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小震震源机制与应力场反演方法及其应用研究 被引量:2
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作者 严川 《国际地震动态》 2016年第2期43-44,共2页
众所周知,构造应力场的分析与研究在地球科学研究以及生产实践应用中都具有相当重要的地位。同样,我们也知道,天然地震的震源机制在构造应力场的分析和研究中也具有相当重要的地位。地震矩张量的引入使地震产生的远场位移与描述震源机... 众所周知,构造应力场的分析与研究在地球科学研究以及生产实践应用中都具有相当重要的地位。同样,我们也知道,天然地震的震源机制在构造应力场的分析和研究中也具有相当重要的地位。地震矩张量的引入使地震产生的远场位移与描述震源机制的地震矩张量之间成为线性关系。如果地震产生的位移与描述地震波传播路径效应的格林函数已知,则很容易通过波形反演得到地震矩张量,即震源机制。 展开更多
关键词 震源机制反演方法 应力场反演方法 数值试验 小江断裂巧家段
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Rupture process of the M_s 7.0 Lushan earthquake, 2013 被引量:25
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作者 LIU ChengLi ZHENG Yong +2 位作者 GE Can XIONG Xiong HSU HouTze 《Science China Earth Sciences》 SCIE EI CAS 2013年第7期1187-1192,共6页
On April 20, 2013 at 8:02 am, a magnitude 7.0 earthquake occurred in Lushan County, Sichuan Province, China, which induces massive landslides, causes great losses to life and property. Based on the locations of after... On April 20, 2013 at 8:02 am, a magnitude 7.0 earthquake occurred in Lushan County, Sichuan Province, China, which induces massive landslides, causes great losses to life and property. Based on the locations of aftershocks provided by the China Earthquake Network Center and the characteristic of Longmenshan active faults system, combined with the current preliminary focal mechanism solution, the fault rupture direction is determined. With the finite fault inversion method, we invert the rupture process of the Lusban Ms7.0 earthquake by teleseismic waveforms data. The inversion results indicate that the main shock is dominated by thrust fault component and the rupture initiated at depth of 15 km, and most of slip ruptured around the hypocenter with the peak slip of about 1.5 m. Most of rupture slips released at the first 20 s and the main rupture occurred at the first 10 s after the onsets of the mainshock. Most of seismic energy released near the hypocenter with a length of 28 km, especially on both sides of the hypocenter with the range of 20 km, and the seismic energy released relatively smaller in other areas. There is a large area with weak slip between the main rupture and another two asperities on both sides of the hypocenter; it may imply that the accumulated strain on the rupture fault has not been completely released. Therefore, there is a significant possibility of having strong aftershocks in the areas where energy is not fully released. This is also the main reason why there are a lot of moderate to strong aftershocks in the Lushan aftershock sequence. In addition, there is an earthquake vacant zone with a length of about 50 km between the Wenchuan Mw7.9 earthquake and this event, which is of high earthquake risk and is deserved to be paid close attention to. 展开更多
关键词 Lushan earthquake finite fault model rupture process Longmenshan fault system
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