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Numerical modelling of observed fallouts in hard rock masses using an instantaneous cohesion-softening friction-hardening model

机译:使用瞬时内聚软化摩擦硬化模型对硬岩体中观测到的沉降进行数值模拟

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摘要

The work presented in this paper focuses on compressive stress-induced brittle fallouts in hard rock masses, which are massive or sparsely fractured and subjected to intermediate to high in situ stresses. The results of numerical modelling, using a linear-elastic, brittle plastic material model with cohesion-softening friction-hardening (CSFH) behaviour, were compared with observed fallouts for six cases. The objective was to study how well the results of a CSFH model agrees with observed fallouts with respect to location, depth, and shape. All six cases were well documented with respect to virgin stresses, fallout characteristics, rock mass properties, and rock behaviour. The modelling results showed that shear strain localization (shear bands) developed for all cases. The depth of the intersected shear bands were used as a fallout indicator. Furthermore, the location and shape of the observed fallouts could be predicted fairly accurately. The predicted fallout depth was in good agreement with observed fallouts for three of the cases. Using both yielded elements and intersecting shear bands as fallout indicators results in a better prediction of fallout than using just one indicator.
机译:本文介绍的工作集中在压应力引起的坚硬岩体中的脆性沉降物上,这些岩体是大块的或稀疏的裂缝,并受到中等到高的原地应力。使用线弹性,脆性塑性材料模型和内聚软化摩擦硬化(CSFH)行为进行数值建模的结果与6例观察到的沉降进行了比较。目的是研究CSFH模型的结果与所观察到的关于位置,深度和形状的影响之间的吻合程度。关于原始应力,沉降特征,岩体性质和岩石行为,所有六个案例都得到了充分的记录。建模结果表明,在所有情况下都出现了剪切应变局部化(剪切带)。相交的剪切带的深度用作沉降指标。此外,可以相当准确地预测观察到的尘埃的位置和形状。在三种情况下,预测的尘埃深度与观察到的尘埃高度吻合。与仅使用一个指标相比,使用屈服元素和相交的剪切带作为沉降指标可以更好地预测沉降。

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