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Volcanic tremors: Good indicators of change in plumbing systems during volcanic eruptions

机译:火山震颤:火山爆发时管道系统变化的良好指标

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摘要

Geophysical and geochemical signals recorded during episodes of unrest preceding volcanic eruptions provide information on movements of magma inside the lithosphere and on how magma prepares to reach the surface. When the eruption ensues continuous volcanic monitoring can reveal the nature of changes occurring in the volcano's plumbing system, which may be correlated with changes in both eruption behaviour and products. During the 2011-2012 submarine eruption of El Hierro (Canary Islands), the seismic signal, surface deformation, a broad stain on the sea surface of the eruption site, and the occasional appearance of floating lava balloons and pyroclastic fragments were the main observable signs. A strong continuous tremor in the vent accompanied the eruption and varied significantly in amplitude, frequency and dynamical parameters. We analysed these variations and correlated them with changes in the distribution of earthquakes and in the petrology of the erupting magma. This enabled us to relate variations in tremors to changes in the (ⅰ) stress conditions of the plumbing system, (ⅱ) dimensions of the conduit and vent, (ⅲ) intensity ofthe explosive episodes, and (ⅳ) rheological changes in the erupting magma. The results obtained show how the tremor signal was strongly influenced by stress changes in the host rock and in the rheological variations in the erupting magma. We conclude that the tracking of real-time syn-eruptive tremor signals via the observation of variations in plumbing systems and magma physics is a potentially effective tool for interpreting eruption dynamics, and suggest that similar variations observed in pre-eruptive tremors will have a similar origin.
机译:火山爆发前的动荡事件期间记录的地球物理和地球化学信号提供了有关岩石圈内部岩浆运动以及岩浆如何准备到达地面的信息。当喷发发生时,连续的火山监测可以揭示火山管道系统中发生的变化的性质,这可能与喷发行为和产品的变化有关。在2011年至2012年El Hierro(加那利群岛)的海底火山喷发期间,地震信号,地表变形,喷发地点海面上的大污点以及偶尔出现的漂浮熔岩气球和火山碎屑碎片是可观察到的主要迹象。喷口伴有强烈的连续震颤,其幅度,频率和动力学参数变化很大。我们分析了这些变化,并将它们与地震分布和岩浆喷发岩石学的变化联系起来。这使我们能够将震颤的变化与(ⅰ)管道系统的应力条件,(ⅱ)管道和通风口的尺寸,(ⅲ)爆炸事件的强度以及(ⅳ)喷出岩浆的流变变化相关联。所获得的结果表明,震颤信号是如何受到宿主岩石中应力变化和喷出岩浆流变学变化的强烈影响的。我们得出的结论是,通过观测管道系统和岩浆物理学的变化来跟踪实时增发性震颤信号是解释喷发动力学的潜在有效工具,并表明在喷发前震颤中观察到的类似变化将具有相似的特征。起源。

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    Group of Volcanology (GVB-CSIC), SIMCEO (UB-CSIC), Institute of Earth Sciences Jaume Abnera, Lluis Sole Sabaris s, 08028 Barcelona, Spain;

    Group of Volcanology (GVB-CSIC), SIMCEO (UB-CSIC), Institute of Earth Sciences Jaume Abnera, Lluis Sole Sabaris s, 08028 Barcelona, Spain;

    Observatorio Geofisico Central, Institute Geografico National (IGN), c/Alfonso ⅩⅡ, 3,28014 Madrid, Spain;

    Laboratorio di Misure e Trattamento dei Segnali, DICA - Universita di Udine, Via delle Scienze, 206-33100 Udine, Friuli, Italy,Geognosis Proj., Int. Syst. Lab, National Research University of Information Technologies, Mechanics and Optics, Kronverksky Prospect, 49, St. Petersburg 197101, Russia;

    Observatorio Geofisico Central, Institute Geografico National (IGN), c/Alfonso ⅩⅡ, 3,28014 Madrid, Spain;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Volcanic tremor; El Hierro; Eruption dynamics; Plumbing system;

    机译:火山震颤耶罗(El Hierro)爆发动力;水暖系统;

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