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Triggering of earthquake aftershocks by dynamic stresses

机译:动应力触发地震余震

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摘要

It is thought that small 'static' stress changes due to permanent fault displacement can alter the likelihood of, or trigger, earthquakes on nearby faults. Many studies of triggering in the near-field, particularly of aftershocks, rely on these static changes as the triggering agent and consider them only in terms of equivalent changes in the applied load on the fault. Here we report a comparison of the aftershock pattern of the moment magnitude M_w = 7.3 Landers earthquake, not only with static stress changes but also with transient, oscillatory stress changes transmitted as seismic waves (that is, 'dynamic' stresses). Dynamic stresses do not permanently change the applied load and thus can trigger earthquakes only by altering the mechanical state or properties of the fault zone. These dynamically weakened faults may fail after the seismic waves have passed by, and might even cause earthquakes that would not otherwise have occurred. We find similar asymmetries in the aftershock and dynamic stress patterns, the latter being due to rupture propagation, whereas the static stress changes lack this asymmetry. Previous studies have shown that dynamic stresses can promote failure at remote distances, but here we show that they can also do so nearby.
机译:人们认为,由于永久性断层位移引起的微小“静态”应力变化会改变附近断层发生地震或引发地震的可能性。许多有关近场触发(尤其是余震)的研究都依赖于这些静态变化作为触发因素,并且仅根据故障施加载荷的等效变化来考虑它们。在这里,我们报告了矩量级M_w = 7.3兰德斯地震的余震模式的比较,不仅具有静态应力变化,而且具有作为地震波传输的瞬态,振荡应力变化(即“动态”应力)。动应力不会永久改变施加的载荷,因此只能通过改变断层带的机械状态或特性来触发地震。这些动态减弱的断层可能会在地震波通过后失效,甚至可能引起原本不会发生的地震。我们在余震和动态应力模式中发现了类似的不对称性,后者是由于破裂传播而引起的,而静态应力变化缺少这种不对称性。以前的研究表明,动态应力可以促进远距离的破坏,但在这里我们表明,它们也可以在附近破坏。

著录项

  • 来源
    《Nature》 |2000年第6812期|p.570-574|共5页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

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