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Numerical simulation of the influence of small-scale defects on the true-triaxial strength of rock samples

机译:小尺度缺陷对岩石样品真三轴强度影响的数值模拟

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A numerical model is used to investigate the influence of randomly located 'defects' on the strength of rock samples with a Mogi-Coulomb three-dimensional failure criterion that are subjected to polyaxial states of stress. A methodology is presented to compute 'equivalent' Mohr-Coulomb strength parameters as a function of the 'instantaneous' stress, and sensitivity analyses are employed to study the influence of the stress state, of the total percentage of defects, and of the type of spatial distribution of defects within the sample. Results indicate that increments of strength due to the intermediate principal stress are less relevant for samples with defects, hence suggesting that the influence of polyaxial stress states is less significant for rock masses (that incorporate 'defects' or 'discontinuities' into their structure) than for intact rock. Results also indicate that the strength of rock with defects can be modelled as a 'homogeneous' material with reduced strength properties. The reduction factors are a linear function of the percentage of defects, and they tend to be greater for "lumped" defects than for "isolated" defects.
机译:使用数值模型来研究随机定位的“缺陷”对具有Mogi-Coulomb三维破坏准则且受多轴应力状态影响的岩石样品强度的影响。提出了一种方法来计算“等效” Mohr-Coulomb强度参数作为“瞬时”应力的函数,并采用敏感性分析来研究应力状态,缺陷的总百分比和类型的影响。样品中缺陷的空间分布。结果表明,由中间主应力引起的强度增加与有缺陷的样品的相关性较小,因此表明,对于岩体(将“缺陷”或“不连续性”纳入其结构),多轴应力状态的影响较小。完整的岩石。结果还表明,可以将具有缺陷的岩石的强度建模为强度特性降低的“均质”材料。减少因子是缺陷百分比的线性函数,对于“集总”缺陷,其降低趋势往往大于“隔离”缺陷的降低因子。

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