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Distribution, origin and implications of seismic stress release in shallow and intermediate-depth subduction systems.

机译:浅,中深度俯冲系统中地震应力释放的分布,成因及意义。

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摘要

A characterization of focal mechanisms is developed for shallow and intermediate-depth earthquakes in the context of the local geometry of subduction systems. Its application to the Ryukyu-Taiwan-Luzon system is used to refine the spatial distribution of characteristic groups of earthquakes in the framework of local tectonic processes, such as flipping of the polarity of subduction and the nascent processes of arc-continent collision.; The Harvard catalogue of Centroid Moment Tensor solutions is expanded to include intermediate-depth earthquakes from the WWSSN-HGLP era (1962–1975). Seventy-six new solutions are obtained, with the resulting dataset estimated to be complete for M0 ≥ 1026 dyn-cm. While source mechanisms from our new dataset are generally similar to those previously compiled in the Harvard catalogue, seismic moment release rates are found to be significantly smaller for the WWSSN era.; The intermediate-depth seismicity of South America is compiled from the Harvard catalogue, using projection along local slab coordinates, to determine along-strike variations in the distribution of earthquakes and in the geometry of their stress release. Slab geometry is investigated in relation to slab stresses and the presence or absence of arc volcanism. Steeper-dipping slabs are found to exhibit consistent down-dip extension, a higher rate of seismic moment release and surface volcanism.; Visualization using slab coordinate projections is extended systematically to a global survey of the geometry of stress release in intermediate-depth earthquakes. Various proposed models for all subduction zones are appraised, as contributors to stress regimes, based on global data compilations. Down-dip stresses, where prominent, are found to be consistent with the thermo-mechanical and petrological force models. Slab-normal conjugate stresses generally support the concept of earthquake reactivation of fossil faults. Patterns of lateral stresses support the predictions of the so-called “punctured-ping-pong-ball” model.
机译:在俯冲系统的局部几何背景下,针对浅层和中深度地震开发了震源机制的特征。其在琉球-台湾-吕宋系统中的应用被用于在局部构造过程的框架内,例如俯冲的极性翻转和弧-大陆碰撞的新生过程,细化地震特征群的空间分布。哈佛矩心张量解的目录被扩展到包括WWSSN-HGLP时代(1962–1975)的中深度地震。获得了76个新解,估计得出的数据集对于 M 0 ≥10 26 dyn-cm是完整的。虽然我们新数据集中的震源机制与哈佛目录中以前汇编的震源机制大致相似,但发现在WWSSN时代,地震矩释放速率要小得多。南美的中深度地震活动是根据哈佛大学目录编制的,使用沿当地平板坐标的投影来确定地震分布和应力释放几何形状的沿震变化。研究平板几何形状与平板应力以及是否存在弧形火山作用有关。发现更陡的平板表现出一致的向下倾斜延伸,较高的地震矩释放率和地表火山作用。使用平板坐标投影的可视化已系统地扩展到对中深度地震中应力释放几何形状的全局调查。基于全球数据汇编,对所有俯冲带提出的各种模型进行了评估,以作为缓解压力的因素。垂下应力在突出之处与热机械和岩石力模型一致。平板正态共轭应力通常支持化石断层的地震再激活的概念。横向应力的模式支持所谓的“穿刺乒乓球”模型的预测。

著录项

  • 作者

    Chen, Po-Fei.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 149 p.
  • 总页数 149
  • 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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