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首页> 外文期刊>Bulletin of the Seismological Society of America >Multiple-Fault, Slow Rupture of the 2016 M-w 7.8 Kaikoura, New Zealand, Earthquake: Complementary Insights from Teleseismic and Geodetic Data
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Multiple-Fault, Slow Rupture of the 2016 M-w 7.8 Kaikoura, New Zealand, Earthquake: Complementary Insights from Teleseismic and Geodetic Data

机译:2016 M-W 7.8 Kaikoura,新西兰,地震的多重故障,缓慢破裂:来自Telesismic和大地测量数据的互补见解

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摘要

We investigate the complex rupture properties of the 2016 M-w 7.8 Kaikoura earthquake by jointly inverting teleseismic body-wave and regional Global Positioning System (GPS) coseismic deformation data within a multifault model. We validate our results by forward modeling recorded Interferometric Synthetic Aperture Radar (InSAR) interferograms. Our study reveals the complementary depth-dependent contributions of teleseismic and local geodetic data to the cumulative slip distribution. The resulting joint inversion model of the rupture process and slip pattern explains both the far-field (teleseismic data) and near-field (GPS and InSAR data) observations. The model highlights variable rupture velocity throughout the sequence, with an initial high-velocity (2.25 km/s) pulse followed by slow (similar to 1.5 km/s) yet significant reverse and transverse motion on faults stretching at least 160 km to the north of the origin. We map significant thrust motion on a dipping plane representing the combined effects of the Hope, Hundalee, and Jordan thrust faults as well as large strike-slip motion along the Kekerengu and Needles faults. The mainshock also ruptured the deep portion of the subduction interface at a velocity of 1.0 km/s.
机译:我们通过在多级库模型中共同反映了Telesmic Body-Wave和区域全球定位系统(GPS)电影变形数据来调查2016 M-W 7.8 Kaikoura地震的复杂性能。我们通过转发录制的干涉性合成孔径雷达(INSAR)干涉图来验证我们的结果。我们的研究揭示了互补的互相依赖性对累计滑动分布的互相依赖性贡献。所得到的破裂过程和滑动模式的联合反演模型解释了远场(Teleismic数据)和近场(GPS和INSAR数据)观察。该模型在整个序列中突出了可变的破裂速度,具有初始高速(2.25 km / s)脉冲,然后慢速(类似于1.5 km / s),但对北伸展至少160公里的故障有显着的反向和横向动作起源。我们将重要的推力运动映射到代表希望,Hundalee和Jordan推力故障的综合影响以及沿Kekerengu和针头的大滑动运动。主轴在1.0 km / s的速度下也破裂了俯冲界面的深部分。

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