首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Effects of the 1989 fracture system in the dynamics of the upper SE flank of Etna revealed by volcanic tremor data: The missing link?
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Effects of the 1989 fracture system in the dynamics of the upper SE flank of Etna revealed by volcanic tremor data: The missing link?

机译:火山震颤数据揭示了1989年裂缝系统对埃特纳火山东南SE侧面动力学的影响:缺失的环节?

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Fracture reactivation is a widespread process in nature even though evidence of magma-induced reactivation is less documented. Here we provide evidence of the reactivation of a fracture system on the upper flank of the Mt. Etna volcano and consider its possible implications in understanding the recent volcanic and tectonic activity. A NNW–SSE trending fracture, partly accompanied by magma emplacement in the form of a laterally propagating dike, formed in 1989 on the upper SE flank of Etna. Lava effusions in 1991-1993, 2001, and 2006 were associated with volcano-tectonic (VT) seismicity and ground deformations on the upper part of the volcano, which document the seismogenetic involvement of the 1989 fractures, although without eruptive phenomena along the discontinuity. In addition to the aforementioned episodes of VT seismicity, differences in the characteristics of the background seismic radiation (volcanic tremor) were measured at stations close to these fractures during the eruptive activity on 24 November 2006, for which more detailed volcanological and seismological time histories are available. Moving on from these findings, we analyze volcanic tremor data recorded close to the summit and along the S flank of the volcano to highlight the interactions between seismic radiation and the 1989 fracture system. Centroid location of volcanic tremor and wave field characteristics at stations of the permanent local seismic network of Etna highlight the guidance role played by the 1989 fractures during the eruptive activity on 24 November 2006. In addition, the collected data shed light on hitherto unknown structural features, which appear to connect the volcano summit to the lower SE slope and also play an important role in controlling the instability of the E flank. More generally, this study shows how (1) using an integrated approach, it is possible to link apparently different features to a common structure, showing uniform and distinct dynamics relevant at the volcano scale, and (2) fracture reactivation can also occur by means of magma intrusion, playing an important role in the transfer of magma within a volcanic edifice.
机译:即使很少有文献记载岩浆诱发的再活化的证据,骨折再活化是自然界中一个普遍的过程。在这里,我们提供了山顶上侧断裂系统重新活化的证据。埃特纳火山,并考虑其对了解近期火山和构造活动的潜在影响。 1989年在埃特纳火山东南侧形成的NNW–SSE趋势性骨折,部分伴有岩浆侵入,呈横向传播的堤防形式。 1991-1993年,2001年和2006年的熔岩渗流与火山构造(VT)的地震活动性和火山上部的地面变形有关,尽管1989年的裂缝沿断层没有喷发现象,但它们记录了地震成因。除了上述的VT地震活动外,还于2006年11月24日爆发活动期间在靠近这些裂缝的站点处测量了本底地震辐射(火山震颤)特征的差异,其详细的火山和地震时间历史记录如下:可用。从这些发现出发,我们分析了记录在山顶附近和沿火山S侧面的火山地震数据,以突出地震辐射与1989年裂缝系统之间的相互作用。火山震颤的质心位置和埃特纳火山永久性本地地震台站的波场特征突出显示了1989年的裂缝在2006年11月24日的爆发活动中起的指导作用。此外,收集的数据为迄今未知的结构特征提供了启示,它似乎将火山的山顶连接到东南SE较低的斜坡,并且在控制E侧面的不稳定性方面也起着重要作用。更广泛地说,这项研究表明(1)使用集成方法如何将明显不同的特征链接到一个公共结构,从而显示出与火山规模相关的均匀而独特的动力学,以及(2)裂缝再活化也可以通过以下方式发生:岩浆侵入,在火山大厦内岩浆的转移中起着重要作用。

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