Velocity structure of the upper crust and its correlation with earthquake swarms activity in Laizhou Bay and its adjacent areas, China

被引:0
作者
Jinchao Shen
Minmin Xu
Shicheng Li
Huiyong Yin
机构
[1] Jinan Earthquake Monitoring Center,Shandong Key Laboratory of Depositional Mineralization and Sedimentary Mineral, College of Earth Science and Engineering
[2] Shandong University of Science and Technology,Department of Land Resource Management, School of Public Administration
[3] Shandong Academy of Environmental Sciences Co.,undefined
[4] Ltd,undefined
[5] China University of Geosciences,undefined
来源
Acta Geodaetica et Geophysica | 2020年 / 55卷
关键词
Velocity structure; Earthquake swarm activity; The double-difference seismic tomography;
D O I
暂无
中图分类号
学科分类号
摘要
This study used the double-difference seismic tomography method to obtain the upper crustal velocity structure in Laizhou Bay and its adjacent areas (LBAA). We found that the horizontal and vertical distributions of the earthquakes after relocation in earthquake swarms are more concentrative than that before relocation. The lateral heterogeneity of crustal velocity structure near the surface in the LBAA is weak, and the low-velocity sedimentary caprocks are developed in most areas except for the Jiaobei uplift. The velocity structure in 5–25 km depth range is highly heterogeneity, which is closely related to different tectonic units. The local uplift tectonic units in Jiyang depression show high-velocity anomalies and should have deep crustal media properties. The high-velocity anomalies under the crust of Tancheng–Lujiang fault zone and the northern Laizhou Bay indicate the properties of upwelling mantle material media. Earthquake swarms activity in the study area are mainly concentrated in the high-velocity interlayer of the upper crust and its periphery. Compared with the relatively stable high-velocity body at the bottom crust, the location of high-velocity interlayer in the study area is more prone to earthquakes under the combined action of gravity and tectonic stress.
引用
收藏
页码:421 / 436
页数:15
相关论文
共 190 条
  • [1] Aki K(1976)Determination of three-dimensional velocity anomalies under a seismic array using first P arrival times from local earthquakes, 1. A homogeneous initial model J Geophys Res 81 4381-4399
  • [2] Lee WHK(2012)Seismic velocity structures in the southern California plate-boundary environment from double-difference tomography Geophys J Int 190 1181-1196
  • [3] Allam AA(2017)Ten kilometer vertical Moho offset and shallow velocity contrast along the Denali fault zone from double-difference tomography, receiver functions, and fault zone head waves Tectonophysics 721 56-69
  • [4] Ben-Zion Y(2018)Seismic velocity structure in the Hot Springs and Trifurcation areas of the San Jacinto fault zone, California, from double-difference tomography Geophys J Int 198 978-999
  • [5] Allam AA(2018)Structure of crust and upper mantle beneath NW Himalayas, Pamir and Hindukush by multi-scale double-difference seismic tomography Phys Earth Planet Inter 281 92-102
  • [6] Schulte-Pelkum V(2003)V J Geophys Res-Solid Earth 57 1101-1110
  • [7] Ben-Zion Y(2014) and V Chin J Geophys 118 5404-5416
  • [8] Tape C(2013)/V J Geophys Res-Solid Earth 76 1025-1052
  • [9] Ruppert N(1986) images in the Mw6.0 Colfiorito Fault region(central Italy): a contribution to the understanding of seismotectonic and seismogenic processes Bull Seismol Soc Am 390 75-83
  • [10] Ross ZE(2004)Fine velocity structure of the Longmenshan fault zone by double-difference tomography China Tectonophys 97 4809-4822