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重复发生的深源地震:极深处断层再活化的证据。

Repeating deep earthquakes: evidence for fault reactivation at great depth.

作者信息

Wiens D A, Snider N O

机构信息

Department of Earth and Planetary Sciences, Washington University, St. Louis, MO 63130, USA.

出版信息

Science. 2001 Aug 24;293(5534):1463-6. doi: 10.1126/science.1063042.

Abstract

We have identified three groups of deep earthquakes showing nearly identical waveforms in the Tonga slab. Relocation with a cross-correlation method shows that each cluster is composed of 10 to 30 earthquakes along a plane 10 to 30 kilometers in length. Some of the earthquakes are colocated, demonstrating repeated rupture of the same fault, and one pair of events shows identical rupture complexity, suggesting that the temporal and spatial rupture pattern was repeated. Recurrence intervals show an inverse time distribution, indicating a strong temporal control over fault reactivation. Runaway thermal shear instabilities may explain temporally clustered earthquakes with similar waveforms located along slip zones weakened by shear heating. Earthquake doublets that occur within a few hours are consistent with events recurring before the thermal energy of the initial rupture can diffuse away.

摘要

我们在汤加板块中识别出了三组深部地震,它们显示出几乎相同的波形。采用互相关方法重新定位后发现,每个地震群由沿着长度为10至30公里的平面分布的10至30次地震组成。其中一些地震位置重合,表明同一断层发生了重复破裂,还有一对地震显示出相同的破裂复杂性,这表明破裂的时间和空间模式是重复的。复发间隔呈现逆时分布,表明对断层再激活存在强烈的时间控制。失控的热剪切不稳定性可能解释了沿着因剪切加热而弱化的滑动带分布的、具有相似波形的时间上成簇的地震。在数小时内发生的双震与初始破裂的热能扩散之前就再次发生的事件是一致的。

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