首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Quiescent-explosive transitions during dome-forming volcanic eruptions: Using seismicity to probe the volcanic processes leading to the 29 July 2008 vulcanian explosion of Soufriere Hills Volcano, Montserrat
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Quiescent-explosive transitions during dome-forming volcanic eruptions: Using seismicity to probe the volcanic processes leading to the 29 July 2008 vulcanian explosion of Soufriere Hills Volcano, Montserrat

机译:圆顶形成火山喷发过程中的静态爆炸过渡:利用地震活动探测导致2008年7月29日蒙特塞拉特Soufriere Hills Volcano火山爆发的火山爆发的火山过程

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The July 2008 vulcanian explosion at Soufriere Hills Volcano (SHV), Montserrat, was preceded by one of the largest seismic swarms observed since the start of the eruption. We analyze the spectral and waveform properties of the earthquakes in this swarm and compare these observations to models of subsurface volcanic processes. We observe an initial volcano-tectonic (VT) swarm, followed by a large low-frequency (LF) swarm. We observe that the spectral content of LF events changes over time to carry more energy at lower frequencies. This shift to a lower frequency spectral content is concurrent with an increase in LF event rates. Ash-venting occurred a few hours before peak event rate. There was a subsequent increase in the higher-frequency energy component of LF events, concurrent with a decrease in event rates. Seismic quiescence occurred in the final 7 h before the vulcanian explosion. Our observations of VT seismicity are consistent with a model of decoupled gas ascent prior to magma emplacement. Changes in spectral properties and event rates suggest changes in conduit properties and/or pressure changes during magma ascent and stalling in the few days before the explosion. This interpretation is supported by previous petrological observations. Our analysis of repeating earthquakes suggests that hybrid and long-period events are part of the same source process and should not be considered separate classifications, at least at SHV. Our analysis highlights the potential of using simple spectral and waveform analyses for understanding changes in the magmatic system during transitions between quiescence and eruption.
机译:2008年7月在蒙特塞拉特的Soufriere Hills Volcano(SHV)发生的火山爆发之前,是火山爆发以来观察到的最大的地震群之一。我们分析了该群地震的频谱和波形特性,并将这些观测结果与地下火山过程的模型进行了比较。我们观察到最初的火山构造(VT)群,然后是大的低频(LF)群。我们观察到,低频事件的频谱含量会随着时间而变化,从而在低频下携带更多能量。这种向较低频谱含量的转变与LF事件发生率的增加同时发生。排灰发生在高峰事件发生前几个小时。 LF事件的高频能量成分随后增加,同时事件发生率降低。地震静息发生在火山爆发前的最后7小时。我们对VT地震活动性的观察与岩浆侵位之前的气体上升耦合模型是一致的。频谱特性和事件发生率的变化表明,在爆炸前几天的岩浆上升和失速过程中,导管特性的变化和/或压力的变化。以前的岩石学观测结果支持了这种解释。我们对重复地震的分析表明,混合事件和长期事件是同一震源过程的一部分,因此,至少在SHV上,不应将其视为单独的分类。我们的分析突出了使用简单的频谱和波形分析来了解静止和爆发之间过渡期间岩浆系统变化的潜力。

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