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Earthquake rupture and ground-motion: The 2004 Mw 6.0 Parkfield earthquake.

机译:地震破裂和地震动:2004年Mw 6.0帕克菲尔德地震。

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摘要

We present a study of the faulting process of the 2004 MW6 Parkfield earthquake and its resulting ground-motion. We use both seismic data alone and a combination of seismic and geodetic data to infer the temporal evolution of slip on the fault plane during the 2004 Parkfield earthquake. The seismic dataset comprises strong-motion accelerograms recorded at 43 sites and the geodetic dataset is composed of 1-Hz GPS displacement records observed at 13 stations. We use the geodetic data to infer the static distribution of slip on the fault. The seismic data serves to retrieve the full space and time evolution of slip. The seismic data is corrected in order to account for site effects. The pattern of ground-motion observed during the 2004 Parkfield earthquake can be partly explained by site effects. Three-dimensional material heterogeneity in the Parkfield region also contribute to the strong shaking observed northwest of the hypocenter (over twice the acceleration of gravity). We employ a non-linear least-squares algorithm to infer the static slip distribution from the geodetic data. We then use the geodetic data to constrain the slip amplitude in a non-linear inversion of the seismic data that yields the complete temporal evolution of slip. The 2004 Parkfield earthquake, as imaged in our model, started with a very strong and localized burst of energy from the hypocenter; here the rupture velocity was very fast. We locate a second region of significant slip northwest of the hypocenter where slip was slower and spread over a region wider than the initial asperity at the hypocenter. Trade-offs between various model parameters result in uncertainties in the faulting models, which we assess using various techniques. We also study the rupture mechanism of the 1966 MW6 Parkfield earthquake. We conclude that the two most recent Parkfield earthquakes do not share identical slip distributions. These two earthquakes actually appear to be more complementary than characteristic. Thus, an extreme interpretation of the characteristic earthquake hypothesis can be rejected for Parkfield based on seismic data.
机译:我们对2004年MW6帕克菲尔德地震的断层过程及其引起的地震动进行了研究。我们单独使用地震数据以及地震和大地测量数据的组合来推断2004年Parkfield地震在断层平面上滑动的时间演变。地震数据集包括在43个站点记录的强运动加速度图,大地测量数据集由在13个站点观测到的1-Hz GPS位移记录组成。我们使用大地测量数据来推断断层滑动的静态分布。地震数据用于检索滑移的完整空间和时间演化。校正地震数据以便考虑现场影响。 2004年帕克菲尔德地震期间观测到的地震动模式可以部分由场地效应来解释。帕克菲尔德地区的三维物质异质性也促进了震源西北部观测到的强烈震动(超过重力加速度的两倍)。我们采用非线性最小二乘算法从大地测量数据推断出静态滑动分布。然后,我们使用大地测量数据来限制地震数据的非线性反演中的滑动幅度,从而得出滑动的完整时间演变。正如我们的模型所反映的,2004年的帕克菲尔德地震始于震源的强烈且局部的能量爆发。这里的破裂速度非常快。我们在震源西北部找到一个明显滑移的第二个区域,滑移较慢,并散布在一个比震源初始凹凸不平的区域上。各种模型参数之间的权衡会导致故障模型的不确定性,我们使用各种技术进行评估。我们还研究了1966年MW6帕克菲尔德地震的破裂机制。我们得出的结论是,最近两次帕克菲尔德地震都没有相同的滑动分布。这两次地震实际上似乎比特征更具互补性。因此,基于地震数据,帕克菲尔德可以拒绝对特征地震假设的极端解释。

著录项

  • 作者单位

    University of California, Santa Barbara.$bGeological Sciences.;

  • 授予单位 University of California, Santa Barbara.$bGeological Sciences.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 262 p.
  • 总页数 262
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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