Journal of Jilin University(Earth Science Edition) ›› 2023, Vol. 53 ›› Issue (6): 1950-1968.doi: 10.13278/j.cnki.jjuese.20230247

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 Research Status and Prospect of Deep Driving Mechanism of Co-Occurrence of Geothermal Resources and Seismic Activity

Han Jiangtao 1, 2, Niu Pu1, Liu Lijia1, Wu Yihao1, Xin Zhonghua1, Li Zhuoyang1, 3, Jia Xiaodong3   

  1. 1. College of GeoExploration Science and Technology, Jilin University, Changchun 130026, China
    2. Key Laboratory of Geophysical Exploration Equipment, Ministry of Education of China (Jilin University), 
    Changchun 130026, China
    3. Liaoning Earthquake Agency,Shenyang 110031,China
  • Online:2023-11-26 Published:2023-12-13
  • Supported by:
    the Project of Jilin Province Science and Technology Development (20220101152JC), Liaoning Provincial Science Public Welfare Research Fund (Soft Science Research Program) (2023JH4/10700060) and the Interdisciplinary Integration and Innovation Project of Jilin University (JLUXKJC2021ZZ11)

Abstract:  The geological processes and their interactions in the earth not only control the formation and evolution of global geological patterns, but also control the formation of geothermal resources and the occurrence of seismic activities. Through systematic investigation and summary, this paper systematically discusses the symbiotic deep driving mechanism of geothermal resources and seismic activities. Firstly, the background of the formation of global high-temperature geothermal and large/ultra-large seismic zones are summarized. Most high-temperature geothermal and large earthquakes overlap in spatial distribution and are formed  at  active plate margins, while medium-low-temperature geothermal is often formed in  plates and accompanied by seismic activities. Secondly, the deep driving factors of the symbiosis between geothermal resources and seismic activity are summarized, and it is found that fluid and fault structure play a crucial role in the release of heat energy and earthquake, and are the main controlling factors of geothermal resources and seismic activity in deep depth. Thirdly , the results of deep geophysical exploration of geothermal resources and seismic activity are summarized, indicating that the homology and causality relationship between geothermal and earthquake can be revealed by magnetotelluric methods, and geothermal and earthquake are derived from the exchange of deep matter and energy. Finally, the research methods and development direction of the deep driving mechanism of the co-occurrence of geothermal resources and seismic activities are prospected.

Key words:  , geothermal resources, seismic activity, symbiosis mechanism, deep heat-control factors, deep geophysics

CLC Number: 

  • P631
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