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Parallel-line beamsteering for enhanced anomaly detection.

机译:平行线光束控制可增强异常检测能力。

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摘要

Parallel-line beamsteering, a new seismic processing method, was developed to enhance signal from laterally continuous heterogeneities (e.g. tunnel, mine shaft, etc.) and attenuate scatter from localized non-laterally contiguous heterogeneities (e.g. clay lens, boulder, etc.). This method takes advantage of the linear cross line nature of potential targets. Parallel-line beamsteering applies spatial shifting and vertical stacking to parallel-line seismic data in combination with backscatter analysis of surface waves (BASW) and diffraction imaging processing. A processing flow that optimizes the stack and shift process was empirically determined using the standard BASW and diffraction imaging processing flows. This empirically established processing flow was evaluated on parallel-line data acquired at a tunnel test site at the Yuma Proving Grounds in southwestern Arizona. Results show that this method enhances signal from the tunnel by as much 2.8 dB and attenuates other scatter events by as much as 3.9 dB. Beamsteering analysis also reduced the number of possible tunnel locations interpreted from diffraction imaging results using standard interpretation based on spatial matching criteria by up to 66% and from the BASW imaging results by up to 50%. Interpreting results of parallel-line beamsteering requires a less skilled interpretation than conventional tunnel detection methods. This method can also be used to determine the orientation of a tunnel with respect to the two seismic lines. Additionally, this method maintains the small acquisition footprint of current 2D seismic methods required for tunnel detection applications.
机译:平行线束转向是一种新的地震处理方法,旨在增强横向连续异质性(例如,隧道,矿井等)的信号,并减弱局部非横向连续异质性(例如,粘土透镜,巨石等)的散射。 。该方法利用了潜在目标的线性交叉线特性。平行线波束导向结合了表面波的反向散射分析(BASW)和衍射成像处理,将空间平移和垂直叠加应用于平行线地震数据。使用标准BASW和衍射成像处理流程凭经验确定了优化堆栈和移位过程的处理流程。根据在亚利桑那州西南部尤马试验场的隧道试验场获得的平行线数据,评估了凭经验建立的处理流程。结果表明,该方法将来自隧道的信号增强了2.8 dB,并将其他散射事件衰减了3.9 dB。使用基于空间匹配标准的标准解释,光束转向分析还可以将衍射成像结果解释的可能的隧道位置数量减少多达66%,而BASW成像结果则减少多达50%。与传统的隧道检测方法相比,解释平行线波束控制的结果所需的技能要差一些。该方法还可以用于确定隧道相对于两条地震线的方向。另外,此方法保持了隧道检测应用所需的当前2D地震方法的较小采集足迹。

著录项

  • 作者

    Livers, Amanda Jordan.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Geophysics.
  • 学位 M.S.
  • 年度 2016
  • 页码 95 p.
  • 总页数 95
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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