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首页> 外文期刊>Bulletin of the Seismological Society of America >The 2015 M-w 8.3 Illapel, Chile, Earthquake: Direction-Reversed Along-Dip Rupture with Localized Water Reverberation
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The 2015 M-w 8.3 Illapel, Chile, Earthquake: Direction-Reversed Along-Dip Rupture with Localized Water Reverberation

机译:2015年M-W 8.3伊芙尔,智利,地震:方向 - 沿着局部水混响垂直逆转

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摘要

The kinematic rupture process of the 2015 Illapel, Chile, earthquake is investigated based on a joint inversion of teleseismic, Interferometric Synthetic Aperture Radar, Global Positioning System, and tsunami data, as well as backprojection (BP) techniques. The coseismic slip area is determined to be similar to 100 x 100 km along strike and along dip, with a peak slip of similar to 7.0 m located similar to 80 km to the north-northeast of the epicenter. The total seismic moment is estimated to be 2.5 x 10(21) N.m (M-w 8.2). The rupture kinematics is featured by unilateral propagation along the strike and reverse rupture along the dip. In our model, the rupture bifurcates to up-dip and down-dip between 20 and 40 s. The downward rupture branch reaches the down-dip border of the rupture area at 30-40 s, reverses its propagation direction, and migrates to the trench between 80 and 100 s. This is also revealed in the BP results in a wide frequency range. The aftershocks on the plate interface are complementary to the coseismic rupture area. Normal-faulting aftershocks are observed in the out-trench area, and its along-strike extent is consistent with that of the near-trench rupture. To determine the source duration of the main event, we compare the teleseismic waveforms of the mainshock and aftershocks at different depths. Coda waves after 100 s are observed in both the mainshock and shallow aftershock waveforms, with similar duration, relative amplitude, and characteristic period (16 s). This is consistent with a theoretical water-reverberation-phase period near the trench. Therefore, it suggests that the coda waves likely originate from water reverberation generated by shallow rupture, instead of from a prolonged source duration.
机译:基于Telesmic,干涉式合成孔径雷达,全球定位系统和海啸数据的联合反演,对2015年Imerapel,智利,地震进行了研究的运动破裂过程,以及BackProjection(BP)技术。 CoSebic Slip面积被确定为类似于罢工和沿倾角100千克的类似,峰值滑动与7.0米类似于震中的北 - 东北部设有7.0米。估计总震动片刻为2.5×10(21)(M-W 8.2)。破裂的运动学是由单侧传播沿着罢工和沿倾角的反向破裂。在我们的模型中,破裂分叉在20到40秒之间倾斜和下降倾斜。向下破裂分支以30-40秒达到破裂面积的下倾斜边框,反转其传播方向,并迁移到80到100秒之间的沟槽。在BP中也揭示了宽频范围的结果。板界面上的余震与电动发电机破裂区域互补。在外沟区区域观察到常规故障余震,并且其沿着沿沟槽破裂的沿着撞击程度一致。为了确定主事件的源持续时间,我们将主屏蔽和余震的Telesmic波形进行比较不同的深度。在主轴和浅止血波形波形中观察到100秒之后的CODA波,具有相似的持续时间,相对幅度和特征周期(16秒)。这与沟槽附近的理论水混响相时段一致。因此,它表明CODA波可能来自浅裂断产生的水混响,而不是延长源持续时间。

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  • 作者单位

    Shanghai Jiao Tong Univ Sch Naval Architecture Ocean &

    Civil Engn Shanghai 200240 Peoples R China;

    Peking Univ Sch Earth &

    Space Sci Beijing 100871 Peoples R China;

    China Earthquake Adm Inst Geol State Key Lab Earthquake Dynam Beijing 100029 Peoples R China;

    Univ Calif Los Angeles Earth Planetary &

    Space Sci Los Angeles CA 90095 USA;

    Univ Chile Ctr Sismol Nacl Santiago Chile;

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  • 正文语种 eng
  • 中图分类 地震学;
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