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Numerical Modelling and Assessment of Excavation Damaged Zone around the Underground Excavations: a Case Study

机译:地下基坑开挖损伤区的数值模拟与评估:一个案例研究

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This paper presents a study on the quantification of the degree of damage from the microseismic event data, for assessment of excavation damaged zone of anisotropic rock in Jinchuan mine and presents numerical simulation and prediction on the deformation and failure of the rock masses surrounding laneway under rock mass properties and excavating conditions. Following an introduction to the engineering geology and mechanical properties of the rock mass in the Jinchuan mine areas, this paper reveals the features of the measured in situ stresses and puts emphasis on an analysis of the mechanism of underground opening and damage induced by the underground mining. Stress and AE redistribution induced by excavation of underground engineering results in the unloading zone in parts of surrounding rock masses. A micromechanics-based model has been proposed for brittle rock material undergoing irreversible changes of their microscopic structures due to microcrack growth. A systematical numerical modeling analysis method was completed. Based on numerical modelling, a series of predicting curves for rock mass response and deformation are obtained, which provides the basis of guiding the design and construction of anisotropic rock cave in Jinchuan mine. The use of the in situ stress field results in enhanced modeling of the stress concentrations and potential failures at the mines has also been reviewed. Knowledge of the prevailing rock stress field at the mines is a critical component for such modeling which has led to improved rock mechanics understanding and operations at Jinchuan mines.
机译:本文从微震事件数据出发,对破坏程度进行量化研究,以评价金川矿山各向异性岩石的开挖损伤区,并对岩石下巷道围岩的变形和破坏进行数值模拟和预测。质量特性和开挖条件。在介绍了金川矿区岩体的工程地质和力学特性之后,本文揭示了实测应力的特征,并着重分析了地下开采和地下开采引起的破坏的机理。 。地下工程开挖引起的应力和AE重新分布导致部分岩体的卸荷区。已经提出了一种基于微力学的模型,该模型用于脆性岩石材料由于微裂纹的生长而发生微观结构的不可逆变化。完成了系统的数值建模分析方法。在数值模拟的基础上,获得了一系列岩体响应和变形的预测曲线,为指导金川矿山各向异性岩溶洞的设计与施工提供了依据。现场应力场的使用可以增强应力集中的建模能力,并且还对矿井的潜在破坏进行了评估。了解矿山中普遍存在的岩石应力场是进行此类建模的关键组成部分,从而提高了金川矿山对岩石力学的了解和运营。

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