首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Feedback processes between magmatic events and flank movement at Mount Etna (Italy) during the 2002–2003 eruption
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Feedback processes between magmatic events and flank movement at Mount Etna (Italy) during the 2002–2003 eruption

机译:2002-2003年喷发期间埃特纳火山(意大利)岩浆事件与侧翼运动之间的反馈过程

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The 2002–2003 Mount Etna eruption and the associated deformation provide a unique possibility to study the relationships between volcanism and volcano instability. The sequence started with movement of the eastern volcano flank and was associated with earthquakes and the formation of surface ruptures. Then the eruption occurred from fissures at the north and south rift zones and was followed by additional flank movement, seismic swarms, and surface ruptures. The overall area of flank movement implicated more than 700 km2. In this paper we investigate how episodes of magmatic events (eruptions and intrusions) and flank movement interact. In three-dimensional numerical models we simulate the volcano-tectonic events and calculate changes in the static stress field. The models suggest that the 2002–2003 events are the result of interrelated processes consisting of (1) the preeruptive intrusion of magma and inflation of the volcano, which induced (2) the movement of the volcano east flank, (3) facilitated the eruption, and (4) led to the slip of a much larger part of the eastern and southeastern flanks. Understanding the precise interconnectivity of these processes may help to forecast the behavior during future volcanic crisis at Mount Etna, which is crucial in minimizing volcanic and seismic hazards on the highly populated eastern sector of the volcano.
机译:2002-2003年的埃特纳火山喷发及其相关的变形为研究火山活动与火山不稳定之间的关系提供了独特的可能性。该序列始于东部火山侧面的运动,并与地震和地表破裂的形成有关。然后,喷发是由南北裂谷区的裂隙引起的,随后是额外的侧翼运动,地震群和地表破裂。侧面运动的总面积超过700平方公里。在本文中,我们研究了岩浆事件(喷发和侵入)和后缘运动如何相互作用。在三维数值模型中,我们模拟火山构造事件并计算静态应力场的变化。这些模型表明,2002-2003年的事件是相互关联的过程的结果,这些过程包括(1)喷发前的岩浆侵入和火山膨胀,这引起了(2)火山东翼的运动,(3)促进了喷发(4)导致东部和东南侧的很大一部分滑倒。了解这些过程的精确互连性可能有助于预测埃特纳火山在未来火山危机期间的行为,这对于最大限度地减少人口密集的东部火山区的火山和地震危害至关重要。

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