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Coseismicand postseismicdeformation of a blind thrust ramp from the 3 July 2015 Mw 6.4 Pishan, China earthquake detected with Sentinel-1A radar interferometry

机译:COSEISMICATS和后突显的盲推推坡道从2015年7月3日MW 6.4 Pishan,中国地震检测到HENTINEL-1A雷达干涉测量

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Boosted by the launch of Sentinel-1A radar satellite from the European Space Agency (ESA), we now have the opportunity of fast, full and multiple coverage of the land based deformation field of earthquakes. Here we use the data to investigate a strong earthquake struck Pishan, western China on July 3, 2015. The earthquake fault is blind and no ground break features are found on-site, thus Synthetic Aperture Radar (SAR) data give full play to its technical advantage for the recovery of coseismicdeformation field. By using the Sentinel-1A radar data in the Interferometric Wide Swath mode, we obtain 1 track of InSARdata over the struck region, and resolve the 3D ground deformation generated by the earthquake. Then the Line-of-Sight (LOS) InSARdata are inverted for the slip-distribution of the seismogenicfault.
机译:从欧洲航天局(ESA)发布的Sentinel-1A雷达卫星推出,我们现在有机会快速,充分和多重覆盖地震陆地变形领域。在这里,我们使用数据来调查2015年7月3日中国西部强烈地震袭击Pishan的强烈地震。地震断层是盲目的,在现场没有发现地面突破功能,因此合成孔径雷达(SAR)数据充分发挥其CoSismicDeformation领域的恢复技术优势。通过在干涉宽的条形模式下使用Sentinel-1a雷达数据,我们在击球区域上获得1轨轨道,并解决由地震产生的3D地面变形。然后将视线(LOS)insardata倒置用于Seismogencault的滑移分布。

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