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Numerical modelling of surface subsidence associated with block cave mining using a finite element/discrete element approach.

机译:使用有限元/离散元方法对与块状洞穴开采相关的地面沉降进行数值模拟。

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摘要

Recent years have seen a major increase of interest in the block cave mining method which is characterized by extraction of a massive volume of rock usually accompanied by the formation of a significant surface depression above and in the vicinity of the mining operation. The ability to predict surface subsidence is important for mine planning, operational hazard assessment and evaluation of environmental and socio-economic impacts. Owing to problems of scale and lack of access, the fundamental understanding of the complex rock mass response leading to subsidence is limited as are current subsidence prediction capabilities.;This study also addresses one of the most challenging problems in mining rock engineering---the interaction between block cave mining and a large overlying open pit, focusing on caving induced step-path failure initialization. Using a novel approach to modelling data analysis a clear link between caving propagation, step-path failure development within the slope, and the resultant surface subsidence is established. In addition, FEM/DEM-DFN modelling is applied to the preliminary analysis of the block caving triggered slope failure at Palabora open pit.;This research represents a valuable contribution to block caving geomechanics and is a major step forward in the understanding of complex block caving subsidence phenomena, paving the way to more reliable assessment of caving induced subsidence deformations.;Keywords: rock mechanics; numerical modelling; block cave mining; block caving subsidence; open pit-caving mining interaction; FEM/DEM-DFN;Through the use of an integrated FEM/DEM-DFN modelling technique this thesis presents a new approach to simulation of block caving induced surface subsidence allowing physically realistic simulation of subsidence development from caving initiation to final subsidence deformation. As part of the current research, a fundamental issue in modelling, the selection of representative equivalent continuum rock mass modelling parameters, is investigated and a procedure for calibration of modelling parameters devised. Utilizing a series of conceptual numerical experiments our fundamental understanding of the mechanisms and the role of the factors controlling block caving subsidence development is investigated. Valuable insights gained from this work are summarized in a preliminary subsidence classification and an influence assessment matrix of the governing factors. These are intended as an aid to engineering judgment for decision makers at the pre-feasibility and mine design stages.
机译:近年来,人们对块状洞穴采矿方法的兴趣大增,其特征在于大量岩石的提取通常伴随着采矿作业上方和附近形成明显的地表凹陷。预测地面沉降的能力对于矿山规划,运营危害评估以及环境和社会经济影响评估至关重要。由于规模问题和难以进入的问题,对导致塌陷的复杂岩体响应的基本理解以及当前的塌陷预测能力都受到限制。;本研究还解决了采矿岩石工程中最具挑战性的问题之一-块状洞穴开采与大型上覆露天矿之间的相互作用,着重于崩落引起的阶跃路径失效初始化。使用一种新颖的方法来对数据分析进行建模,可以建立探洞传播,斜坡内阶跃路径破坏发展以及最终的地面沉降之间的明确联系。此外,有限元/ DEM-DFN建模被用于帕拉瓦拉露天矿的崩落崩落触发边坡破坏的初步分析。;这项研究对崩落崩落地质力学做出了宝贵的贡献,是对复杂砌块理解的重要一步关键词:崩塌现象;为更可靠地评估崩落引起的沉降变形铺平道路。数值建模;阻止洞穴开采;崩塌塌陷;露天矿开采互动; FEM / DEM-DFN;通过使用集成的FEM / DEM-DFN建模技术,本论文提出了一种新的模拟崩塌诱发地表沉陷的方法,可以对从崩落开始到最终沉陷变形的沉陷发展进行物理逼真的模拟。作为当前研究的一部分,研究了建模中的一个基本问题,即选择具有代表性的等效连续体岩体建模参数,并设计了用于校准建模参数的程序。利用一系列概念性数值实验,我们研究了对控制崩落塌陷发展因素的机理和作用的基本理解。初步沉陷分类和影响因素的影响评估矩阵总结了从这项工作中获得的宝贵见解。这些旨在帮助决策者在预可行性研究和矿山设计阶段进行工程判断。

著录项

  • 作者

    Vyazmensky, Alexander.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Engineering Geological.;Engineering Mining.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 262 p.
  • 总页数 262
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

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