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Characteristics of Seismic Wave Propagation in the Binchuan Region of Yunnan Using a Dense Seismic Array and Large Volume Airgun Shots
作者姓名:SHE Yuyang  YAO Huajian  WANG Weitao  LIU Bin
作者单位:Laboratory of Seismology and Physics of Earth''s Interior & School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China,Laboratory of Seismology and Physics of Earth''s Interior & School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China;Mengcheng National Geophysical Observatory, University of Science and Technology of China, Mengcheng 233500, Anhui, China,Key Laboratory of Seismic Observation and Geophysical Imaging, Institute of Geophysics, China Earthquake Administration, Beijing 100081, China,Laboratory of Seismology and Physics of Earth''s Interior & School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China
基金项目:This project is sponsored by the National Natural Science Foundation of China (GG2080000476) and the China Earthquake Science Experiment Project, China Earthquake Administration (2017CESE0101, 2018CSES0101).
摘    要:The Binchuan region of Yunnan is a structurally complex region with mountains, basins, and active faults. In this situation,seismic wave propagation exhibits complex characteristics due to strong heterogeneity of underground media instead of following the great-circle path. In order to obtain a high-resolution shallow crustal structure, a dense seismic array was deployed during March 21 to May 30, 2017 in this area. To better understand the complexities of seismic wave propagation in this region, we perform array-based frequency-domain beamforming analysis and single-station based polarization analysis to investigate the characteristics of seismic wave propagation, using airgun-generated P-wave signals recorded by dense array stations in this experiment. The results from these two methods both reveal similar but complex characteristics of seismic wave propagation in the Binchuan basin. The azimuth anomalies off the great-circle path are quite large with values up to 30°, which is caused by strong structural heterogeneity in the very shallow crust. Our research provide a better understanding of the complex geologic structures in this area and provide guidance for detecting concealed faults and distribution of velocity anomalies.

关 键 词:Airgun  signal  Body  waves  Wave  propagation  Binchuan  basin  Beamforming  Polarization  analysis
收稿时间:2019/1/25 0:00:00
修稿时间:2019/3/13 0:00:00

Characteristics of Seismic Wave Propagation in the Binchuan Region of Yunnan Using a Dense Seismic Array and Large Volume Airgun Shots
SHE Yuyang,YAO Huajian,WANG Weitao,LIU Bin.Characteristics of Seismic Wave Propagation in the Binchuan Region of Yunnan Using a Dense Seismic Array and Large Volume Airgun Shots[J].Earthquake Research in China,2019,33(2):174-185.
Authors:SHE Yuyang  YAO Huajian  WANG Weitao and LIU Bin
Institution:Laboratory of Seismology and Physics of Earth''s Interior & School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China,Laboratory of Seismology and Physics of Earth''s Interior & School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China;Mengcheng National Geophysical Observatory, University of Science and Technology of China, Mengcheng 233500, Anhui, China,Key Laboratory of Seismic Observation and Geophysical Imaging, Institute of Geophysics, China Earthquake Administration, Beijing 100081, China and Laboratory of Seismology and Physics of Earth''s Interior & School of Earth and Space Sciences, University of Science and Technology of China, Hefei 230026, China
Abstract:The Binchuan region of Yunnan is a structurally complex region with mountains, basins, and active faults. In this situation,seismic wave propagation exhibits complex characteristics due to strong heterogeneity of underground media instead of following the great-circle path. In order to obtain a high-resolution shallow crustal structure, a dense seismic array was deployed during March 21 to May 30, 2017 in this area. To better understand the complexities of seismic wave propagation in this region, we perform array-based frequency-domain beamforming analysis and single-station based polarization analysis to investigate the characteristics of seismic wave propagation, using airgun-generated P-wave signals recorded by dense array stations in this experiment. The results from these two methods both reveal similar but complex characteristics of seismic wave propagation in the Binchuan basin. The azimuth anomalies off the great-circle path are quite large with values up to 30°, which is caused by strong structural heterogeneity in the very shallow crust. Our research provide a better understanding of the complex geologic structures in this area and provide guidance for detecting concealed faults and distribution of velocity anomalies.
Keywords:Airgun signal  Body waves  Wave propagation  Binchuan basin  Beamforming  Polarization analysis
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