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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Three-dimensional P-wave velocity structure of Bandai volcano in northeastern Japan inferred from active seismic survey
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Three-dimensional P-wave velocity structure of Bandai volcano in northeastern Japan inferred from active seismic survey

机译:从主动地震勘测推断日本东北部万代火山的三维纵波速度结构

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The three-dimensional P-wave velocity structure of the Bandai volcano has been revealed by tomographic inversion using approximately 2200 travel-time data collected during an active seismic survey comprising 298 temporary seismic stations and eight artificial shots. The key result of this study is the delineation of a high-velocity anomaly (Vp > 4.6 knVs at sea-level) immediately below the summit peak. This feature extends to depths of 1-2 km below sea-level. The near-surface horizontal position of the high-velocity anomaly coincides well with that of a positive Bouguer gravity anomaly. Geological data demonstrate that sector collapses have occurred in all directions from the summit and that the summit crater has been repeatedly refilled with magmatic material. These observations suggest that the high-velocity region revealed in this study is a manifestation of an almost-solidified magmatic plumbing system. We have also noted that a near-surface low-velocity region (Vp < 3.0 km/s at sea-level) on the southern foot of the volcano corresponds to the position of volcanic sediments including ash and debris avalanche material. In addition, we have made use of the tomographic results to recompute the hypocenters of earthquake occurring during seismic swarms beneath the summit in 1988 and 2000. Relocating the earthquakes using the three-dimensional velocity model clearly indicates that they predominantly occurred on two steeply dipping planes. Low-frequency earthquakes observed during the swarms in 2000 occurred in the seismic gap between the two clusters. The hypocentral regions of the seismic swarms and the low-frequency earthquakes are close to the higher-velocity zone beneath the volcano's summit. These observations suggest that the recent seismic activity beneath the summit is likely associated with thermal energy being released within the solidifying magmatic plumbing system.
机译:通过使用包括298个临时地震台和8个人工镜头的主动地震勘测过程中收集的大约2200个行进时间数据,通过层析成像反演揭示了Bandai火山的三维P波速度结构。这项研究的主要结果是描绘了一个在峰顶正下方的高速异常(海平面处Vp> 4.6 knVs)的轮廓。此功能扩展到海平面以下1-2公里的深度。高速异常的近地表水平位置与正布格重力异常的地表水平位置非常吻合。地质数据表明,从山顶到各个方向都发生了坍塌,山顶的火山口已被岩浆物质反复填充。这些观察结果表明,这项研究中揭示的高速区域是岩浆管道系统几乎凝固的表现。我们还注意到,火山南麓的近地表低速区域(海平面Vp <3.0 km / s)对应于火山灰,碎屑和雪崩物质等火山沉积物的位置。此外,我们利用层析成像结果重新计算了1988年和2000年山顶以下地震群期间发生的地震震源。使用三维速度模型重新定位地震表明,地震主要发生在两个陡倾平面上。 2000年在群中观察到的低频地震发生在两个星团之间的地震缝隙中。地震群和低频地震的震中区域靠近火山顶下的高速区域。这些观察结果表明,山顶下方最近的地震活动可能与凝固岩浆管道系统内释放的热能有关。

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