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Advances in Understanding Intrusive, Explosive and Effusive Processes as Revealed by the Borehole Dilatometer Network on Mt. Etna Volcano

机译:理解钻孔膨胀仪网络揭示的侵扰性,爆炸性和散发流程的进步,如钻孔膨胀仪网络在MT.TATNA火山上透露

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摘要

For detecting below surface sources of deformation, strain measurements offer a very large advantage (orders of magnitude) in sensitivity over displacement measurements. On active volcanoes an intriguing open challenge is to measure the strain variations caused by the different types of eruptive activity with the highest possible precision in order to obtain advantages on the clear detecting of phenomena, their modeling and understanding. We present the updated main results obtained from the high precision strain recorded by the borehole dilatometer network on Mt. Etna volcano. The instruments, installed from the end of 2011, detected significant changes during different types of eruptive activity: several lava fountains during 2011–2014; two explosive sequences in 2015 and 2016; moderate effusive activity in 2017 and a dike intrusion in 2018. The strain changes provided powerful diagnostic information on the different ongoing processes, and allowed us to add key information on the different eruptive styles and sources. We also highlight how the recorded signals, with the associated modeling and interpretation, provide a powerful contribution to surveillance requirements on an active volcano. This report demonstrates that the borehole dilatometer network represents a useful tool both for the understanding of the volcano processes and for surveillance needs.
机译:用于检测低于变形的表面光源,应变测量在过位移测量灵敏度而提供一个非常大的优点(数量级)。上活火山一个有趣的公开挑战是测量,以获得上的现象,其建模和理解的清楚检测优点引起不同类型的具有最高可能精度喷发活动的应变变化。我们提出通过从上埃特纳火山钻孔膨胀计网络记录高精度菌株获得更新的主要结果。的仪器,从2011年底安装,检测过程中不同类型的喷发活动的显著变化:在2011 - 2014年几个熔岩喷泉;在2015年和2016年两个爆炸序列;适度在2017年热情洋溢的活动,2018年设在不同的正在进行的进程强大的诊断信息的应变变化堤防入侵,并允许我们增加对不同的喷发样式和来源的关键信息。我们还强调如何记录的信号,与相关的模拟和解释,提供一座活火山,以监控需求的强大贡献。这份报告表明,钻孔膨胀计网络既代表了火山过程的了解和监控需求的有用工具。

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