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SEDIMENTARY THICKNESS IN THE EASTERN KANTO BASIN ESTIMATED BY ALL-PASS RECEIVER FUNCTION USING DENSE EARTHQUAKE OBSERVATIONS

机译:东方KANTO盆地的沉积厚度通过使用致密地震观测的全通接收函数估算

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The sedimentary thickness varied to several thousand meters played an important role for the long-period ground motions, which were observed in the Kanto (Tokyo) basin recently. However, exploration of sedimentary thickness is costly. Utilizing dense seismographic stations of K-NET, KiK-net and Sk-net, we studied the thickness variation by the All-pass receiver function (APRF) method. At each station, the travel-time differences between converted PS and P waves, Tps-p, were calculated from recordings with condition of clear initial P waves in a range about 100 km distance. The conversion of the Tps-p to the sedimentary thickness is a complex question since both P and S waves velocities related, as well as thickness. The conversion question was figured out by regression functions for the thickness factor H to the wave's travel-time differences between S and P waves, Ts-Tp, from deep-well VSP data. By combination of hundreds of the Tps-p results and the regression functions, we estimated the thickness of sedimentary basin beneath each station and obtained the thickness contours in the eastern Kanto basin. The results at several dozen locations were well confirmed by deep-hotspring wells and fault investigations.
机译:沉积厚度变化为数千米,对长期地面运动起着重要作用,最近在凯托(东京)盆地观察到的长期地面运动。然而,对沉积厚度的探索成本高昂。利用K-NET,KIK-NET和SK-NET的致密地震站,我们研究了通过全通接收器功能(APRF)方法的厚度变化。在每个站,转换的PS和P波之间的行进时间差异,TPS-P从带有明显初始P波的条件的录音计算,范围为约100km距离。 TPS-P对沉积厚度的转换是复杂的问题,因为P和S波速度以及厚度。通过回归函数对厚度因子H的回归函数进行了计算出来,从深井VSP数据之间的S和P波之间的波浪的行进 - 时间差异。通过数百个TPS-P结果和回归函数的组合,我们估计了每个车站下方沉积盆地的厚度,并获得了东方盆地东部的厚度轮廓。在大量的井井和故障调查中,几十个地点的结果得到了很好的证实。

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