首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Seismic attenuation structure associated with episodic tremor and slip zone beneath Shikoku and the Kii peninsula, southwestern Japan, in the Nankai subduction zone
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Seismic attenuation structure associated with episodic tremor and slip zone beneath Shikoku and the Kii peninsula, southwestern Japan, in the Nankai subduction zone

机译:南海俯冲带中四国和纪伊半岛下方的偶发性震颤和滑移带相关的地震衰减结构

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The three-dimensional seismic attenuation structure (frequency-independent Q) beneath southwestern Japan was analyzed using t* estimated by applying the S coda wave spectral ratio method to the waveform data from a dense permanent seismic network. The seismic attenuation (Q(p)(-1)) structure is clearly imaged for the region beneath Shikoku, the Kii peninsula, and eastern Kyushu at depths down to approximately 50km. At depths of 5 to 35km, the seismic attenuation structure changes at the Median tectonic line and other geological boundaries beneath Shikoku and the southwestern Kii peninsula. High-Q(p) zones within the lower crust of the overlying plate are found just above the slip regions at the centers of the long-term slow-slip events (SSEs) beneath the Bungo and Kii channels and central Shikoku. Beneath central Shikoku, within the overlying plate, a high-Q(p) zone bounded by low-Q(p) zones is located from the land surface to the plate interface of the subducting plate. The high-Q(p) zone and low-Q(p) zones correspond to high-V-p and low-V-p zones of previous study, respectively. The boundaries of the high- and low-Q(p) zones are consistent with the segment boundaries of tremors (segment boundaries of short-term SSEs). These results indicated that the locations of the long- and short-term SSEs could be limited by the inhomogeneous distribution of the materials and/or condition of the overlying plate, which is formed due to geological and geographical process. The heterogeneity of materials and/or condition within the fore-arc crust possibly makes an effect on inhomogeneous rheological strength distribution on the interface.
机译:使用t *值分析了日本西南部下方的三维地震衰减结构(与频率无关的Q),该t *是通过将S尾波频谱比方法应用于密集的永久地震波网的波形数据而估算的。在四国以下,纪伊半岛和九州东部的深至约50公里处,清楚地成像了地震衰减(Q(p)(-1))结构。在5至35公里的深度处,地震衰减结构在四国和西南纪伊半岛下方的中线构造线和其他地质边界发生变化。在Bungo和Kii河道以及中部四国以下的长期缓慢滑移事件(SSE)中心的滑移区上方,发现了上覆板下地壳内的高Q(p)带。在四国中央之下,在覆板内,由低Q(p)区域界定的高Q(p)区域位于从陆面到俯冲板的板界面之间。高Q(p)区和低Q(p)区分别对应于先前研究的高V-p和低V-p区。高和低Q(p)区的边界与震颤的段边界(短期SSE的段边界)一致。这些结果表明,由于地质和地理过程而形成的上覆板块的材料和/或条件不均匀,可能会限制长期和短期上交所的位置。前弧壳内材料和/或条件的异质性可能会对界面上不均匀的流变强度分布产生影响。

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