首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >InSAR data as a field guide for mapping minor earthquake surface ruptures: Ground displacements along the Paganica Fault during the 6 April 2009 L'Aquila earthquake
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InSAR data as a field guide for mapping minor earthquake surface ruptures: Ground displacements along the Paganica Fault during the 6 April 2009 L'Aquila earthquake

机译:InSAR数据作为绘制轻微地震表面破裂的实地指南:2009年4月6日拉奎拉地震沿帕格尼察断层的地面位移

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On 6 April 2009, a moderate earthquake (M_w = 6.3;M_1 = 5.8) struck the Abruzzo region in central Italy, causing more than 300 fatalities and heavy damage to L'Aquila and surrounding villages. Coseismic surface effects have been thoroughly documented by timely field surveys as well as by remote sensing analyses of satellite images. The outstanding quality of geological, seismological, geodetic, and interferometric synthetic aperture radar (InSAR) information arguably represents the best ever data set made available immediately after a moderate seismic event. Based on this data set, we aim at testing the capability of coupled geological and InSAR data to map surface faulting patterns associated with moderate earthquakes. Coseismic ground ruptures have been mapped at a scale of 1:500 in the whole epicentral area. Traces of surface ruptures have been inferred from linear phase discontinuities identified in the interferogram. A very good agreement between the two methods resulted in the characterization of the main surface rupture along the Paganica fault. The same approach applied to ground ruptures hypothesized along other capable fault segments provided more questionable results. Thus, the combined field and InSAR approach appeared useful for detecting continuous surface ruptures exceeding 1 km in length and showing displacements greater than a few centimeters. These are the typical faulting parameters for moderate earthquakes (6.0
机译:2009年4月6日,意大利中部的阿布鲁佐地区发生了中度地震(M_w = 6.3; M_1 = 5.8),造成300多人死亡,并对拉奎拉和周边村庄造成了严重破坏。通过及时的现场调查以及对卫星图像的遥感分析,已充分记录了地震面效应。优质的地质,地震,大地测量和干涉合成孔径雷达(InSAR)信息可以说是有史以来最好的数据集,可在中等地震事件后立即获得。基于此数据集,我们旨在测试地质和InSAR耦合数据绘制与中等地震有关的地表断层图的能力。在整个震中区域,地震震地破裂的比例为1:500。从干涉图中确定的线性相位不连续性可以推断出表面破裂的痕迹。两种方法之间的很好的一致性导致了沿着帕格尼察断层的主表面破裂的表征。假设将其用于其他可能断层段的地面破裂的相同方法,则提供了更多可疑的结果。因此,组合的场法和InSAR方法似乎可用于检测长度超过1 km的连续表面破裂,并且位移大于几厘米。这些是亚平宁山脉中度地震(6.0

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