首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Three-dimensional crustal S wave velocity structure in Japan using microseismic data recorded by Hi-net tiltmeters
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Three-dimensional crustal S wave velocity structure in Japan using microseismic data recorded by Hi-net tiltmeters

机译:利用Hi-net倾斜仪记录的微地震数据,日本三维地壳S波速度结构

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We developed a three-step method for three-dimensional (3-D) S wave velocity tomography by fitting synthetic cross spectra to the observed ones of ambient seismic noise. We applied this method to the recording of Hi-net tiltmeters in Japan at 679 stations from June 2004 to December 2004. First, we calculated normalized cross spectra between radial components and those between transverse components for every pair of stations. The first step is local 1-D S wave velocity inversion for each station assuming small lateral heterogeneity under a 100-km circle of a station. We measured the dispersion curves of fundamental Rayleigh waves, fundamental Love waves, and first overtone of Love waves by fitting the synthetic cross spectra to the observed ones between pairs of stations within the circle. We inverted the measured dispersion curves for obtaining a 1-D S wave velocity model. The second step is the inversion of the observed cross spectra for obtaining path-averaged 1-D S wave velocity structure. The third step is the inversion of the resultant path-averaged structures for obtaining 3-D S wave velocity structure (0.1° × 0.1° × 1 km grid from the surface to a depth of 50 km) using ray approximation. The resultant S wave velocity structures show clear low-velocity anomalies along tectonic lines from the surface to a depth of 20 km. In particular, along the Hidaka mountain range, we observed S wave perturbation more extreme than ?20%. They also show low-velocity anomalies under volcanoes in Kyusyu and Tohoku. In the southwestern part of Shikoku, our results show a clear low-velocity anomaly corresponding to an accretional belt (Shimanto belt). Below 20 km, we observe a low-velocity anomaly in the center of Japan, which suggests a thick crust.
机译:通过将合成交叉谱拟合到观察到的环境地震噪声中,我们开发了三维(3-D)S波速度层析成像的三步法。我们将此方法应用于2004年6月至2004年12月在日本的679个站的Hi-net倾斜仪的记录中。首先,我们计算了每对站的径向分量和横向分量之间的归一化交叉谱。第一步是假设每个台站100 km圈内的横向不均匀性较小,则每个台站的局部1-DS波速度反演。我们通过将合成交叉谱拟合到圆内成对站点之间观察到的交叉谱,来测量基本瑞利波,基本洛夫波和洛夫波的第一泛音的色散曲线。我们颠倒了测得的色散曲线以获得一维一维波速模型。第二步是对观测到的互谱进行反演,以获得路径平均的1-DS波速结构。第三步是对所得的路径平均结构进行求逆,以使用射线逼近获得3-D S波速结构(从表面到50 km深度的0.1°×0.1°×1 km网格)。所得的S波速度结构显示出从地表到20 km深度沿构造线的明显的低速异常。尤其是在日高山脉,我们观察到S波摄动的极端程度大于20%。它们还显示了九州和东北地区火山下的低速异常。在四国的西南部,我们的结果显示了与增生带(四万十带)相对应的明显的低速异常。在20公里以下,我们在日本中部发现了一个低速异常现象,表明地壳很厚。

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