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Spatial variation in coda Q around the Nobi fault zone, central Japan: Relation to S-wave velocity and seismicity

机译:日本中部Nobi断层带尾波Q的空间变化:与s波速度和地震活动的关系

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摘要

We investigate the spatial variation in coda Q around the Nobi fault zone in a high strain rate zone to assess the relation between coda Q, shear wave velocity, and seismicity. Waveform data were obtained from dense seismic observations. Low coda Q that follows the Niigata-Kobe Tectonic Zone in the high strain rate zone is distinct at the lowest frequency band of 1 to 2∈Hz. However, at higher frequencies, such a spatial pattern in coda Q is unclear. A good positive correlation was found between coda Q at the 1- to 2-Hz frequency band and the S-wave velocity perturbation at 25-km depth, which suggests that the coda Q reflects the ductile deformation below the brittle-ductile transition zone. Furthermore, coda Q at the 1- to 2-Hz frequency band correlates negatively with seismicity at 10- to 15-km depth, which implies that there is a high stressing rate in the low coda Q area. These facts, together with results of previous studies, imply that a high deformation rate below the brittle-ductile transition zone produces the high strain rate observed by the Global Positioning System (GPS) on the surface in this region.
机译:我们调查高应变率区域中Nobi断层带周围的尾随Q的空间变化,以评估尾随Q,横波速度和地震活动性之间的关系。波形数据是从密集的地震观测中获得的。在高应变率区的新泻-神户构造带之后的低尾随Q值在1至2εHz的最低频带处是明显的。但是,在较高频率下,尾随Q中的这种空间模式尚不清楚。在1-2 Hz频段的尾声Q与25 km深度的S波速度摄动之间发现良好的正相关性,这表明尾声Q反映了脆性-延性转变区下方的韧性变形。此外,在1到2 Hz频带处的尾声Q与在10到15 km深度处的地震活动性呈负相关,这意味着在低尾声Q区域中存在高应力率。这些事实以及先前的研究结果表明,在脆性-韧性过渡区以下的高变形率会产生该区域表面上的全球定位系统(GPS)观测到的高应变率。

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