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3-D finite element modeling for evolution of stress field and interaction among strong earthquakes in Sichuan-Yunnan region 被引量:3

3-D finite element modeling for evolution of stress field and interaction among strong earthquakes in Sichuan-Yunnan region
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摘要 Based on the latest achievement about activities of geological structure, a 3-D finite-element model containing four layers of upper crust, lower crust (two layers) and upper mantle is established in the paper. By repeated tests and revisions, the boundary conditions of the model are determined. And then the background stress field, the stress field caused by fault creep and the stress field triggered by strong earthquake in Sichuan-Yunnan region, as well as their dynamic variations are calculated. The results indicate that the latter earthquake often occurs in the area with positive Coulomb rupture stress change associated with the former one, the former earthquake has a triggering effect on the latter one to a certain extent, and strong earthquake often occur in groups under the background of high stress, which is of great significance for distinguishing seismic anomalies, as well as for improving the level of earthquake prediction. Based on the latest achievement about activities of geological structure, a 3-D finite-element model containing four layers of upper crust, lower crust (two layers) and upper mantle is established in the paper. By repeated tests and revisions, the boundary conditions of the model are determined. And then the background stress field, the stress field caused by fault creep and the stress field triggered by strong earthquake in Sichuan-Yunnan region, as well as their dynamic variations are calculated. The results indicate that the latter earthquake often occurs in the area with positive Coulomb rupture stress change associated with the former one, the former earthquake has a triggering effect on the latter one to a certain extent, and strong earthquake often occur in groups under the background of high stress, which is of great significance for distinguishing seismic anomalies, as well as for improving the level of earthquake prediction.
出处 《Acta Seismologica Sinica(English Edition)》 CSCD 2004年第6期625-634,共10页
关键词 3-D finite element model background STRESS FIELD STRESS FIELD caused by FAULT CREEP STRESS FIELD triggered by strong earthquake D finite element model background stress field stress field caused by fault creep stress field triggered by strong earthquake
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