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Evaluation of long-hole mine design influences on unplanned ore dilution.

机译:评估长孔矿山设计对计划外矿石稀释的影响。

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摘要

Unplanned ore dilution or stope overbreak, which has a direct and large influence on the cost of a stope, and ultimately on the profitability of a mining operation, can be attributed to both the mining process and to geologic setting. The research undertaken in this document, applicable to a wide range of underground mines employing the blasthole mining method to extract tabular orebodies, focuses on examining factors attributable to the generation of unstable stope hanging-walls.; The primary objective of the research undertaken is to establish new models for stope and orezone design, with respect to anticipated stope overbreak, focusing on the position and type of stope within the orezone extraction sequence. Identified factors influencing unplanned dilution, such as: induced stress environment, stope geometry, and the setting of individual stopes are considered.; The research undertaken incorporates a variety of components, including (i) parametric 3-D numerical modelling to examine influences of individual factors on hanging-wall overbreak, (ii) case example analysis, and (iii) orezone extraction sequence simulation, using 3-D elastic numerical modelling. Design criteria, developed from the parametric modelling, was applied to the orezone sequence modelling to develop trends for stope dilution, as functions of stope design and construction.; It was found that hanging-wall overbreak is not significantly influenced by depth alone, and that stopes with large vertical and short horizontal dimensions or stopes having long horizontal and short vertical dimensions are more stable than large square-like stopes. Also, through parametric and case studies, it was demonstrated that, in addition to stope dimension, the amount of unplanned dilution differed according to stope type. Five stope types were identified, based on their position within a tabular blasthole mining sequence. Measured overbreak varies with stope type, with secondary stopes generating a greater volume of hanging-wall dilution than do primary stopes. A pillarless mining sequence will generate less overall dilution than a primary stope: secondary pillar mining sequence.
机译:计划外的矿石稀释或采场过度开采直接影响采场成本,并最终对采矿业务的盈利能力产生直接而巨大的影响,这既可以归因于开采过程,也要归因于地质环境。该文件所进行的研究适用于使用爆破孔开采法提取板状矿体的各种地下矿山,其研究重点在于调查可归因于不稳定的采场上空壁的产生的因素。所进行研究的主要目的是针对预期的采场暴发建立采场和矿区设计的新模型,重点是在采矿区中采场的位置和类型。确定影响计划外稀释的因素,例如:诱发应力环境,采场几何形状以及各个采场的设置。所进行的研究包含多种成分,包括(i)参数3-D数值建模,以检查各个因素对吊壁溢流的影响;(ii)案例分析;以及(iii)使用3- D弹性数值建模。从参数化建模中发展出来的设计标准被应用于矿石区序列建模,以开发采场稀释的趋势,作为采场设计和构造的功能。已经发现,吊墙的突围不仅仅受深度的影响,并且具有大的垂直和短的水平尺寸的采场或具有大的水平和短的垂直尺寸的采场比大型正方形的采场更稳定。此外,通过参数和案例研究,结果表明,除了采场尺寸外,计划外稀释量也因采场类型而异。根据其在板状爆破采矿序列中的位置,确定了五种采场类型。测得的爆发量随采场类型的不同而不同,次采场比主要采场产生更大的吊壁稀释量。与主要采场:次要柱采掘序列相比,无支柱采掘序列产生的总稀释度要低。

著录项

  • 作者

    Henning, John Gordon.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Engineering Mining.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 331 p.
  • 总页数 331
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 矿业工程;
  • 关键词

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