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A low velocity zone beneath the Hida Mountains derived from dense array observation and tomographic method

机译:密集阵列观测和层析成像方法得出的飞ida山脉下方的低速带

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Seismic waves suffer strong attenuation when propagating beneath the Hida Mountains in Central Honshu, Japan. In order to study this region in detail, we conducted three kinds of dense seismic array observations in and around the Hida Mountains in the summer of 1996. Picking P- and S-wave arrival time data from 54 events at 101 stations, 3175 P- and 2335 S-wave arrival time data were obtained for our tomographic study. Hypocenter locations and velocity structure were determined simultaneously. We assessed ray coverage and resolution of the velocity structure with checkerboard resolution tests. Ray paths for the model of the obtained velocity structure were examined in detail. There are two zones of low P-wave velocity, one at a depth of 4 km and the other at 15 km. The resolution is good at depths of 0-20 km for P-wave velocities and at depths of 0-15 km for S-wave velocities. A high V_P/V_S ratio (2.7) indicates that a partially melting rock exists beneath the Hida Mountains. The deep low velocity zone is located just above the upper/lower crustal boundary. These observations indicate that a magma reservoir exists in the upper crust beneath the Hida Mountains.
机译:在日本本州中部飞ida山脉下方传播时,地震波会遭受强烈衰减。为了详细研究该地区,我们于1996年夏季在飞弹山脉及其周围地区进行了3种密集地震阵列观测。从101个站的54个事件中选出了3175个P-和S波到达时间数据并获得了2335个S波到达时间数据用于我们的层析成像研究。同时确定了震源位置和速度结构。我们通过棋盘分辨率测试评估了射线的覆盖率和速度结构的分辨率。详细检查了所获得的速度结构模型的射线路径。有两个低P波速度的区域,一个区域的深度为4 km,另一个区域的深度为15 km。对于P波速度,分辨率在0-20 km的深度处,对于S波速度,分辨率在0-15 km的深度处是好的。较高的V_P / V_S比(2.7)表示飞弹山脉下方存在部分熔融的岩石。深低速带位于地壳上下边界的正上方。这些观察结果表明,飞弹山脉下方的上地壳中存在着一个岩浆储层。

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