Interseismic slip distribution and locking characteristics of the mid-southern segment of the Tanlu fault zone  

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作  者:Shuyuan Yu Layue Li Jiaji Luo Yuanyuan Yang 

机构地区:[1]Anhui Earthquake Agency,Hefei,230031,China [2]Anhui Mengcheng National Geophysical Observatory,MengCheng,200527,China [3]China University of Mining and Technology,Xuzhou,221116,China [4]The First Monitoring and Application Center,Tianjin,300180,China

出  处:《Earthquake Research Advances》2024年第3期16-26,共11页地震研究进展(英文)

基  金:supported by the National Natural Science Foundation of China (Grand number 41802224);the Youth Program of Seismological Science and Technology Spark Program of China Earthquake Administration (Grand No. XH23019YC);the Joint Open Fund of National Geophysical Observation and Research Station in Mengcheng, Anhui Province (Grand No. MENGO-202114)。

摘  要:We employ the block negative dislocation model to invert the distribution of fault coupling and slip rate deficit on the different segments of the Tanlu(Tancheng-Lujiang) fault zone, according to the GPS horizontal velocity field from 1991 to 2007(the first phase) and 2013 to 2018(the second phase). By comparing the deformation characteristics results, we discuss the relationship between the deformation characteristics with the M earthquake in Japan. The results showed that the fault coupling rate of the northern section of Tancheng in the second phase reduced compared with that in the first phase. However, the results of the two phases showed that the northern section of Juxian still has a high coupling rate, a deep blocking depth, and a dextral compressive deficit, which is the enrapture section of the 1668 Tancheng earthquake. At the same time, the area strain results show that the strain rate of the central and eastern regions of the second phase is obviously enhanced compared with that of the first phase. The occurrence of the great earthquake in Japan has played a specific role in alleviating the strain accumulation in the middle and south sections of the Tanlu fault zone. The results of the maximum shear strain show that the shear strain in the middle section of the Tanlu fault zone in the second phase is weaker than that in the first phase, and the maximum shear strain in the southern section is stronger than that in the first phase. The fault coupling coefficient of the south Sihong to Jiashan section is high, and it is also the unruptured section of historical earthquakes. At the same time, small earthquakes in this area are not active and accumulate stress easily, so the future earthquake risk deserves attention.

关 键 词:Tanlu fault Middle-southern segment GPS velocity field Inter-seismic slip Fault couping Steepest descent method 

分 类 号:P315[天文地球—地震学]

 

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