首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Time-dependent model of aseismic slip on the central San Andreas Fault from InSAR time series and repeating earthquakes
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Time-dependent model of aseismic slip on the central San Andreas Fault from InSAR time series and repeating earthquakes

机译:InSAR时间序列和重复地震的中部圣安地列斯断层抗震滑动的时变模型

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The Central segment of San Andreas Fault (CSAF) is characterized by a nearly continuous right-lateral aseismic slip. However, observations of the creep rate obtained using small characteristically repeating earthquakes (CREs) show pulses of creep along the CSAF, which may indicate spatially and temporally variable seismic hazard along the CSAF. Therefore, the goal of this study is to obtain a high-resolution time-dependent model of creep along the CSAF to examine this hypothesis. To this end, we apply a time-dependent creep modeling approach, which combines interferometric synthetic aperture radar (InSAR) surface deformation time series and observations of fault creep obtained from CREs. The SAR data set includes C band scenes acquired by the ERS-2 and Envisat satellites between 2003 and 2011. The resulting creep rate distribution implies a peak rate up to 32mm/yr along the central part of the CSAF. Afterslip due to the 2004 Parkfield earthquake on the southeastern segment of the CSAF is also manifest in the model, and there is clear evidence of creep pulsing along strike and depth of the CSAF. Estimated annual rate of slip deficit accumulation is equivalent to a magnitude 5.6-5.7 earthquake. Taking advantage of the time-dependence of our model, we also refine the scaling relationship, which associates the released seismic moment due to a CRE event with the amount of creep on the fault, surrounding the CRE patches. This study provides the first kinematic model of creep pulsing, constrained using geodetic and seismic data, which can enhance time-dependent seismic hazard maps and improve earthquake operational forecast models.
机译:圣安德烈亚斯断层(CSAF)的中段具有近乎连续的右侧抗震滑动。但是,使用小型特征重复地震(CRE)所获得的蠕变速率的观察结果显示,沿CSAF的蠕变脉动可能表明沿CSAF的时空变化的地震危险。因此,本研究的目的是获得沿CSAF的高分辨率时变蠕变模型,以检验这一假设。为此,我们采用了一种与时间有关的蠕变建模方法,该方法结合了干涉合成孔径雷达(InSAR)表面变形时间序列和从CRE获得的断层蠕变观测值。 SAR数据集包括ERS-2和Envisat卫星在2003年至2011年之间采集的C波段场景。由此产生的蠕变速率分布意味着沿CSAF中心部分的峰值速率高达32mm / yr。该模型还显示了2004年CSAF东南段的2004年Parkfield地震引起的后滑,并且有明显证据表明沿CSAF的走向和深度有蠕动脉动。估计每年的滑坡赤字积累率相当于5.6-5.7级地震。利用我们模型的时间依赖性,我们还优化了比例关系,该关系将CRE事件导致的释放地震矩与CRE斑块周围的断层蠕变量相关联。这项研究提供了第一个蠕动脉动的运动学模型,该模型受大地测量和地震数据的约束,可以增强时变地震灾害图并改进地震运行预测模型。

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