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Source mechanism of long period events recorded by a high density seismic network during the 2008 eruption on Mount Etna

机译:2008年埃特纳火山喷发期间高密度地震台网记录的长周期事件的震源机制

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摘要

129 Long Period (LP) events, divided into two families of similar events, were recorded by the 50 stations deployed on Mount Etna in the second half of June 2008. During this period lava was flowing from a lateral fracture after a summit strombolian eruption. In order to understand the mechanisms of these events, we perform moment tensor inversions. Inversions are initially kept unconstrained to estimate the most likely mechanism. Numerical tests show that unconstrained inversion leads to reliable moment tensor solutions because of the close proximity of numerous stations to the source positions. However, single forces cannot be accurately determined as they are very sensitive to uncertainties in the velocity model. Constrained inversions for a crack, a pipe or an explosion then allow us to accurately determine the structural orientations of the source mechanisms. Both numerical tests and LP event inversions emphasise the importance of using stations located as close as possible to the source. Inversions for both families show mechanisms with a strong volumetric component. These events are most likely generated by cracks striking SW-NE for both families and dipping 70 degrees SE (Family 1) and 50 degrees NW (Family 2). For Family 1 events, the crack geometry is nearly orthogonal to the dike-like structure along which events are located, while for Family 2 the location gave two pipe-like bodies which belong to the same plane as the crack mechanism. The orientations of the cracks are consistent with local tectonics, which shows a SW-NE weakness direction. The LP events appear to be a response to the lava fountain occurring on the 10th of May, 2008 as opposed to the flank lava flow.
机译:2008年6月下半月,在埃特纳火山上部署的50个台站记录了129个长期事件,分为两个类似的事件系列。在此期间,山顶爆发喷发后,熔岩从侧向裂缝中流出。为了理解这些事件的机制,我们执行矩张量反演。最初保持反演不受约束,以估计最可能的机制。数值试验表明,无约束的反演导致可靠的矩张量解,因为许多台站都非常靠近震源位置。但是,单个力无法精确确定,因为它们对速度模型中的不确定性非常敏感。裂缝,管道或爆炸的约束反演然后使我们能够准确确定源机构的结构方向。数值测试和LP事件反演都强调使用尽可能靠近震源的台站的重要性。两个族的反演都显示出具有强大体积成分的机制。这些事件很可能是由两个家庭的SW-NE裂缝以及东南向70度(家庭1)和西北向50度(家庭2)倾角造成的。对于族1的事件,裂纹的几何形状几乎与事件所沿的堤状结构正交,而对于族2的位置,则给出了两个管状物体,它们与裂纹机制属于同一平面。裂缝的方向与局部构造一致,显示出SW-NE的弱化方向。 LP事件似乎是对2008年5月10日发生的熔岩喷泉的反应,而不是侧面的熔岩流。

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