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Joint detection of buried faults in thin overburden area by P-wave and S-wave |
XIA Nuan1,2( ), LU Zi-Lin1,2, FU Jun-Dong1,2, ZHANG Jian-Min1,2, WANG Dong-Lei1,2, ZHENG Xu1,2 |
1. Shandong Institute of Earthquake Engineering,Jinan 250021,China 2. Shandong Earthquake Agency,Jinan 250014,China |
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Abstract In thin overburden area,the application of shallow P-wave reflection to fault detection can only obtain the reflected waves of the bedrock top surface,but it is difficult to accurately determine the location and buried depth of the fault.In this paper,the authors first applied shallow P-wave reflection method to obtain the approximate location and buried depth of the fault,then used ultra-shallow S-wave reflection method to confirm the location and supplement the shallow fault information.Through the joint detection, more reliable localization of the fault plane position was achieved,and more abundant structural feature information of faults ranging from shallow to ultra-shallow depths was obtained.On the basis of joint detection,the drilling exploration composite geological section was arranged to verify the existence of the fault.The results show that the P-wave and S-wave joint detection of buried faults in thin overburden area is more effective than a single method.It can obtain more fault information and can provide a more reliable basis for the layout of drill exploration composite geological section.
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Received: 08 February 2020
Published: 29 April 2021
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Map showing geological structure and location of seismic survey lines
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施工参数 | 纵波反射法 | 横波反射法 | 采样间隔/ms | 0.5 | 0.5 | 记录长度/ms | 500 | 1024 | 道间距/m | 2 | 2 | 炮间距/m | 8 | 8 | 接收道数/道 | 72 | 72 | 覆盖次数/次 | 9 | 9 | 激发方式 | 单炮放炮 | 中间放炮 | 最小偏移距/m | 0 | 0 | 震源出力/% | 70 | 40 | 扫描频率/Hz | 20~120 | 20~120 | 扫描时间/s | 10 | 10 |
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Construction parameters
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Typical single shot records of shallow P-wave(a) and ultra-shallow S-wave reflection(b)
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Shot record collation map before(b) and after(b) filter
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Shot record collation map before(a) and after(b) static correction
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Stacked time section of shallow P-wave method
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Stacked time section of ultra-shallow S-wave reflection method
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The drill exploration composite geological section
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