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Creating the virtual seismologist: Developments in ground motion characterization and seismic early warning.

机译:创建虚拟地震学家:地面运动表征和地震预警方面的发展。

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摘要

The Virtual Seismologist method for earthquake early warning uses a Bayesian approach to find the most probable magnitude and location estimates given incoming ground motions envelopes from a rupturing earthquake. Ground motion ratios and envelope attenuation relationships are used to estimate magnitude and epicentral location as early as 3 seconds after the initial P-wave detection. The use of prior information distinguishes this method from other proposed methods for seismic early warning. The state of health of the seismic network, previously observed seismicity, fault locations, and the Gutenberg-Richter relationship are types of prior information useful in resolving trade-offs in the initial source estimates which are unresolved by the limited data. Short-term earthquake forecasts are ideal priors for seismic early warning.; A high density of stations with real-time telemetry reduces the complexity in finding the most probable source estimates and communicating these estimates to early warning subscribers. The benefits of prior information are most evident for regions with low station density. Most early warning studies are focused exclusively on either the source estimation problem, or how subscribers use the warning information. The inclusion of prior information requires a level of communication between the network broadcasting the warning information and the subscribers inconsistent with this divide. A more integrated approach to seismic early warning, where the source estimation and user response are treated as a single problem, is discussed.; A parameterization that decomposes observed ground motion envelopes into P-wave, S-wave, and ambient noise envelopes is developed and applied to ground motion envelopes recorded within 200 km of 2 ≤ M ≤ 7.3 Southern California earthquakes. Separate attenuation relationships are developed to describe the magnitude, distance, and site dependence of various channels of P- and S-wave envelopes. The P-wave relationships allow early warning source estimates to be obtained from observed P-wave amplitudes. Aside from early warning applications, these envelope attenuation relationships are used to investigate the average properties of ground motions recorded by the Southern California Seismic Network. Station-specific amplification factors for 150 Southern California Seismic Network stations are obtained for horizontal and vertical peak P- and S-wave acceleration, velocity, and displacement amplitudes.
机译:对于地震预警,虚拟地震学家方法使用贝叶斯方法来找到最可能发生的震级和位置估计值,这是由于地震破裂而传入的地面运动包络。地面运动比和包络线衰减关系最早在初始P波探测后3秒钟就用于估算震级和震中位置。先验信息的使用将这种方法与其他提议的地震预警方法区分开来。地震网络的健康状态,先前观察到的地震活动性,断层位置以及古腾堡-里希特关系是可用于解决初始震源估算折衷问题的先验信息类型,而有限的数据无法解决这些问题。短期地震预报是进行地震预警的理想先决条件。具有实时遥测功能的高密度站降低了查找最可能的源估算并将这些估算传达给预警用户的复杂性。先验信息的好处在站密度低的地区最为明显。大多数早期预警研究专门针对源估计问题或订户如何使用警告信息。包含先验信息需要在广播警告信息的网络与订户之间进行一定程度的通信,这与这种划分相矛盾。讨论了一种更综合的地震预警方法,其中将震源估算和用户响应视为一个问题。制定了将观察到的地面运动包络分解为P波,S波和环境噪声包络的参数,并将其应用于记录在2≤M≤7.3南加州地震的200 km内的地面运动包络。建立了单独的衰减关系来描述P波和S波包络的各个通道的大小,距离和位置依赖性。通过P波关系,可以从观察到的P波振幅获得预警源估计。除了预警应用之外,这些包络衰减关系还用于调查南加州地震台网记录的地震动的平均特性。针对水平和垂直峰值P和S波加速度,速度和位移振幅,获得了150个南加州地震台站的特定于站的放大因子。

著录项

  • 作者

    Cua, Georgia B.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Geophysics.; Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 371 p.
  • 总页数 371
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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