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首页> 外文期刊>Autonomic neuroscience: basic & clinical >Inelastic strain rate and stress fields in and around an aseismic zone of Kyushu Island, Japan, inferred from seismic and GNSS data
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Inelastic strain rate and stress fields in and around an aseismic zone of Kyushu Island, Japan, inferred from seismic and GNSS data

机译:日本九州岛屿的无菌区内和周围的无弹性应变率和应力场从地震和GNSS数据推断出来

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摘要

Understanding earthquake processes and crustal deformation requires knowledge of the stress concentration process in the crust. With the enhancement of observation networks, it has become possible to consider in detail the relationships between localized deformation and seismic activity in island arcs and the process of stress concentration. According to previous studies, inelastic deformation in localized weak zones in the crust is considered to play an important role in the stress concentration process. Kyushu, located in southwest Japan, has a 20-30 km band-like active seismic activity and an enclosed aseismic zone. In particular, a part of the seismic active region called the Beppu-Simahara Graben, which is dominated by north-south extensional deformation, is characterized by high seismic activity and a remarkable aseismic zone. We identified the relationship between inelastic deformation and stress concentration processes in this area by using analyses of geodetic and seismic data. The results inverted from both the strain rate field obtained by the geodetic observations and the deviatoric stress field estimated from focal mechanism data reveal a large inelastic deformation zone (similar to 10(-7) yr(-1)) beneath the area of active seismicity. From comparison with previous works, the inelastic deformation zone in the lower crust may correspond to an area with high temperature and/or fluid. This may suggest that inelastic deformation is in progress in the area where the strength of lower crustal rocks has reduced due to the presence of geothermics and/or fluids. Furthermore, we confirmed that this inelastic deformation causes stress concentrations of up to 10 kPa yr(-1) in the upper crust. These results show that stress concentration occurs locally in the upper crust, above the inelastic deformation zone in the weakened lower crust, owing to the presence of geothermal and/or fluid; this stress concentration induces seismic activity and crustal deformation.
机译:理解地震过程和地壳变形需要了解外壳中的应力浓缩过程。随着观察网络的增强,可以详细考虑岛弧和应力集中过程中的局部变形和地震活动之间的关系。根据先前的研究,地壳中局部弱区的无弹性变形被认为是在应力浓缩过程中发挥重要作用。位于日本西南部的九州拥有20-30公里的乐队,如激动的积极地震活动和封闭的抗震区。特别是,被称为Beppu-SimaharaGraben的地震活性区域的一部分是由南北延伸变形主导的,其特征在于高地震活动和显着的抗空区域。通过使用大地测量和地震数据分析,我们确定了该地区内部变形和应力浓缩过程之间的关系。由大地测量观察结果获得的应变速率场和由焦点机制数据估计的偏离有人应力场反转的结果显示出在活性地震区域下方的大型非弹性变形区(类似于10(-7)YR(-1)) 。根据与先前作品的比较,下地壳中的无弹性变形区可以对应于具有高温和/或流体的面积。这可能表明,由于地热和/或流体的存在,下层地壳岩石的强度降低的区域中的内部变形正在进行中。此外,我们证实,这种无弹性变形导致上外壳中最多10kPa Yr(-1)的应力浓度。这些结果表明,由于地热和/或流体的存在,在弱化的下地壳中局部发生应力浓度。这种应力浓度会诱导地震活动和地壳变形。

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