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Influence of stress path on stress memory and stress fracturing in brittle rocks

机译:应力路径对脆性岩石应力记忆和应力压裂的影响

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A two-dimensional numerical model based on the distinct element method, previously calibrated to the laboratory properties of undamaged and damaged Lac du Bonnet (LdB) granite, was used to investigate the influence of stress path on the development of stress memory and stress fracturing in brittle rocks. Various cycles of loading and unloading, similar to those imposed during Kaiser effect tests, were first applied to undamaged numerical specimens of LdB granite. The results of Kaiser effect test simulations were found to be consistent with those of published laboratory and numerical investigations. Further simulations were conducted to investigate the influence of stress path resulting from the excavation of a tunnel on the depth of stress fracturing around the excavation boundary. For this purpose, the stress paths at points on and near the tunnel wall, obtained from a continuum finite element model, were applied to the calibrated numerical specimen. It was found that the amount of damage in the numerical specimens decreases rapidly with increasing distance from the excavation wall. The findings of this research shed some light on the influence of stress pathandgrain-scale heterogeneity on stress memory in brittle rocks and stress fracturing around underground openings.
机译:基于不同元素方法的二维数值模型,先前校准的LACU du BANNET(LDB)花岗岩的实验室性质,用于研究应力路径对应力记忆和压力压力发展的影响脆性岩石。首先应用于在KAISER效果试验期间施加的各种装卸循环,类似于LDB花岗岩的未损坏数值标本。发现Kaiser效果测试模拟的结果与公布的实验室和数值调查一致。进行了进一步的模拟,以研究应力路径的影响,该应力路径由隧道的挖掘产生围绕挖掘边界的应力深度的挖掘。为此目的,从连续的有限元模型获得的隧道壁上和附近的应力路径施加到校准的数值样本上。结果发现,数值样品中的损坏量随着挖掘壁的距离越来越快地减少。这项研究的结果揭示了应力Pathandgrain规模异质性对压力记忆的影响,在脆性岩石中的应力记忆和地下开口周围的压力压裂。

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