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昆仑山口西8.1级大地震震后库赛湖地区多时相InSAR地表形变遥感探测
引用本文:张艳梅,程晓.昆仑山口西8.1级大地震震后库赛湖地区多时相InSAR地表形变遥感探测[J].遥感信息,2010,0(2):65-68,118.
作者姓名:张艳梅  程晓
作者单位:1. 中国地震局地震预测研究所,北京,100036
2. 北京师范大学全球变化与地球系统科学研究院,北京,100875
基金项目:中国地震局地震预测研究所基本科研业务专项 
摘    要:利用2003年~2007年间14景欧空局ENVISAT ASAR卫星数据,结合SRTM DEM数据,采用多时相SAR协同配准方法进行二路干涉处理,对2001年11月昆仑山口西8.1级大地震宏观震中—库赛湖地区的地表形变场进行了多时相探测。结果表明:①多时相InSAR技术能够对位于高海拔山区的东昆仑断裂带库赛湖段的地表形变实施连续监测;②震后发震断裂带的调整活动经历了一个动态变化的过程,2003年~2004年、2005年9月至2006年2月相对活跃,调整幅度较大,2004年11月至2005年9月间调整较小;③2006年~2007年发震断裂带地区活动逐渐减弱。

关 键 词:震后形变  InSAR  多时相遥感  昆仑山口西
收稿时间:2009-04-02
修稿时间:2009-04-23

Remote Sensing of Post-seismic Surface Deformation in Kusai Lake Region After the 2001 Ms 8.1 Kunlun Earthquake Using Multi-temporal InSAR Data
ZHANG Yan-mei①,CHENG Xiao.Remote Sensing of Post-seismic Surface Deformation in Kusai Lake Region After the 2001 Ms 8.1 Kunlun Earthquake Using Multi-temporal InSAR Data[J].Remote Sensing Information,2010,0(2):65-68,118.
Authors:ZHANG Yan-mei①  CHENG Xiao
Affiliation:② (① Institute of Earthquake Science,China Earthquake Administration,Beijing 100036;② College of Global Change and Earth System Science,Beijing Normal University,Beijing 100875)
Abstract:14 scenes of ENVISAT ASAR data acquired from 2003 to 2007 are adopted in this research to study the post-seismic surface deformation in Kusai Lake region after the 2001 Ms 8.1 Kunlun earthquake.SRTM DEM data are included and the cooperative SAR image registration method is used for pre-processing of multi-temporal ASAR data in later two-pass differential InSAR pairs.The results showed that:(1)cooperative registering multi-temporal InSAR is an efficient tool for continuous surface deformation detection in this area.(2)The post-seismic deformation adjustment of the rupture belt is a dynamic process.During the period of 2003,2004 and from Sep.2005 to Feb.2006,the amplitude of adjustment was large.The rupture belt was relatively stable during the period from Nov.2004 to Sep.2005.(3)In 2006 and 2007,the adjustment was weakening gradually.
Keywords:InSAR  post-seismic surface deformation  InSAR  multi-temporal remote sensing  west of Kunlun pass
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