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Influence of stress, undercutting, blasting and time on open stope stability and dilution.

机译:应力,底切,爆破和时间对露天矿稳定性和稀释度的影响。

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摘要

This thesis presents the results of open stope stability and dilution research which focused on evaluating and quantifying stress, undercutting, blasting and exposure time and their effect on open stope stability and dilution.; Open stope mining is the most common method of underground mining in Canada. Unplanned stope dilution is a major cost factor for many mining operations. Significant advances in empirical stability and dilution design methods have improved our ability to predict probable dilution from open stoping operations. However, some of the factors that influence hanging wall dilution are either ignored or assessed in purely subjective terms in existing designs. This thesis attempts to quantify these factors, from a geomechanics perspective, to assist in predicting and minimizing dilution.; A comprehensive database was established for this study based on two summers of field work. Site geomechanics rock mass mapping and classification were conducted and case histories were collected from Cavity Monitoring System (CMS) surveyed stopes from Hudson Bay Mining and Smelting Co. Ltd. (HBMS) operations.; The stope hanging wall (HW) zone of stress relaxation was quantified based on extensive 2D and 3D numerical modelling. Stress relaxation was linked to the stope geometry and the degree of adjacent mining activity.; The influence of undercutting on stope HW stability and dilution was analysed using the case histories collected from HBMS mines. An undercutting factor (UF) was developed to account for the undercutting influence on stope HW dilution. Numerical simulations were conducted to provide a theoretical basis for the undercutting factor. A relationship was observed between the degree of undercutting, expressed by the UF term and the measured dilution.; Many factors can significantly and simultaneously affect a blast performance, which may result in blast damage to stope walls. Major blasting factors which influence stope HW stability were identified. The influence of blasting on stope HW stability and dilution was evaluated based on the established database.; The HBMS database, Bieniawski's stand-up time graph, as well as Geco mine case histories were used to evaluate the influence of exposure time on stope stability and dilution. Relating increased mining time to increased dilution allows the mining engineer to equate mining delays to dilution costs.; Each of the factors assessed in this study was studied independently to assess its influence on stope dilution, based on the HBMS database. The factors influencing dilution often work together, so a multiple parameter regression model was used to analyze the available parameters in the HBMS database.; The findings of this research greatly improve an engineer's ability to understand and to predict the influence of mining activities and stoping plans on hanging wall dilution.
机译:本文介绍了露天采场稳定性和稀释度的研究结果,重点是评估和量化应力,底切,爆破和暴露时间及其对露天采场稳定性和稀释度的影响。露天开采是加拿大最常见的地下开采方法。计划外的采场稀释是许多采矿作业的主要成本因素。经验稳定性和稀释设计方法的重大进步提高了我们预测从开放式停止操作中可能稀释的能力。但是,在现有设计中,一些影响吊壁稀释的因素被忽略或以纯粹主观的方式评估。本文试图从地质力学的角度量化这些因素,以帮助预测和最小化稀释度。基于两个夏天的野外工作,为该研究建立了一个全面的数据库。进行现场地质力学岩体测绘和分类,并从哈德逊湾矿业冶炼有限公司(HBMS)运营的腔监测系统(CMS)勘测的采场中收集病史。基于广泛的2D和3D数值建模,对应力松弛的采场吊壁(HW)区进行了量化。应力松弛与采场的几何形状和相邻开采活动的程度有关。使用从HBMS矿山收集的案例历史记录,分析了底切对采场硬件稳定性和稀释度的影响。开发了底切因子(UF)来说明底切对采场HW稀释的影响。进行了数值模拟,为底切系数提供了理论基础。用UF术语表示的底切程度与测得的稀释度之间存在关系。许多因素会同时显着影响爆破性能,从而可能导致爆破损坏采场壁。确定了影响采场硬件稳定性的主要爆破因素。基于已建立的数据库,评估了爆破对采掘场硬件稳定性和稀释度的影响。 HBMS数据库,Bieniawski的站立时间图以及Geco矿山的历史记录用于评估暴露时间对采场稳定性和稀释度的影响。将增加的开采时间与增加的稀释相关联,可使采矿工程师将开采延迟等同于稀释成本。根据HBMS数据库,独立研究了本研究中评估的每个因素,以评估其对采场稀释的影响。影响稀释的因素通常一起起作用,因此使用多参数回归模型分析HBMS数据库中的可用参数。这项研究的发现极大地提高了工程师理解和预测采矿活动和采矿计划对吊壁稀释的影响的能力。

著录项

  • 作者

    Wang, Jucheng.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Engineering Mining.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 279 p.
  • 总页数 279
  • 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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