首页> 外文会议>International conference on ground control in mining >Modeling the Effect of Bolts on the Behavior of Rock Pillars and Associated Insights on Rib Reinforcement
【24h】

Modeling the Effect of Bolts on the Behavior of Rock Pillars and Associated Insights on Rib Reinforcement

机译:模拟螺栓对岩柱行为的影响以及有关肋骨加固的相关见解

获取原文
获取外文期刊封面目录资料

摘要

Rib failures are a major hazard in underground mining. When pillars are subjected to loading, extensile cracks are generated parallel to the excavation boundary, which can manifest as rib falls. A common mitigation measure is to install supports, especially bolts, normal to the rib surface. The type and spatial distribution of these supports along the pillar is often based on experience rather than comprehensive analysis. Since conducting field experiments is often impractical and expensive, a convenient alternative is to perform 3D numerical modeling. In this study, FLAC~(3D) has been used to capture the interaction of rib bolts and the failure processes governing the stability of pillars. An associated goal is to determine whether, at all, a continuum software is capable of modeling the effect of supports. The modeling involved two important steps: selection of a proper constitutive model, and, explicit simulation of rock bolts. Based on precursory work in the last decade, an S-shaped strength criterion was chosen that can describe the tensile fracture mechanism of rock at low confinement and shear failure mechanism of rock at high confinement. The built-in pile structural element in FLAC~(3D) is a simplified representation of the complete bolt system. Hence, the different components of a rock bolt (i.e., steel, grout, steel-grout interface, and grout-rock interface) have been explicitly modeled within the rock mass and then tested for its ability to replicate the ground-support interaction behavior.
机译:肋骨破坏是地下采矿的主要危险。当支柱受到荷载时,平行于开挖边界会产生大量裂缝,这可能是肋骨跌落。常见的缓解措施是垂直于肋骨表面安装支撑件,尤其是螺栓。这些支柱沿支柱的类型和空间分布通常是基于经验而非综合分析。由于进行现场实验通常不切实际且昂贵,因此一种方便的替代方法是执行3D数值建模。在这项研究中,FLAC〜(3D)已用于捕获肋骨螺栓的相互作用以及支配支柱稳定性的破坏过程。一个相关的目标是确定连续介质软件是否完全能够对支撑物的效果进行建模。建模涉及两个重要步骤:选择适当的本构模型,以及岩栓的显式仿真。基于近十年的前期工作,选择了S形强度准则,该准则可以描述低约束岩石的拉伸断裂机制和高约束岩石的剪切破坏机制。 FLAC〜(3D)中的内置桩结构元素是完整螺栓系统的简化表示。因此,已经在岩体中对岩栓的不同组成部分(即钢,水泥浆,钢浆水泥界面和水泥浆岩界面)进行了显式建模,然后测试了其复制地面与地面相互作用行为的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号