Crustal structure along the Wanzai–Yongchun profile in the Cathaysia Block, Southeast China, constrained by a joint active- and passive-source seismic experiment

Author:

Huang Minfu12,Xu Tao13,Lü Qingtian4,Lin Jiyan125,Bai Zhiming13,Deng Yangfan6,Zhang Yongqian4,Badal José7

Affiliation:

1. State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences , Beijing 100029 , China

2. University of Chinese Academy of Sciences , Beijing 100049 , China

3. Innovation Academy for Earth Science, CAS , Beijing 100029 , China

4. Chinese Academy of Geological Sciences , Beijing 100037 , China

5. Geophysical Exploration Center, China Earthquake Administration , Zhengzhou 450002 , China

6. State Key Laboratory of Isotope Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences , Guangzhou 510640 , China

7. Physics of the Earth, University of Zaragoza , Pedro Cerbuna 12, Zaragoza 50009 , Spain

Abstract

SUMMARY Since the Mesozoic, the South China Block (SCB) has experienced multiple episodes of tectonic magmatism accompanied by metallogenesis. To explore the seismic velocity structure of the crust and its connection with mineralization, we constructed a wide-angle reflection and refraction (WARR) profile by deploying 435 short-period seismometers across the Cathaysia Block in Southeast China. Receiver functions and the H–κ stacking method were applied using a reference 2-D velocity model obtained from the analysis of WARR data. Integration of active- and passive-source seismic data enabled us to obtain an image of the crust and the average Vp/Vs ratio value of the SCB and produce several results: (1) The crustal thickness varies west-to-east from 28 km below the Qinhang metallogenic belt to 32 km below the Wuyishan metallogenic belt, and the average value of the Vp/Vs ratio for the crust is 1.71. Both the thickness of the crust and the average Vp/Vs ratio are lower than the average global values for the continental crust. (2) The relatively low Vp/Vs ratio and thin crust along the profile could be generated by thinning of the lower crust in the SCB as a result of the backarc extension related to westward subduction of the Paleo-Pacific plate below East Asia. (3) The Moho depth estimated from H–κ stacking with the help of the background P-wave velocity model modified by the WARR model fits better than using a global seismic velocity model with its common conversion point image, which supports a potential seismic data analysis technique provided with a joint deployment of both active- and passive-source seismic observation system with a shorter period.

Funder

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Geochemistry and Petrology,Geophysics

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