首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >High-resolution seismic velocity structure beneath the Hokkaido corner, northern Japan: Arc-arc collision and origins of the 1970 M 6.7 Hidaka and 1982 M 7.1 Urakawa-oki earthquakes
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High-resolution seismic velocity structure beneath the Hokkaido corner, northern Japan: Arc-arc collision and origins of the 1970 M 6.7 Hidaka and 1982 M 7.1 Urakawa-oki earthquakes

机译:日本北部北海道拐角下方的高分辨率地震速度结构:弧-弧碰撞和1970 M 6.7日高和1982 M 7.1浦河冲木地震的起源

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摘要

Using travel time data from both a nationwide dense seismic network and a dense temporary seismic network, we obtain a high-resolution three-dimensional seismic velocity structure beneath the Hokkaido corner. Considerable inhomogeneity in the seismic velocity structure is clearly imaged above the subducting Pacific slab. Our results indicate that a broad low-velocity zone of P and S waves, with velocities consistent for crustal rocks, is observed west of the Hidaka main thrust at depths of 35-90km. The images also indicate that several smaller-scale high-velocity zones are located at depths of 0-35km, striking approximately north-south and inclined to the east-northeastward at 40-60. All of these anomalous high-velocity zones are located at the deeper extension of Neogene thrust faults. The clearest high-velocity zone is located beneath the Hidaka metamorphic belt and is in contact with the eastern edge of the broad low-velocity zone. Moreover, the boundary between the clearest high-velocity and the broad low-velocity zones corresponds to the fault plane of the 1970 Mj (magnitude determined by the Japan Meteorological Agency) 6.7 Hidaka earthquake. The western boundary of another small high-velocity zone, at depths of 20 to 30km within the broad low-velocity zone, corresponds to the fault plane of the 1982 Mj 7.1 Urakawa-oki earthquake. These observations suggest that these two large and anomalously deep inland earthquakes occurred at sharp material boundaries under a northeast-southwest compressional stress field caused by ongoing arc-arc collision process.
机译:利用来自全国密集地震台网和密集临时地震台网的旅行时间数据,我们获得了北海道拐角下方的高分辨率三维地震波速度结构。俯冲太平洋板块上方清楚地显示了地震速度结构中相当大的不均匀性。我们的结果表明,在日高主推力以西35-90 km处观察到了一个宽广的P波和S波低速带,其速度与地壳岩石一致。这些图像还表明,几个较小规模的高速带位于0-35 km的深度,大约向南-北方向倾斜,并以40-60向东-东北方向倾斜。所有这些异常的高速带都位于新近纪逆冲断层的更深延伸处。最清晰的高速带位于日高变质带的下方,并与宽阔的低速带的东缘相接触。此外,最清楚的高速区域和宽的低速区域之间的边界对应于1970 Mj(日本气象厅确定的)6.7日高地震的断层。另一个小型高速区的西边界,在宽阔的低速区内,深度为20至30km,对应于1982年Mj 7.1浦川冲木地震的断层。这些观察结果表明,这两个较大且异常深的内陆地震发生在由持续的弧-弧碰撞过程引起的东北-西南压应力场下的尖锐物质边界处。

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