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Magmatic and Sedimentary Structure beneath the Klyuchevskoy Volcanic Group, Kamchatka, From Ambient Noise Tomography

机译:Klyuchevskoy火山集团,Kamchatka,来自环境噪声断层扫描的岩浆和沉积结构

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The Klyuchevskoy Volcanic Group is a cluster of the world's most active subduction volcanoes, situated on the Kamchatka Peninsula, Russia. The volcanoes lie in an unusual off-arc position within the Central Kamchatka Depression (CKD), a large sedimentary basin whose origin is not fully understood. Many gaps also remain in the knowledge of the crustal magmatic plumbing system of these volcanoes. We conducted an ambient noise surface wave tomography, to image the 3-D shear wave velocity structure of the Klyuchevskoy Volcanic Group and CKD within the surrounding region. Vertical component cross correlations of the continuous seismic noise are used to measure interstation Rayleigh wave group and phase traveltimes. We perform a two-step surface wave tomography to model the 3-D Vsv velocity structure. For each inversion stage we use a transdimensional Bayesian Monte Carlo approach, with coupled uncertainty propagation. This ensures that our model provides a reliable 3-D velocity image of the upper 15 km of the crust, as well as a robust assessment of the uncertainty in the observed structure. Beneath the active volcanoes, we image small slow velocity anomalies at depths of 2-5 km but find no evidence for magma storage regions deeper than 5 km-noting the 15 km depth limit of the model. We also map two clearly defined sedimentary layers within the CKD, revealing an extensive 8 km deep sedimentary accumulation. This volume of sediments is consistent with the possibility that the CKD was formed as an Eocene-Pliocene fore-arc regime, rather than by recent (<2 Ma) back-arc extension.
机译:Klyuchevskoy火山集团是世界上最活跃的海岸火山的集群,位于俄罗斯堪察加半岛。火山位于中央堪察加坳陷(CKD)内躺在一个不寻常的偏离位置,这是一个大沉积盆地,其起源尚未完全理解。许多间隙还留在这些火山的地壳岩浆管道系统的知识中。我们进行了一个环境噪声表面波断层扫描,以在周围区域内的Klyuchevskoy火山群和CKD的三维剪力波速结构图像。连续地震噪声的垂直分量交叉相关性用于测量瑞利波组和相位行进频率的频率。我们执行两步表面波断层扫描以模拟3-D VSV速度结构。对于每个反演阶段,我们使用跨越贝叶斯蒙特卡罗方法,耦合不确定性传播。这确保了我们的模型提供了地壳的15千克的可靠的3-D速度图像,以及对观察到的结构中的不确定性的强大评估。在活性火山下方,我们在2-5公里处的深度图像图像较小的慢速速度异常,但找不到5公里的岩浆存储区的证据 - 注意到模型的15公里深度限制。我们还在CKD中映射了两个明确定义的沉积层,揭示了广泛的8公里深沉积积累。该体积的沉积物是一致的,即CKD形成为何茂肾上腺素前弧制度,而不是近期(<2 mA)后弧延伸。

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    Deutsch GeoForschungsZentrum GFZ Helmholtzzentn Potsdam Dept Geophys Potsdam Germany;

    Deutsch GeoForschungsZentrum GFZ Helmholtzzentn Potsdam Dept Geophys Potsdam Germany;

    Univ Grenoble Alpes Inst Sci Terre CNRS UMR5275 Grenoble France;

    Russian Acad Sci Siberian Branch Trofimuk Inst Petr Geol &

    Geophys Novosibirsk Russia;

    Deutsch GeoForschungsZentrum GFZ Helmholtzzentn Potsdam Dept Geophys Potsdam Germany;

    Deutsch GeoForschungsZentrum GFZ Helmholtzzentn Potsdam Dept Geophys Potsdam Germany;

    Deutsch GeoForschungsZentrum GFZ Helmholtzzentn Potsdam Dept Geophys Potsdam Germany;

    Russian Acad Sci Siberian Branch Trofimuk Inst Petr Geol &

    Geophys Novosibirsk Russia;

    Russian Acad Sci Siberian Branch Trofimuk Inst Petr Geol &

    Geophys Novosibirsk Russia;

    Russian Acad Sci Geophys Serv Kamchatka Branch Petropavlovsk Kamchatski Russia;

    FEB RAS Inst Volcanol &

    Seismol Petropavlovsk Kamchatski Russia;

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  • 正文语种 eng
  • 中图分类 地球物理学;
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