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Assessment of blasting quality for lateral development in underground mines.

机译:评估地下矿井横向开发的爆破质量。

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摘要

Safety, stability, and functionality of mine excavations depend on the structural integrity of the surrounding rock mass. Various explosives and perimeter control blasting techniques have been developed in order to minimize rock damage associated with the conventional drilling and blasting operations. Mining engineers have little or no control over the rock mass characteristics, but proper selection of blast design and explosives parameters results in blasts producing minimum disturbance to the remaining rock mass.; Assessment of blast performance in mine operations requires a simplified methodology combining pre-blast rock conditions and post-blast observations. A new Blast Quality Index (BQI) quantifying the blast-induced rock mass damage is proposed. Based on the data available at the time of the study, the BQI incorporated the Rock Mass Rating as a rock mass quality parameter and post-blast observations such as Half Cast Factor, overbreak, scaling time, scaled volume, and sounding with a scaling bar.; The developed methodology is not site specific and combines several easy to obtain damage assessment parameters. It can be easily applied to evaluate the performance of different blasting techniques for various rock mass conditions in underground hard rock mines. The BQI values are relevant only to the site being analyzed. The application of the BQI was demonstrated for determination of the optimum blast design parameters for the rock mass conditions at two case studies. Blasthole spacing to diameter (S/D) ratio, Perimeter Powder Factor (PPF), blasthole spacing (S), and burden to spacing (B/S) ratio yielding minimum disturbance to the rock mass at the blast sites were obtained.
机译:矿山开挖的安全性,稳定性和功能性取决于围岩的结构完整性。为了最小化与常规钻孔和爆破操作相关的岩石破坏,已经开发了各种炸药和周边控制爆破技术。采矿工程师几乎无法控制岩体特征,但是,正确选择爆炸设计和炸药参数会导致爆炸对剩余岩体的干扰最小。评估矿山作业中的爆破性能需要一种简化的方法,将爆破前的岩石条件和爆破后的观测结果结合起来。提出了一种新的爆炸质量指数(BQI),用于量化爆炸引起的岩体破坏。根据研究时可用的数据,BQI将“岩体质量等级”作为岩体质量参数,并将爆炸后的观测结果(例如“半铸因”,“突围”,“水垢时间”,“水垢体积”和“用标尺测深”)结合到了一起。 。;所开发的方法不是特定于地点的,而是结合了几个易于获得的损害评估参数。它可以轻松地用于评估地下硬岩矿山中各种岩体条件下不同爆破技术的性能。 BQI值仅与要分析的站点有关。在两个案例研究中,证明了BQI的应用可以确定岩体条件下的最佳爆破设计参数。获得了爆破孔间距与直径(S / D)的比值,周长粉末系数(PPF),爆破孔间距(S)和负担与间距(B / S)的比值,从而对爆破点处的岩体产生最小的干扰。

著录项

  • 作者

    Gregory, Damian.;

  • 作者单位

    Laurentian University (Canada).;

  • 授予单位 Laurentian University (Canada).;
  • 学科 Engineering Mining.
  • 学位 M.A.Sc.
  • 年度 2006
  • 页码 126 p.
  • 总页数 126
  • 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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