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Utilizing a single three-component geophone to detect near-surface seismic sources for military, exploration, and engineering applications.

机译:利用单个三分量地震检波器来检测近地表地震源,以用于军事,勘探和工程应用。

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摘要

Locating a seismic source with an unknown origin time using one three-component (3C) geophone is examined in this study. A series of twelve shots (sledgehammer impacts) were made in a degree-marked, semi-circular pattern at distances of 10 and 20 m from a single three-component geophone. Arrival times and wave form data from these shots were placed into random filenames to ensure a "blind" test, and then examined to try and determine the source direction and distance from the recording sensor. Distances were calculated utilizing the difference in arrival time between the critically refracted P wave and the Rayleigh wave, and shot azimuths were found through the use of 1st quarter cycle hodographs (horizontal particle motion graphs). P- and Rayleigh-wave velocities were obtained using conventional refraction surveys and other calibration shots. Eleven of the twelve "distance-surveys" predicted source distances with 10% or less error, and eight of the ten "radial-surveys" predicted shot azimuths (sometimes called "backazimuths") within 7° or less error. The ability to acquire data through this method, potentially in real-time, creates many new possibilities for the use of three-component data acquisition and analysis in military applications, energy resource exploration, and engineering.
机译:在这项研究中,研究了使用一个三分量(3C)地震检波器定位未知起源时间的地震源。在距单个三分量检波器10到20 m的距离处,以度标记的半圆形图案拍摄了一系列十二发子弹(大锤撞击)。来自这些镜头的到达时间和波形数据被放入随机文件名中以确保进行“盲”测试,然后进行检查以尝试确定源方向和距记录传感器的距离。利用临界折射的P波和瑞利波之间的到达时间差来计算距离,并通过使用第1个四分之一周期全息图(水平粒子运动图)来找到散布方位角。使用常规的折射测量和其他校准镜头可获得P波和瑞利波的速度。十二个“距离调查”中的十一个预测源距离,误差不超过10%,十个“径向调查”中的八个预测射角方位角(有时称为“反方位角”)在7°或更小范围内。通过这种方法潜在地实时获取数据的能力为在军事应用,能源资源勘探和工程中使用三组分数据获取和分析创造了许多新的可能性。

著录项

  • 作者

    Bramnik, M. L.;

  • 作者单位

    Northern Illinois University.;

  • 授予单位 Northern Illinois University.;
  • 学科 Geophysics.;Military Studies.;Engineering Geophysical.
  • 学位 M.S.
  • 年度 2012
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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