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Improving Regional Seismic Event Location in China

机译:改善中国区域地震事件的位置

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摘要

— In an effort to improve our ability to locate seismic events in China using only regional data, we have developed empirical propagation path corrections and applied such corrections using traditional location routines. Thus far, we have concentrated on corrections to observed P arrival times for crustal events using travel-time observations available from the USGS Earthquake Data Reports, the International Seismic Centre Bulletin, the preliminary International Data Center Reviewed Event Bulletin, and our own travel-time picks from regional data. Location ground truth for events used in this study ranges from 25 km for well-located teleseimic events, down to 2 km for nuclear explosions located using satellite imagery. We also use eight events for which depth is constrained using several waveform methods. We relocate events using the EvLoc algorithm from a region encompassing much of China (latitude 20°–55°N; longitude 65°–115°E). We observe that travel-time residuals exhibit a distance-dependent bias using IASPEI91 as our base model. To remedy this bias, we have developed a new 1-D model for China, which removes a significant portion of the distance bias. For individual stations having sufficient P-wave residual data, we produce a map of the regional travel-time residuals from all well-located teleseismic events. Residuals are used only if they are smaller than 10 s in absolute value and if the seismic event is located with accuracy better than 25 km. From the residual data, correction surfaces are constructed using modified Bayesian kriging. Modified Bayesian kriging offers us the advantage of providing well-behaved interpolants and their errors, but requires that we have adequate error estimates associated with the travel-time residuals from which they are constructed. For our P-wave residual error estimate, we use the sum of measurement and modeling errors, where measurement error is based on signal-to-noise ratios when available, and on the published catalog estimate otherwise. Our modeling error originates from the variance of travel-time residuals for our 1-D China model. We calculate propagation path correction surfaces for 74 stations in and around China, including six stations from the International Monitoring System. The statistical significance of each correction surface is evaluated using a cross-validation technique. We show relocation results for nuclear tests from the Balapan and Lop Nor test sites, and for earthquakes located using interferometric synthetic aperture radar. These examples show that the use of propagation path correction surfaces in regional relocations eliminates distance bias in the residual curves and significantly improves the accuracy and precision of seismic event locations.
机译:—为了提高仅使用区域数据定位中国地震事件的能力,我们开发了经验传播路径校正,并使用传统的定位程序进行了校正。到目前为止,我们已经集中了使用USGS地震数据报告,国际地震中心公告,国际数据中心初步审查的事件公告以及我们自己的旅行时间获得的旅行时间观测值对地壳事件观测到的P到达时间的校正。从区域数据中挑选。本研究中使用的事件的地面实测范围从位置良好的遥感事件的25 km到使用卫星图像定位的核爆炸的2 km。我们还使用了八个事件,这些事件的深度受到几种波形方法的限制。我们使用EvLoc算法从整个中国大部分地区(北纬20°-55°;东经65°-115°E)重新定位事件。我们观察到,使用IASPEI91作为我们的基础模型,旅行时残差表现出与距离有关的偏差。为了纠正这种偏差,我们为中国开发了一种新的一维模型,该模型消除了很大一部分距离偏差。对于具有足够P波残差数据的单个台站,我们生成了所有位置良好的地震事件的区域传播时间残差图。仅当残差的绝对值小于10 s,并且地震事件的准确度高于25 km时,才使用残差。根据残差数据,使用改进的贝叶斯克里金法构造校正曲面。改进的贝叶斯克里金法为我们提供了提供行为良好的插值法及其误差的优势,但要求我们具有与构造它们的行进时间残差相关的足够的误差估计。对于我们的P波残留误差估计,我们使用测量误差和建模误差的总和,其中测量误差基于信噪比(如果可用),否则基于已发布的目录估计。我们的建模误差源自我们一维中国模型的旅行时间残差的方差。我们计算了中国及周边地区74个站点(包括来自国际监测系统的6个站点)的传播路径校正面。使用交叉验证技术评估每个校正表面的统计显着性。我们显示了Balapan和Lop Nor测试地点的核试验以及使用干涉式合成孔径雷达定位的地震的搬迁结果。这些示例表明,在区域重定位中使用传播路径校正表面可以消除残留曲线中的距离偏差,并显着提高地震事件定位的准确性和精度。

著录项

  • 来源
    《Pure and Applied Geophysics》 |2001年第2期|211-240|共30页
  • 作者单位

    Los Alamos Seismic Research Center EES-3 MS D408 Los Alamos National Laboratory Los Alamos NM 87545 USA. E-mail: lsteck@lanl.gov;

    Los Alamos Seismic Research Center EES-3 MS D408 Los Alamos National Laboratory Los Alamos NM 87545 USA. E-mail: lsteck@lanl.gov;

    Los Alamos Seismic Research Center EES-3 MS D408 Los Alamos National Laboratory Los Alamos NM 87545 USA. E-mail: lsteck@lanl.gov;

    Los Alamos Seismic Research Center EES-3 MS D408 Los Alamos National Laboratory Los Alamos NM 87545 USA. E-mail: lsteck@lanl.gov;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Key words: Seismic; location; China; kriging; regional.;

    机译:关键字:地震;位置;中国;克里格区域性。;

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