首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Progressive reactivation of the volcanic plumbing system beneath Tolbachik volcano (Kamchatka, Russia) revealed by long-period seismicity
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Progressive reactivation of the volcanic plumbing system beneath Tolbachik volcano (Kamchatka, Russia) revealed by long-period seismicity

机译:长期地震性透露的托巴奇克火山(堪察加,俄罗斯)下山管道系统的逐步重新激活

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After lying dormant for 36 yr, the Tolbachik volcano of the Klyuchevskoy group started to erupt on 27 November 2012. We investigate the preparatory phase of this eruption via a statistical analysis of the temporal behavior of long-period (LP) earthquakes that occurred beneath this volcanic system. The LP seismicity occurs close to the surface beneath the main volcanic edifices and at 30 km depth in the vicinity of a deep magmatic reservoir. The deep LP earthquakes and those beneath the Klyuchevskoy volcano occur quasi-periodically, while the LP earthquakes beneath Tolbachik are clustered in time. As the seismicity rate increased beneath Tolbachik days before the eruption, the level of the time clustering decreased. We interpret this as a manifestation of the evolution of the volcano plumbing system. We suggest that when a plumbing system awakes after quiescence, multiple cracks and channels are reactivated simultaneously and their interaction results in the strong time clustering of LP earthquakes. With time, this network of channels and cracks evolves into a more stable state with an overall increased permeability, where fluids flow uninhibited throughout the plumbing system except for a few remaining impediments that continue to generate seismic radiation. The inter-seismic source interaction and the level of earthquake time clustering in this latter state is weak. This scenario suggests that the observed evolution of the statistical behavior of the shallow LP seismicity beneath Tolbachik is an indicator of the reactivation and consolidation of the near-surface plumbing system prior to the Tolbachik eruption. The parts of the plumbing system above the deep magmatic reservoir and beneath the Klyuchevskoy volcano remain in nearly permanent activity, as demonstrated by the continuous occurrence of the deep LP earthquakes and very frequent Klyuchevskoy eruptions. This implies that these parts of the plumbing system remain in a stable permeable state and contain a few
机译:在休眠36年后,Klyuchevskoy集团的Tolbachik Volcano于2012年11月27日开始爆发。我们通过统计分析来调查这一爆发的预备阶段,这是对此发生在下方的长期(LP)地震的时间行为火山系统。 LP地震发生靠近主火山涂层下方的表面,在深层岩浆储层附近处于30公里深度。克莉彻斯科赫火山下方的深层僵局和那些周期性地发生了准周期性,而LP地震在托巴希克下面的LP地震是随时间聚集的。随着在爆发前的托巴希克日下方的地震率增加,时间聚类的水平降低。我们将此解释为火山管道系统演变的表现。我们建议当静态后水管系统唤醒时,同时重新激活多个裂缝和通道,并且它们的相互作用导致LP地震的强时聚类。随着时间的推移,这种通道和裂缝网络进化成更稳定的状态,其渗透率的总体增加,其中流体流动在整个管道系统中,除了继续产生地震辐射的剩余障碍之外。在后一种状态下,地震次源相互作用和地震时间聚类水平较弱。这种情况表明,托巴奇克下方浅LP地震性的统计行为的观察到的演变是托巴奇克喷发之前近表面管道系统的再激活和整合的指示。在深层岩浆储层之下的管道系统的部分仍然存在于几乎永久性的活性,如持续发生的深入地震和非常频繁的Klyuchevskoy爆发所证明的那样。这意味着管道系统的这些部件仍处于稳定的渗透状态并包含几个

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