首页> 外文会议>IEEE International Geoscience and Remote Sensing Symposium >SURFACE DEFORMATION AND SOURCE MODELING FOR THE MW 7.3 IRAN EARTHQUAKE (NOVEMBER 12, 2017) EXPLOITING SENTINEL-1 AND ALOS-2 INSAR DATA
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SURFACE DEFORMATION AND SOURCE MODELING FOR THE MW 7.3 IRAN EARTHQUAKE (NOVEMBER 12, 2017) EXPLOITING SENTINEL-1 AND ALOS-2 INSAR DATA

机译:MW 7.3伊朗地震(2017年11月12日)的表面变形和源型材建模(2017年11月12日)利用哨兵-1和Alos-2 Insar数据

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In this study, an analysis of the November 12, 2017 northwestern Iran earthquake (Mw 7.3) is presented. A multi-frequency Synthetic Aperture Radar Interferometry (InSAR) approach was adopted to retrieve the ground deformation due to the mainshock. Then, InSAR results were used as input for the source modeling of the seismic event. C-Band Sentinel-1 (IW TOPSAR acquisition mode) and L-Band ALOS-2 (Wide Swath) SAR data along both the ascending and descending orbits were processed. InSAR results show a displacement pattern in the epicentral area, with a maximum value up to ~1.0 meter. Preliminary analytical and numerical models suggest that the retrieved InSAR ground displacements are due to a slip dislocation (over 3.8 meters) on the causative fault and that dips to the east with a shallow angle of 16°.
机译:在本研究中,提出了对2017年11月12日的伊朗地震(MW 7.3)的分析。采用多频合成孔径雷达干涉法(INSAR)方法来检索由于主轴引起的地面变形。然后,INSAR结果被用作地震事件源建模的输入。 C波段Sentinel-1(IW Topsar采集模式)和L波段沿着升序和下降轨道的SAR-2(宽的SWATH)SAR数据被处理。 INSAR结果在震中区域显示出位移模式,最大值高达约1.0米。初步分析和数值模型表明,检索到的insar地移是由于致病故障的滑移位错(超过3.8米),并且垂直于16°的较浅的角度。

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