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首页> 外文期刊>Doklady Earth Sciences >New Data on the Deep Structure of the Northern Vent of the Great Tolbachik Fissure Eruption (1975-1976)
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New Data on the Deep Structure of the Northern Vent of the Great Tolbachik Fissure Eruption (1975-1976)

机译:托尔巴奇克大裂缝喷发北部通风孔深部结构的新数据(1975年至1976年)

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摘要

In order to restore the deep structure in the region of the Northern Vent (NV) of the Great Tolbachik Fissure Eruption (GTFE) (1975-1976), low-frequency microseismic sounding was applied. For this purpose accumulation of spectra of the microseismic field was performed in a wide frequency band in 29 points along a linear profile 14 km in length embedded transversely to the fissure eruption. A deep cross section of the Earth's crust was constructed up to 20 km, reflecting the distribution of relative velocities of transverse seismic waves. The revealed structural heterogeneities were interpreted with consideration of previously known results of complex studies of the eruption. The existence of an abnormal structure at the depths of 2-3 and 7-8 km under the NV GTFE was confirmed, which could be low-depth magma chambers. Deep subvertical low-velocity structures were revealed and spatially registered, which probably feed the conduits of the eruption. It was demonstrated that the ways of possible magma supply to the peripheral chamber at the depth of 2-3 km could be various. For the first time for the zone of areal volcanism, variation of the character of magmatic intrusions was demonstrated at the transition from a crystalline basement to the near-surface depth: subvertical forms are replaced with a system of sills and interesting injections.
机译:为了恢复大托尔巴奇克裂隙喷发(GTFE)(1975-1976)的北部通风口(NV)区域的深层结构,应用了低频微震探测技术。为此,在宽于29个点的宽频带中,沿着垂直于裂缝喷发的14 km长的线性剖面进行了微地震场频谱的累积。构造了一个地壳的深断面,长达20 km,反映了横向地震波的相对速度分布。所揭示的结构异质性是根据对喷发的复杂研究的先前已知结果进行解释的。证实了在NV GTFE下2-3和7-8 km深度处存在异常结构,这可能是低深度岩浆室。揭示了深垂直的低速结构并在空间上进行了记录,这很可能为喷发的管道提供了动力。结果表明,在2-3 km深度向外围腔体提供岩浆的可能方式多种多样。首次从平面基底过渡到近地表深度,证明了区域火山活动带岩浆侵入特征的变化:亚垂直形式被基岩和有趣的注入系统所取代。

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  • 来源
    《Doklady Earth Sciences》 |2011年第2期|p.1673-1677|共5页
  • 作者单位

    Geophysical Servey, Russian Academy of Sciences, Kamchatka Branch, Petropavlovsk-Kamchatsky, Russia;

    Geophysical Servey, Russian Academy of Sciences, Kamchatka Branch, Petropavlovsk-Kamchatsky, Russia;

    Schmidt Joint Institute of Physics of the Earth, Russian Academy of Sciences, Moscow, Russia;

    Schmidt Joint Institute of Physics of the Earth, Russian Academy of Sciences, Moscow, Russia;

    Institute of Volcanology and Seismology, Russian Academy of Sciences, Far East Branch, Petropavlovsk-Kamchatsky, Russia;

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