Investigating fault structure characteristics based on aeromagnetic data and precise relocation results of small earthquakes: A case study of the Panxi area
LI Jiao-Jiao(), ZHANG Yong-Jun, HE Yi-Yuan, LI Yi-Chuan, LI Shi-Jun, CHEN Yao
China Aero Geophysical Survey and Remote Sensing Center for Land and Resources, Beijing 100083, China
This study investigated the Panxi area as an example to delineate faults and determine their current activity levels using aeromagnetic data and precise relocation results of small earthquakes. A total of 42 faults were delineated in the study area. Among them, 21 faults were inferred to be active currently, including 10 newly inferred active faults. This study examined the three-dimensional structural characteristics of some local sections of major faults in the study area. The results indicate that precise relocation results of small earthquakes can identify highly active faults and characterize their deep structures. Additionally, based on the delineation of basement faults using aeromagnetic data, the locations of active faults were constrained, and concealed active faults within the sedimentary cover were also determined. The proposed method holds certain practical significance for promoting research on the spatial distribution and activity of fault structures using aeromagnetic data.
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