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Magma dynamics within a basaltic conduit revealed by textural and compositional features of erupted ash: the December 2015 Mt. Etna paroxysms

机译:火山灰的纹理和成分特征揭示了玄武岩导管内的岩浆动力学:2015年12月。发作性发作

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摘要

In December 2015, four violent explosive episodes from Mt. Etna’s oldest summit crater, the Voragine, produced eruptive columns extending up to 15 km a.s.l. and significant fallout of tephra up to a hundred km from the vent. A combined textural and compositional study was carried out on pyroclasts from three of the four tephra deposits sampled on the volcano at 6 to 14 km from the crater. Ash fractions (Φ = 1–2) were investigated because these grain sizes preserve the magma properties unmodified by post- emplacement processes. Results were used to identify processes occurring in the conduit during each single paroxysm and to understand how they evolve throughout the eruptive period. Results indicate that the magmatic column is strongly heterogeneous, mainly with respect to microlite, vescicle content and melt composition. During each episode, the heterogeneities can develop at time scales as short as a few tens of hours, and differences between distinct episodes indicate that the time scale for completely refilling the system and renewing magma is in the same order of magnitude. Our data also confirm that the number and shape of microlites, together with melt composition, have a strong control on rheological properties and fragmentation style.
机译:2015年12月,山中发生了四次暴力爆炸事件。埃特纳火山最古老的火山口沃拉贡(Voragine)产生了喷发柱,延伸速度达15千米/小时。以及距发泄孔一百公里处的特非拉有明显的沉降。从火山口6至14公里处的火山中取样的四个特非拉沉积物中的三个,对火山碎屑岩进行了结构和成分的组合研究。研究了灰分(Φ= 1-2),因为这些晶粒尺寸保留了后置过程未改变的岩浆特性。结果被用来识别每个单个阵发期间导管中发生的过程,并了解它们在整个爆发期如何演变。结果表明,岩浆柱具有很强的非均质性,主要在微晶岩,囊泡含量和熔体组成方面。在每个事件中,异质性可能会在短短几十小时的时间尺度上发展,并且不同事件之间的差异表明,完全充满系统和更新岩浆的时间尺度处于相同的数量级。我们的数据还证实,微晶的数量和形状以及熔体组成对流变特性和碎裂方式具有很强的控制力。

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