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首页> 外文期刊>Computers and Geotechnics >Strength and failure mechanism of highly interlocked jointed pillars: Insights from upscaled continuum grain-based models of a jointed rock mass analogue
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Strength and failure mechanism of highly interlocked jointed pillars: Insights from upscaled continuum grain-based models of a jointed rock mass analogue

机译:高度互锁的关节支柱的力量和失效机制:关节岩体模拟升高的连续谷物谷物模型见识

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摘要

An optimum design of mine pillars necessitates a reliable estimation of the rock mass strength. It is known that the Hoek-Brown failure criterion, with its strength parameters obtained using the Geological Strength Index, tends to underestimate the confined strength of interlocked jointed hard rock masses. Therefore, geomechanical designs based on this approach could lead to oversized pillars due to the underestimation of the pillar core strength. In this study, a two-dimensional finite element program was used to investigate the strength and failure mechanisms of jointed pillars. For this purpose, a previously calibrated grain-based model of heat-treated marble, an analogue for a highly interlocked jointed rock mass, was upscaled to simulate jointed pillars of various widthto-height ratios. The simulation results showed that the slope of the pillar stability curve obtained from this approach is steeper than those of existing continuum and discontinuum models of jointed pillars. This is attributed to the high degree of block interlock leading to higher rock mass strength at the pillar core. It is demonstrated that this modeling approach provides more realistic results in terms of pillar failure process compared to other continuum models, in which the rock mass is simulated as a homogeneous material.
机译:矿山柱的最佳设计需要可靠地估计岩体质量强度。众所周知,利用地质强度指数获得的Hoek-Brown失效标准,其强度参数,往往低估了互锁的关节硬质岩体的狭窄强度。因此,基于这种方法的地质力学设计可能导致超大的柱子,由于柱芯强度低估。在该研究中,使用二维有限元件来研究连接柱的强度和失效机制。为此目的,先前校准的谷物的热处理大理石模型,用于高度互锁的关节岩体的类似物,升高以模拟各种宽度高度比的连接柱。仿真结果表明,从这种方法获得的柱稳定性曲线的斜率比现有的连续体和连接柱的不连续模型更陡峭。这归因于高度的块互锁,导致柱芯处的较高岩石质量强度。结果表明,与其他连续型号相比,这种建模方法在柱子故障过程方面提供了更现实的结果,其中岩体被模拟为均匀材料。

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