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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Response of Mount Etna to dynamic stresses from distant earthquakes
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Response of Mount Etna to dynamic stresses from distant earthquakes

机译:埃特纳火山对遥远地震动应力的响应

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摘要

Influences of distant earthquakes on volcanic systems by dynamic stress transfer are well documented. We analyzed seismic signals and volcanic activity at Mount Etna during two periods, January 2006 and May 2008, that clearly showed variations coincident with distant earthquakes. In the first period, characterized by mild volcano activity, the effect of the dynamic stress transfer, caused by an earthquake in Greece (M = 6.8), was twofold: (1) banded tremor activity changed its features and almost disappeared; (2) a swarm of volcano-tectonic (VT) earthquakes took place. The changes of the banded tremor were likely due to variations in rock permeability, caused by fluid flows driven by dynamic strain. The VT earthquake swarm probably developed as a secondary process, promoted by the dynamically triggered activation of magmatic fluids. The second period, May 2008, showed an intense explosive activity. During this interval, the dynamic stress transfer, associated with the arrival of the seismic waves of the Sichuan earthquake (M = 7.9), affected the character of the seismo-volcanic signals and on the following day triggered an eruption. In particular, we observed changes in volcanic tremor and increases of both occurrence rate and energy of long period events. In this case, we suggest that dynamic stress transfer caused nucleation of new bubbles in volatile-rich magma bodies with consequent buildup of pressure, highlighted by the increase of long period activity, followed by the occurrence of an eruption. We conclude that stresses from distant earthquakes are capable of modifying the state of the volcano.
机译:充分记录了远距离地震对动应力传递对火山系统的影响。我们分析了埃特纳火山在2006年1月和2008年5月这两个时期的地震信号和火山活动,清楚地显示了与远处地震一致的变化。在第一阶段,以火山活动为特征,希腊地震(M = 6.8)引起的动应力转移效应是双重的:(1)带状地震活动改变了其特征,几乎消失了; (2)发生了火山构造(VT)地震。带状震颤的变化可能是由于岩石渗透率的变化所致,这是由动态应变驱动的流体流动引起的。 VT地震群可能是由岩浆流体的动态触发活化推动的第二过程。第二阶段,2008年5月,显示出强烈的爆炸活动。在此间隔内,与四川地震(M = 7.9)地震波的到来有关的动态应力传递影响了地震火山信号的特性,并在第二天引发了喷发。特别是,我们观察到了火山震颤的变化以及长期事件的发生率和能量的增加。在这种情况下,我们建议动态应力转移引起富含挥发物的岩浆体中新气泡的成核,并随之形成压力,长期活动的增加突显了喷发的发生。我们得出的结论是,来自遥远地震的应力能够改变火山的状态。

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