首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Discontinuity of the Mozumi-Sukenobu fault low-velocity zone, central Japan, inferred from 3-D finite-difference simulation of fault zone waves excited by explosive sources
【24h】

Discontinuity of the Mozumi-Sukenobu fault low-velocity zone, central Japan, inferred from 3-D finite-difference simulation of fault zone waves excited by explosive sources

机译:由爆炸源激发的断层带波的3D有限差分模拟推论,日本中部Mozumi-Sukenobu断层低速带的不连续性

获取原文
获取原文并翻译 | 示例
           

摘要

We delineate shallow structures of the Mozumi-Sukenobu fault, central Japan, using fault zone waves generated by near-surface explosions and detected by a seismometer array. Two explosive sources, S1 and S2, were placed at a distance of about 2 km from the array, and the other two, S3 and S4, were at a distance of about 4 km. Fault zone head waves and fault zone trapped waves following direct P wave arrivals were clearly identified in the seismograms recorded by a linear seismometer array deployed across the fault in a research tunnel at a depth of 300 in. Synthetic waveforms generated by a 3-D finite-difference (3-D FD) method were compared with observed fault zone waves up to 25 Hz. The best fitting model indicates a 200-m-wide low-velocity zone extending at least to shot site S1 located 2 kin east of the seismic array with a 20% decrease in the P wave velocity relative to the wall rock. The width of the low-velocity zone is consistent with the fault zone defined by direct geological observation in the research tunnel. However, the low-velocity zone should disappear just to the east of the site S1 to explain the observed fault zone waves for shot S3 and S4 located 4 km east of the seismometer array. Yet the observation and the simulation show notable trapped wave excitation even though shots S3 and S4 are outside the fault zone. These results indicate that (1) the effective waveguide for seismic waves along the fault does not exist east of source site S1 although the surface traces of the fault are observed in this region, and (2) considerable trapped waves can be excited by sources well outside the fault zone. These results highlight the along-strike variability in fault zone structure. (C) 2003 Elsevier B.V. All rights reserved. [References: 38]
机译:我们利用近地表爆炸产生并由地震仪阵列探测到的断层带波描绘了日本中部Mozumi-Sukenobu断层的浅层结构。将两个爆炸物源S1和S2放置在距阵列约2 km的距离处,另外两个爆炸物S3和S4放置在约4 km的距离处。在直达P波到达后的断层带头波和断层带捕获波在由地震仪在深度为300 in的研究隧道中跨断层部署的线性地震仪阵列记录的地震图中清楚地识别出来。3D有限元生成的合成波形-差(3-D FD)方法与观察到的高达25 Hz的断裂带波进行了比较。最佳拟合模型表示200米宽的低速带,至少延伸到地震阵列以东2 kin处的发射点S1,相对于围岩,P波速度降低了20%。低速带的宽度与研究隧道中直接地质观测确定的断层带一致。但是,低速带应该仅在站点S1的东边消失,以解释位于地震仪阵列以东4公里处的S3和S4弹丸所观测到的断层带波。然而,即使弹丸S3和S4在断层带之外,观测和模拟也显示出明显的陷波激励。这些结果表明:(1)尽管在该区域观察到了断层的表面迹线,但沿断层沿地震波的有效波导并不存在,尽管在该区域观察到了断层的表面轨迹;(2)震源可以很好地激发大量的捕获波。在断层带之外。这些结果突出了断层带构造沿走动的变化性。 (C)2003 Elsevier B.V.保留所有权利。 [参考:38]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号