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首页> 外文期刊>Rock Mechanics and Rock Engineering >Discrete Element Modelling of the Influence of Reinforcement in Structurally Controlled Squeezing Mechanisms in a Hard Rock Mine
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Discrete Element Modelling of the Influence of Reinforcement in Structurally Controlled Squeezing Mechanisms in a Hard Rock Mine

机译:硬岩矿山结构控制挤压机制中钢筋作用影响的离散元建模

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摘要

Structurally defined squeezing mechanisms in hard rock mining often result in buckling failures and large deformations. In mining drives, the primary objective is to mitigate and manage, in a cost-effective way, as opposed to arrest the deformation. This paper is a contribution to an improved understanding of the impact of several reinforcement scenarios in structurally controlled deformations in hard rock mines. The influence of reinforcement in the 3D discrete element method is explored, extending previous numerical work that has captured the squeezing buckling mechanism driven by foliation and high stresses in the selected mine site. A comprehensive strategy for explicitly modelling rock reinforcement using the DEM was developed and implemented in a series of 3D numerical models. The models were calibrated based on field testing of reinforcement and observations at the LaRonde Mine. They were used to investigate the influence of different reinforcement strategies at different deformation stages. The numerical results were in agreement with the field observations and demonstrated the practical implications of using yielding reinforcement elements. This was supported by field data where the use of yielding bolts reduced the drift convergence and rehabilitation. The methodology is applicable to other mine sites facing structurally controlled large deformations.
机译:在硬岩开采中,结构上定义的挤压机制通常会导致屈曲破坏和大变形。在采矿驱动器中,主要目标是以经济有效的方式减轻和管理,而不是阻止变形。本文有助于增进对硬岩矿中结构控制变形中几种加固方案的影响的理解。探索了钢筋在3D离散元方法中的影响,扩展了先前的数值工作,该工作已经捕获了选定矿场中由叶面和高应力驱动的挤压屈曲机理。开发了使用DEM显式建模岩石加固的综合策略,并在一系列3D数值模型中实现了该策略。这些模型是根据LaRonde矿的钢筋现场测试和观察结果进行校准的。他们被用来调查不同的加固策略在不同变形阶段的影响。数值结果与现场观察结果一致,并证明了使用屈服增强元件的实际意义。这得到了现场数据的支持,在现场数据中,使用屈服螺栓减少了漂移的收敛和恢复。该方法适用于其他面临结构受控大变形的矿场。

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