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The shallow magma pathway geometry at Mt. Etna volcano

机译:mt.的浅岩浆路径几何埃特纳火山

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摘要

A fundamental goal of volcano seismology is to understand the dynamics of active magmatic systems in order to assess eruptive behavior and the associated hazard. Imaging of magma conduits, quantification of magma transport and investigation of long-period seismic sources, together with their temporal variations, are crucial for the comprehension of eruption-triggering mechanisms. At Mt. Etna volcano, several intense episodes of tremor activity were recorded during 2007, in association with strombolian activity and/or intense fire fountaining episodes occurring from the South East Crater (SEC). The locations of the tremor sources and of the long-period seismic events are used here to constrain both the area and the depth range of magma degassing, highlighting the geometry of the shallow conduits feeding SEC. The imaged conduits consist of two connected resonating dike-like bodies, NNW-SSE and NW-SE oriented, extending from sea level to the surface. In addition, we show how tremor, long-period (LP) and very-long-period (VLP) event locations and signatures reflect pressure fluctuations in the plumbing system associated with the ascent/discharge of gas-rich magma linked to the lava fountains. The evidence here reported, also corroborated by ground deformation variations, can help develop a better prediction and early-warning system for those eruptions (effusive or explosive) that apparently manifest no clear precursors.
机译:火山地震学的基本目标是了解活跃岩浆系统的动力学,以便评估喷发行为和相关危害。岩浆导管的成像,岩浆运移的量化和长期地震源的调查以及它们的时间变化,对于理解火山爆发触发机制至关重要。在山埃特纳火山(Etna volcano),在2007年期间记录了数次剧烈的震颤活动,同时还伴有爆发性活动和/或东南火山口(SEC)发生的强烈火源。震源的位置和长期地震事件的位置在这里用来限制岩浆脱气的面积和深度范围,突出了输送SEC的浅层导管的几何形状。成像的导管由两个相连的共振堤状体(NNW-SSE和NW-SE定向)组成,从海平面延伸到地面。此外,我们展示了震颤,长周期(LP)和超长周期(VLP)事件的位置和特征如何反映与熔岩喷泉相连的富气岩浆的上升/释放相关的管道系统中的压力波动。 。此处报道的证据也得到了地面变形的影响,可以帮助为那些显然没有明显前兆的喷发(发散性或爆炸性)建立更好的预测和预警系统。

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