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The influences of stress and structure on mining-induced seismicity in Creighton Mine, Sudbury, Canada.

机译:应力和结构对加拿大萨德伯里Creighton矿的采矿诱发地震活动的影响。

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摘要

The Creighton Mine is a structurally complex and seismically active mining environment. Microseismic activity occurs daily and increases with depth, complicating downward mine expansion. Larger magnitude events occur less frequently but can damage mine infrastructure, interrupt operations and threaten worker safety. This thesis explores the relationships between geological structure and mining-induced seismicity through geological, seismological and numerical modelling investigations in an area known as the Creighton Deep, with concentration on the 7400 Level (2255 m).;Seismicity from 2006--2007 is analyzed. Spatial and temporal trends and seismic event parameters show little correlation to shear zone geometry. Instead, seismic event parameters correlate to spatial clusters of events. A remote cluster of events to the southwest of the excavation exhibits anomalously high seismic parameter values. This area of the mine continues to be a source of elevated seismicity.;Fault plane solutions are utilized to compare shear zone geometry with active slip surfaces. Solutions for macroseismic events are inconsistent, while microseismic event focal mechanisms have similar pressure, tension and null axes. The resulting solutions do not align with shear-zone orientations. A stress inversion using microseismic focal mechanism information yields a stress tensor that is comparable to the regional stress tensor.;Universal Distinct Element Code numerical models demonstrate that a yield zone exists immediately surrounding the excavation. SW-striking shear zones modify the stress field, resulting in increased stress to the southeast of the excavation. These high-stress zones are areas of preferred seismic activity. Slip is induced on select SW-striking shear zones to the south of the excavation as well as localized yielding.;Geological features within the Creighton Deep have a reported association with seismic activity. Four families of shear zones were identified during field investigations, the most prominent striking SW and steeply dipping NW.;The characteristics of mining-induced seismicity do not correlate to shear zones. Seismicity does compare to modelled stress: the yielded rock mass adjacent to the excavation has little seismicity; areas of high stress are areas of rock mass damage and dense seismic activity. It is thus proposed that seismicity in the Creighton Deep results from stress-induced rock mass degradation rather than fault-slip.
机译:Creighton矿是一个结构复杂且地震活跃的采矿环境。微地震活动每天发生,并随深度增加而增加,使向下扩展的矿井复杂化。较大事件的发生频率较低,但会损坏矿山基础设施,中断运营并威胁工人安全。本文通过在一个名为Creighton Deep的地区进行了地质,地震和数值模拟研究,探讨了地质结构与采矿诱发的地震活动之间的关系,该地区集中在7400高度(2255 m).;分析了2006--2007年的地震活动。时空趋势和地震事件参数与剪切带几何形状几乎没有相关性。相反,地震事件参数与事件的空间簇相关。开挖西南偏远的事件簇显示异常高的地震参数值。矿山的这一区域仍是地震活动加剧的原因。断层平面解被用来比较剪切带的几何形状与活动滑动面。宏观地震事件的解决方案不一致,而微地震事件的震源机制具有相似的压力,张力和零轴。所得解决方案与剪切区方向不一致。利用微震震源机制信息进行的应力反演会产生与区域应力张量相当的应力张量。通用离散元数值模型表明,开挖周围立即存在屈服区。西南偏冲剪切带改变了应力场,导致开挖东南部的应力增加。这些高应力区是首选地震活动区。在开挖南部的某些西南偏冲剪切带上诱发滑移以及局部屈服。据报道,克赖顿深部的地质特征与地震活动有关。在野外调查过程中,确定了四个剪切带家族,其中最突出的是西南向和北倾陡峭。采矿引起的地震活动特征与剪切带无关。地震作用确实与模拟应力相比较:与开挖相邻的屈服岩体几乎没有地震作用。高应力区域是岩体破坏和密集地震活动的区域。因此,建议克雷顿深部的地震活动性是由应力引起的岩体退化而不是断层滑动引起的。

著录项

  • 作者

    Snelling, Paige Erin.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Geology.;Geophysics.
  • 学位 M.Sc.Eng.
  • 年度 2009
  • 页码 225 p.
  • 总页数 225
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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