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2004年7月11日西藏M_w6.2级地震震源破裂过程研究
Rupture process of the July 11, 2004, Tibet (M_w 6.2) earthquake
【摘要】 基于有限断层模型,利用远场体波波形数据研究了2004年7月11日西藏MW6.2级地震的震源破裂过程.结果表明该地震是一个以倾滑为主的浅源正断层型地震,震源深度为12.5km,断层面走向152°,倾角44°,平均倾滑角-117°.破裂在震中处成核,然后以2.8kms的平均速度向两侧传播,在震中以东偏北5km处达到最大滑动43cm.该地震主张力轴近EW方向,受浅部NNWSSE或NS向裂谷带控制,青藏高原南部的逆冲运动是引发这次地震的直接原因.
【Abstract】 The source rupture process of the July 11,2004, Tibet (M_w 62) earthquake is investigated by a finite fault model using far field broadband body wave records. The results show that it is a shallow dip-slipping predominant normal-fault earthquake, and the hypocentral depth is about 125km. The fault plane has a strike of 152° and a dip of 44°, and the average slip angle is -117°. The rupture nucleates near the hypocenter, then propagates to the two ends of the fault with an average velocity of 28km/s, and the slip reaches to its maximum value of 43cm at about 5km northeast of the epicenter. The main principal \%T\% axis of the fault plane solution shows roughly EW extension, which is controlled by a local rift belt in NNW-SSE or nearly NS direction, and the thrust motion of the southern Tibetan plateau towards north is the main mechanical reason of this earthquake.
【Key words】 Finite fault model; Source rupture process; Simulated_annealing inversion;
- 【文献出处】 地球物理学报 ,Chinese Journal of Geophysics , 编辑部邮箱 ,2005年04期
- 【分类号】P315.31
- 【被引频次】19
- 【下载频次】220