPM的行为以及完整BPM在更大的连续模型中的嵌入研究石英岩中金矿场周围的压裂。

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