Shear wave velocity structure in the middle segment of the Xiaojiang fault zone using ambient noise tomography

Author:

Liang Yao,Xie Tongtong,Lu Zhanwu,Li Qiusheng,Zhang Xinyan,Wang Guangwen,Wang Guan,Chen Si,Chang Chang

Abstract

The middle segment of the Xiaojiang fault zone consists of strike-slip faults with frequent strong and medium–strong earthquakes under the joint influence of NE-trending faults and deep structural characteristics. The distribution characteristics of the deep subfaults of each branch need to be revealed. Two short-period dense array survey lines are deployed in the area. Shear wave velocity structures are obtained using ambient noise tomography. The results reveal that the faults in each branch dip nearly eastward, with strike-slip characteristics in the north‒south direction. Strong velocity lateral variation infer imply that the deformation characteristics of the upper crust may be brittle. NE faults are observed, which are characterized by typical compression. The high-velocity zone in the Songming Basin may be related to the deeper upwelling of high-velocity strata in the upper crustal flow.

Funder

Key Laboratory of Deep-Earth Dynamics of Ministry of Natural Resources

National Natural Science Foundation of China

China Geological Survey

Publisher

Frontiers Media SA

Subject

General Earth and Planetary Sciences

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