首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Eruption dynamics at Mount St. Helens imaged from broadband seismic waveforms: Interaction of the shallow magmatic and hydrothermal systems
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Eruption dynamics at Mount St. Helens imaged from broadband seismic waveforms: Interaction of the shallow magmatic and hydrothermal systems

机译:来自宽带地震波形的圣海伦斯山喷发动力学:浅岩浆和热液系统的相互作用

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The current eruption at Mount St. Helens is characterized by dome building and shallow, repetitive, long-period (LP) earthquakes. Waveform cross-correlation reveals remarkable similarity for a majority of the earthquakes over periods of several weeks. Stacked spectra of these events display multiple peaks between 0.5 and 2 Hz that are common to most stations. Lower-amplitude very-long-period (VLP) events commonly accompany the LP events. We model the source mechanisms of LP and VLP events in the 0.5–4 s and 8–40 s bands, respectively, using data recorded in July 2005 with a 19-station temporary broadband network. The source mechanism of the LP events includes: 1) a volumetric component modeled as resonance of a gently NNW-dipping, steam-filled crack located directly beneath the actively extruding part of the new dome and within 100 m of the crater floor and 2) a vertical single force attributed to movement of the overlying dome. The VLP source, which also includes volumetric and single-force components, is 250 m deeper and NNW of the LP source, at the SW edge of the 1980s lava dome. The volumetric component points to the compression and expansion of a shallow, magma-filled sill, which is subparallel to the hydrothermal crack imaged at the LP source, coupled with a smaller component of expansion and compression of a dike. The single-force components are due to mass advection in the magma conduit. The location, geometry and timing of the sources suggest the VLP and LP events are caused by perturbations of a common crack system.
机译:圣海伦斯山目前的火山喷发以圆顶建筑和浅层,重复性,长周期(LP)地震为特征。波形互相关揭示了几周内大部分地震的显着相似性。这些事件的叠加频谱显示了大多数电台常见的0.5至2 Hz之间的多个峰值。低幅度超长周期(VLP)事件通常伴随LP事件。我们使用2005年7月在19个站点的临时宽带网络中记录的数据,分别模拟了0.5–4 s和8–40 s频段中LP和VLP事件的源机制。液化石油气事件的源机制包括:1)体积模型,其建模为在新穹顶的主动挤压部分正下方并在火山口底板100 m以内的轻柔的NNW浸渍蒸汽填充的裂缝的共振;以及2)归因于上方穹顶运动的垂直单向力。在1980年代熔岩穹顶的西南边缘,VLP震源(还包括体积分量和单力分量)深250 m,且为LP震源的NNW。体积分量指向浅的,充满岩浆的基岩的压缩和扩展,其与在LP源处成像的热液裂缝亚平行,并与堤坝的扩展和压缩的较小分量相关。单力分量是由于岩浆管道中的质量对流引起的。震源的位置,几何形状和时机表明,VLP和LP事件是由常见裂纹系统的扰动引起的。

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