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Rupture characteristics of large earthquakes.

机译:大地震的破裂特征。

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摘要

The occurrence of many large and/or destructive global earthquakes over the past ten years has provided unprecedented seismic, geodetic, and tsunami recordings that reveal complex rupture processes advancing our understanding of earthquake physics. This thesis research has focused on seismological analysis of recent large earthquakes to extract observational insights that address two fundamental questions, "how do great earthquake rupture?", and "what controls large earthquakes?". We approach these two questions by providing an improved seismological understanding of large earthquake rupture processes, exploring the variation of kinematic source parameters, and placing the ruptures into the context of tectonic plate motions that drive the deformation. Given the great diversity of earthquakes, various seismic tools have been explored to give a better robust characterization of large earthquake ruptures. It includes W-phase point source inversion, back projection of seismic array data to map the space-time distribution of high-frequency coherent seismic radiation, determination of broadband source spectra and radiated energy, waveform inversion for co-seismic finite-source slip distribution, and forward modeling of and joint inversion with tsunami and GPS data. By applying these methods, I have studied large events located in different areas, including 1) megathrusts (subduction zone plate boundaries) along the Japan trench, Middle American Trench, and globally; 2) the large transform fault boundary near Scotia-Sea-Antarctic plate boundary, and 3) intraplate events in subducted slabs near the Philippine trench, at intermediate depth (70-300 km) beneath Rat Island earthquake and in the mantle transition zone (300-700 km) beneath Sea of Okhotsk and Ogasawara Islands. The controlling parameters for earthquake-related hazards (e.g. tsunami and strong ground shaking) and earthquake physical mechanisms (e.g. brittle failure, thermal weakening process, stress transfer) have been investigated with an emphasis on the frequency-dependence seismic radiation.
机译:在过去的十年中,发生了许多大型和/或破坏性的全球地震,这提供了前所未有的地震,大地测量和海啸记录,这些记录揭示了复杂的破裂过程,从而加深了我们对地震物理学的理解。本文的研究集中在对最近大地震的地震学分析上,以提取观察见解,以解决两个基本问题:“大地震如何破裂?”和“如何控制大地震?”。我们通过提供对大地震破裂过程的地震学理解,探索运动源参数的变化以及将破裂置于驱动变形的构造板块运动的背景下来解决这两个问题。考虑到地震的多样性,人们已经探索了各种地震工具来更好地表征大地震破裂。它包括W相点源反演,地震阵列数据的反投影以绘制高频相干地震辐射的时空分布,确定宽带震源谱和辐射能,共震有限震源滑动分布的波形反演,并对海啸和GPS数据进行正演化并进行联合反演。通过应用这些方法,我研究了位于不同区域的大型事件,包括:1)日本海沟,中美洲海沟和全球范围内的巨推力(俯冲带板边界); 2)斯科舍-海-南极板块边界附近的大变形断层边界,以及3)菲律宾海沟附近俯冲板块,拉特岛地震以下中深度(70-300 km)和地幔过渡带(300)的板内事件-700公里)在鄂霍次克海和小gas原群岛下方。研究了与地震有关的危害(例如海啸和强烈的地面震动)的控制参数和地震物理机制(例如脆性破坏,热弱化过程,应力传递)的控制参数,重点是频率依赖的地震辐射。

著录项

  • 作者

    Ye, Lingling.;

  • 作者单位

    University of California, Santa Cruz.;

  • 授予单位 University of California, Santa Cruz.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 404 p.
  • 总页数 404
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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