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Focal Mechanism Solutions of the 2008 Wenchuan earthquake sequence from P-wave polarities and SH/P amplitude ratios: new results and implications

机译:从P波极性和SH / P振幅比看2008年汶川地震序列的震源机制解:新结果和启示

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Abstract The 2008 Wenchuan earthquake, a major intraplate earthquake with M ~(w) 7.9, occurred on the slowly deforming Longmenshan fault. To better understand the causes of this devastating earthquake, we need knowledge of the regional stress field and the underlying geodynamic processes. Here, we determine focal mechanism solutions (FMSs) of the 2008 Wenchuan earthquake sequence (WES) using both P-wave first-motion polarity data and SH/P amplitude ratio (AR) data. As P-wave polarities are more reliable information, they are given priority over SH/P AR, the latter of which are used only when the former has loose constraint on the FMSs. We collect data from three categories: (1) permanent stations deployed by the China Earthquake Administration (CEA); (2) the Western Sichuan Passive Seismic Array (WSPSA) deployed by Institute of Geology, CEA; (3) global stations from Incorporated Research Institutions for Seismology. Finally, 129 events with magnitude over M ~(s) 4.0 in the 2008 WES are identified to have well-constrained FMSs. Among them, 83 are well constrained by P-wave polarities only as shown by Cai et al. (Earthq Sci 24(1):115–125, 2011), and the rest of which are newly constrained by incorporating SH/P AR. Based on the spatial distribution and FMSs of the WES, we draw following conclusions: (1) the principle compressional directions of most FMSs of the WES are subhorizontal, generally in agreement with the conclusion given by Cai et al. (2011) but with a few modifications that the compressional directions are WNW–ESE around Wenchuan and ENE–WSW around Qingchuan, respectively. The subhorizontal compressional direction along the Longmenshan fault from SW to NE seems to have a left-lateral rotation, which agrees well with regional stress field inverted by former researchers (e.g., Xu et al., Acta Seismol Sin 30(5), 1987; Acta Geophys Sin 32(6), 1989; Cui et al., Seismol Geol 27(2):234–242, 2005); (2) the FMSs of the events not only reflected the regional stress state of the Longmenshan region, but also were obviously controlled by the faults to some extent, which was pointed out by Cai et al. (2011) and Yi et al. (Chin J Geophys 55(4):1213–1227, 2012); (3) while the 2008 Wenchuan earthquake and some of its strong aftershocks released most of the elastic energy accumulated on the Longmenshan fault, some other aftershocks seem to occur just for releasing the elastic energy promptly created by the 2008 Wenchuan earthquake and some of its strong aftershocks. (4) Our results further suggest that the Longmenshan fault from Wenchuan to Beichuan was nearly fully destroyed by the 2008 Wenchuan earthquake and accordingly propose that there is less probability for great earthquakes in the middle part of the Longmenshan fault in the near future, although there might be a barrier to the southwest of Wenchuan and it is needed to pay some attention on it in the near future.
机译:摘要2008年汶川地震是M〜(w)7.9级​​的板内大地震,发生在缓慢变形的龙门山断裂上。为了更好地理解这场毁灭性地震的原因,我们需要了解区域应力场和潜在的地球动力学过程。在这里,我们使用P波初动极性数据和SH / P振幅比(AR)数据确定2008年汶川地震序列(WES)的震源机制解(FMS)。由于P波极性是更可靠的信息,因此它们的优先级高于SH / P AR,后者仅在前者对FMS具有宽松约束时才使用。我们从三类数据中收集数据:(1)中国地震局(CEA)部署的永久性站点; (2)中国工程院地质研究所部署的川西被动地震台阵(WSPSA); (3)联合地震研究所的全球站点。最终,在2008年WES中有129个事件的M〜(s)4.0以上的事件被确定为具有受约束的FMS。其中只有83个受P波极性约束,仅Cai等人的研究表明。 (Earthq Sci 24(1):115-125,2011年),其余部分通过合并SH / P AR而受到新的约束。根据WES的空间分布和FMS,我们得出以下结论:(1)大多数WES FMS的主压缩方向是水平的,一般与Cai等人的结论一致。 (2011年),但作了一些修改,压缩方向分别是汶川附近的WNW-ESE和青川附近的ENE-WSW。从西南部到东北,沿龙门山断裂的水平下压缩方向似乎是左旋的,这与以前的研究者所反转的区域应力场吻合得很好(例如,Xu等,Acta Seismol Sin 30(5),1987; P。地球物理学报32(6),1989; Cui等,Seismol Geol 27(2):234–242,2005); (2)事件的FMS不仅反映了龙门山地区的区域应力状态,而且明显受到断层的控制,蔡等人指出。 (2011)和Yi等。 (中国地质杂志55(4):1213–1227,2012年); (3)2008年汶川地震及其部分强余震释放了龙门山断裂带上积累的大部分弹性能,而其他一些余震似乎只是为了释放2008年汶川地震及其部分强震所产生的弹性能余震。 (4)我们的结果进一步表明,从汶川到北川的龙门山断层几乎被2008年汶川地震破坏了,因此,即使在不久的将来,龙门山断层中部发生大地震的可能性也较小可能是汶川西南的屏障,因此需要在不久的将来对此加以注意。

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