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国家重点基础研究发展计划(2008CB425702-2)

作品数:2 被引量:61H指数:2
相关作者:赵国泽詹艳王立凤王阎昭蔡军涛更多>>
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发文基金:国家自然科学基金国家重点基础研究发展计划中国地震局汶川8.0级地震应急科学考察项目更多>>
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Deep structure beneath the southwestern section of the Longmenshan fault zone and seimogenetic context of the 4.20 Lushan M_S7.0 earthquake被引量:37
2013年
Magnetotelluric measurements were carried out along two profiles across the middle and southwestern sections of the Longmenshan fault zone(LMSf)from 2009 to 2011,after the 2008 Wenchuan MW7.9 earthquake.The former profile crosses the Wenchuan event epicenter and the latter one crosses 2013 Lushan MS7.0 event epicenter.The data were analyzed using advanced processing techniques,including phase tensor and two-dimensional inversion methods,in order to obtain reliable 2-D profiles of the electrical structure in the vicinity of the two earthquakes.A comparison of the two profiles indicates both similarities and differences in the deep crustal structure of the LMSf.West of the southwestern section,a crustal high conductivity layer(HCL)is present at about 10 km depth below the Songpan-Garzêblock;this is about 10 km shallower than that under the middle section of the LMSf.A high resistivity body(HRB)is observed beneath the southwestern section,extending from the near surface to the top of upper mantle.It has a smaller size than the HRB observed below the middle section.In the middle section,there is a local area of decreased resistivity within the HRB but there is absence of this area.The 2013 Lushan earthquake occurred close to the eastern boundary of HRB and the Shuangshi-Dachuan fault,of which the seismogenic context has both common and different features in comparison with the 2008 Wenchuan event.On a large scale,the 2013 Lushan earthquake is associated with the HCL and deformation in the crust including HCL of the eastern Tibetan Plateau.In order to assess seismic risk,it is important to consider both the stress state and the detailed crustal structure in different parts of the LMSf.
ZHAN YanZHAO GuoZeUNSWORTH MartynWANG LiFengCHEN XiaoBinLI TaoXIAO QiBinWANG JiJunTANG JiCAI JunTaoWANG YanZhao
关键词:龙门山断裂带深部结构大地电磁测量地壳变形
龙门山断裂带西南段4.20芦山7.0级地震区的深部结构和孕震环境被引量:47
2013年
2008年汶川Mw7.9级地震后,于2009~2011年间,穿过汶川地震所在的龙门山断裂带中段和2013年芦山7.0级地震所在的龙门山断裂带西南段,沿两条剖面开展了大地电磁观测,使用相位张量和二维反演等多种先进的分析解释方法,获得了两条剖面的可信度高的二维电性结构.通过对龙门山西南段和芦山地震区深部结构的深入研究发现,它们与龙门山断裂带中段及汶川地震区深部结构既有相同之处,也有明显差别.西南段西侧松潘-甘孜地块上地壳高阻层下约10km深度出现地壳高导层(HCL),比中段的深度小.西南段自地表到上地幔顶部也存在龙门山高阻体(HRB),但是龙门山高阻体规模比中段的小,其内既没有与西侧地壳高导层相通的低阻层,也没有像汶川地震区那样在龙门山高阻体内部震源区附近出现局部的低阻区.芦山地震发生在龙门山高阻体东侧边界附近,在双石-大川断裂附近,但是汶川地震发生在龙门山高阻体内部,这些构成了芦山地震和汶川地震孕震环境的差异.对青藏高原东部地壳高导层与地壳变形的关系,以及龙门山断裂带不同位置潜在的地震危险性进行了分析.
詹艳赵国泽UNSWORTH Martyn王立凤陈小斌李涛肖骑彬王继军汤吉蔡军涛王阎昭
关键词:龙门山断裂带孕震环境地震危险性
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