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Inversion of waveforms from. Xiangtang borehole seismic array for soil dynamic property
作者姓名:陈学良  金星  陶夏新  韦永祥
作者单位:Institute of Engineering Mechanics China Earthquake Administration,Institute of Engineering Mechanics,China Earthquake Administration,Institute of Engineering Mechanics,China Earthquake Administration,Institute of Engineering Mechanics,China Earthquake Administration,Harbin 150080,China,Harbin 150080,China,Earthquake Administration of Fujian Province,Fuzhou 350003,China,Harbin 150080,China,Harbin Institute of Technology,Harbin 150008,China,Harbin 150080,China
基金项目:Joint Seismological Science Foundation of China (604036 and 105034)
摘    要:In order to understand the site soil response of the Xiangtang borehole seismic array under real strong ground motion, reveal the site response, verify the technique of borehole exploration, and improve the precision of in-situ test and laboratory test, this paper presents a new approach, which is composed of two methods. One is the layered site seismic response method, whose layer transform matrix is always real. The other is a global-local optimization technique, which uses genetic algorithm (GA)-simplex method. An inversion of multi-component waveforms of P, SV and SH wave is carried out simultaneously. By inverting the records of three moderate and small earthquakes obtained from the Xiangtang borehole array (2# ) site, the soil dynamic characteristic parameters, including P velocity, damping ratio and frequency-dependent coefficient b, which has not been given in previous literatures, are calculated. The results show that the soil S wave velocity of the Xiangtang 2# borehole is generally greater than that obtained from the 1994 in-situ test, and is close to the velocity of the 3# borehole, which is more than 200 m away from the 2# borehole. Meanwhile, perceptible soil nonlinear behavior under peak ground motion of about 60×10-2m/s2 is detected by the inversion analysis. The presented method can be used for studying the soil response of other borehole array sites.

关 键 词:响嘡钻井台  回返分析  土壤反应  衰减率
文章编号:1000-9116(2007)04-0425-10
收稿时间:9 November 2006
修稿时间:2006-11-09

Inversion of waveforms from Xiangtang borehole seismic array for soil dynamic property
Chen Xue-liang , Jin Xing , Tao Xia-xin and Wei Yong-xiang.Inversion of waveforms from. Xiangtang borehole seismic array for soil dynamic property[J].Acta Seismologica Sinica(English Edition),2007,20(4):425-434.
Authors:Chen Xue-liang  Jin Xing  Tao Xia-xin and Wei Yong-xiang
Abstract:In order to understand the site soil response of the Xiangtang borehole seismic array under real strong ground motion, reveal the site response, verify the technique of borehole exploration, and improve the precision of in-situ test and laboratory test, this paper presents a new approach, which is composed of two methods. One is the layered site seismic response method, whose layer transform matrix is always real. The other is a global-local optimization technique, which uses genetic algorithm (GA)-simplex method. An inversion of multi-component waveforms of P, SV and SH wave is carried out simultaneously. By inverting the records of three moderate and small earthquakes obtained from the Xiangtang borehole array (2#) site, the soil dynamic characteristic parameters, including P velocity, damping ratio and frequency-dependent coefficient b, which has not been given in previous literatures, are calculated. The results show that the soil S wave velocity of the Xiangtang 2# borehole is generally greater than that obtained from the 1994 in-situ test, and is close to the velocity of the 3# borehole, which is more than 200 m away from the 2# borehole. Meanwhile, perceptible soil nonlinear behavior under peak ground motion of about 60×10−2 m/s2 is detected by the inversion analysis. The presented method can be used for studying the soil response of other borehole array sites. Foundation item: Joint Seismological Science Foundation of China (604036 and 105034).
Keywords:Xiangtang borehole array  inversion analysis  soil response  P and S wave velocity  damping ratio
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