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An Automated Approach for the Determination of the Seismic Moment Tensor in Mining Environments.

机译:确定采矿环境中地震矩张量的自动化方法。

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摘要

A study was undertaken to evaluate an automated process to invert for seismic moment tensors from seismic data recorded in mining environments. The data for this study was recorded at Nickel Rim South mine, Sudbury, Ontario.;The mine has a seismic monitoring system manufactured by ESG Solutions that performs continuous monitoring of seismicity. On average, approximately 400 seismic events are recorded each day. Currently, data are automatically processed by ESG Solution's software suite during acquisition. The automatic processors pick the P- and/or S-wave arrivals, locate the events and solve for certain source parameters, excluding the seismic moment tensor. In order to solve for the moment tensor, data must be manually processed, which is laborious and therefore seldom performed.;This research evaluates an automatic seismic moment tensor inversion method and demonstrates some of the difficulties (through inversions of real and synthetic seismic data) of the inversion process. Results using the method are also compared to the inversion method currently available from ESG Solutions, which requires the manual picking of first-motion polarities for every event.;As a result of the extensive synthetic testing of the automatic inversion program, as well as the inversion of real seismic data, it is apparent that there are key parameters requiring greater accuracy in order to increase the reliability of the automation. These parameters include the source time function definition, source location (in turn requiring more accurate and precise knowledge of the earth media), arrival time picks and an attenuation model to account for ray-path dependent filtering of the source time function. In order to improve the automatic method three key pieces of research are needed: (1) studying various location algorithms (and the effects of increasing earth model intricacy) and automatic time picking to improve source location methods, (2) studying how the source time pulse can be accurately extracted from the seismic records, as well as the validity of various source models, and (3) studying how attenuation can be modeled more accurately to account for the filtering of the seismic waves through the earth media (in particular distortion to the source time function).
机译:进行了一项研究,以评估一种自动过程,该过程可以根据采矿环境中记录的地震数据来求出地震矩张量。这项研究的数据记录在安大略省萨德伯里的Nickel Rim South矿山上;该矿山拥有由ESG Solutions生产的地震监测系统,该系统可以对地震活动进行连续监测。每天平均记录约400次地震事件。当前,数据在获取过程中由ESG Solution的软件套件自动处理。自动处理器选择P波和/或S波到达,定位事件并求解某些震源张量(地震矩张量除外)。为了解决矩张量,必须手工处理数据,这很费力,因此很少执行。本研究评估了一种自动地震矩张量反演方法并证明了一些困难(通过对真实和合成地震数据进行反演)反转过程。还将该方法的结果与ESG Solutions当前可用的反演方法进行了比较,后者需要为每个事件手动选择第一动极性。由于对自动反演程序进行了广泛的综合测试,并且在对实际地震数据进行反演时,很明显,有些关键参数需要更高的准确度才能提高自动化的可靠性。这些参数包括源时间函数定义,源位置(进而需要更精确地了解地球介质),到达时间选择和衰减模型,以说明源时间函数的依赖于射线路径的滤波。为了改进自动方法,需要进行三项关键研究:(1)研究各种定位算法(以及增加地球模型复杂度的影响)和自动时间选择以改进源定位方法;(2)研究源时间如何可以从地震记录中准确提取脉冲,以及各种震源模型的有效性,以及(3)研究如何更精确地建模衰减,以说明地震波通过地球介质的过滤(特别是对地震波的失真)。源时间功能)。

著录项

  • 作者

    Wamboldt, Lawrence R.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Geophysics.;Engineering Mining.
  • 学位 M.A.Sc.
  • 年度 2012
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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