...
首页> 外文期刊>Nature geoscience >Early and persistent supershear rupture of the 2018 magnitude 7.5 Palu earthquake
【24h】

Early and persistent supershear rupture of the 2018 magnitude 7.5 Palu earthquake

机译:早期和持续的超前的超声破裂2018级7.5 Palu地震

获取原文
获取原文并翻译 | 示例
           

摘要

The speed at which an earthquake rupture propagates affects its energy balance and ground shaking impact. Dynamic models of supershear earthquakes, which are faster than the speed of shear waves, often start at subshear speed and later run faster than Eshelby's speed. Here we present robust evidence of an early and persistent supershear rupture at the sub-Eshelby speed of the 2018 magnitude 7.5 Palu, Indonesia, earthquake. Slowness-enhanced back-projection of teleseismic data provides a sharp image of the rupture process, along a path consistent with the surface rupture trace inferred by subpixel correlation of synthetic-aperture radar and satellite optical images. The rupture propagated at a sustained velocity of 4.1 km s(-1) from its initiation to its end, despite large fault bends. The persistent supershear speed is further validated by seismological evidence of far-field Rayleigh Mach waves. The unusual features of this earthquake probe the connections between the rupture dynamics and fault structure. An early supershear transition could be promoted by fault roughness near the hypocentre. Steady rupture propagation at a speed unexpected in homogeneous media could result from the presence of a low-velocity damaged fault zone.
机译:地震破裂传播的速度会影响其能量平衡和地面震动冲击。超清地震的动态模型,比剪切波的速度快,速度速度速度速度速度速度速度通常比eShelby的速度快。在这里,我们提出了稳健的证据,即在2018年左右的速度下的早期和持续的超级破裂的证据。减缓 - 增强的反对突出的反投影提供了破裂过程的尖锐图像,沿着通过合成孔径雷达和卫星光学图像的子像素相关的亚像素相关性地推断的路径。尽管大断线弯曲,但断裂以4.1km S(-1)的持续速度从4.1 km s(-1)的持续速度繁殖。通过远场Rayleigh Mach波的地震证据进一步验证了持久的超级速度。这种地震的不寻常特征探讨了破裂动力学和故障结构之间的连接。早期的超级过渡可以通过低转力的故障粗糙度促进。均匀介质中速度意外的稳定破裂传播可能是由于低速损坏断层区域的存在导致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号