New Magnetotelluric Data Reveal Deep Fault Boundaries and Contrasting Late Cenozoic Fault Kinematics Between the Qilian Shan Thrust Wedge and Beishan‐Alxa Block, Western China

Author:

Yang Haibo1ORCID,Sun Xiangyu1ORCID,Zhan Yan1ORCID,Yang Xiaoping1ORCID,Cunningham Dickson2ORCID,Zhao Lingqiang3ORCID,Zuo Yuqi1

Affiliation:

1. State Key Laboratory of Earthquake Dynamics Institute of Geology China Earthquake Administration Beijing China

2. Department of Environmental Earth Science Eastern Connecticut State University Willimantic CT USA

3. The Second Monitoring and Application Center China Earthquake Administration Xi'an China

Abstract

AbstractThe structural connectivity and kinematic relationship between the Altyn Tagh sinistral strike‐slip fault (ATF) and Qilian Shan fold‐and‐thrust belt along the north Tibetan margin east of 96°E is an important question for tectonicists interested in the evolving active deformation field of Central Asia and associated earthquake hazards of China's Hexi Corridor region. New results from a detailed 130‐km‐long N‐S magnetotelluric (MT) survey from the Qilian Shan to Beishan elucidates the locations and down‐dip orientations of major faults. Importantly, the results indicate that the Heishan‐Jinta’Nanshan fault system roots steeply into the lower crust, is unconnected to the Qilian Shan thrust wedge, and has reactivated the margin of the North China Craton and an older, regional ductile shear belt. The structurally linked ATF‐Heishan‐Jinta’Nanshan system defines a fundamental kinematic boundary in central Asia between the NE directed Qilian Shan thrust belt to the south and the eastwardly extruding Beishan‐Alxa Block to the north.

Publisher

American Geophysical Union (AGU)

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