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《Chinese Journal of Geophysics》 2009-02
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Seismotectonic study by relocation of the Wench uan M_S 8.0 earthquake sequence

CHEN Jiu-Hui, LIU Qi-Yuan, LI Shun-Cheng, GUO Biao, LI Yu, WANG Jun, QI Shao-HuaState Key laboratory of Earthquake Dynamics , Institute of Geology , China Earthquake Administrator, Beijing 100029, China  
Accurate relocation of the Wenchuan earthquake sequence is obtained by using the double difference relocation algorithm from the integrated travel time data recorded at the Western Sichuan movable seismic array and the earthquake emergency response stations. In this presentation, the seismotectonic deformation and rupture process is also investigated. The results show that the Wenchuan earthquake sequence begins from the south margin of the Pengguan Massif and extends northeastward for about 350 km within a width of 20-30 km. The spatial distribution of the aftershocks exhibits obvious inhomogeneity which can be divided into small sectors. The rigid Pengguan Massif controls the distribution of the earthquake sequence and the complex rupture process. The aftershocks occurred mainly in the depth ranging from 4 to 24 km inside the high velocity layer of the upper crust in the eastern border of the Longmen Shan and above the low velocity zone in the middle crust. Depth distributions of the aftershocks across the sections show clearly that the Yingxiu-Beichuan, Guanxian-Jiangyou and the Wenchuan-Maowen faults merge into a shear belt at the depth of 20-22 km. There exists an aftershock distribution belt from Xiaoyudong to the direction of Lixian, which is perpendicular to the strike of the Longmen Shan and longer than 60 km. Consulting with the results of the focal mechanism of strong aftershocks and the rupture process of the main shock, it could be inferred that the lower part of the Pengguan Massif has been broken up during the earthquake after long term stress accumulation, which would be the main reason why such a great earthquake occurred.
【Fund】: 国家重点基础研究发展计划(973)项目(2004CB418402);; 汶川8.0级地震科学考察专项和地震动力学国家重点实验室自主科研项目(LED2008-A04)联合资助
【CateGory Index】: P315
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