期刊文献+

工矿区地表沉陷D-InSAR监测试验研究 被引量:100

Experimental Study on Surface Subsidence Monitoring with D-InSAR in Mining Area
在线阅读 下载PDF
导出
摘要 基于差分合成孔径雷达干涉测量(D-InSAR)中相位构成因素的分析,选择中国东部典型工矿区(唐山市及开滦矿区)为试验区进行了矿区地表沉陷D-InSAR监测试验研究.利用该地区1997-1998年两个时相获取的5景ERS1/2卫星SAR单视复数据(SLC),分别采用“2轨法”和“3轨法”进行差分干涉处理,得到了间隔时间超过半年的地下采矿及采水引起的雷达视线向(LOS)形变图.通过将LOS形变图转换成地表下沉分量,分析了试验区沉陷的扩展及演变过程.在此基础上,对D-InSAR技术中存在的时间去相干、空间去相干等误差因素进行了分析和讨论.试验表明:作为数字矿山的关键技术之一,可以利用多时相D-InSAR技术结合角反射器(或平面反射器)方法进行工矿区地表沉陷监测. Based on the quantitative analysis of phase compositions and its contributions to D-InSAR(I)ifference-Interferometric Synthetic Aperture Radar) monitoring, Tangshan City and Kailuan Mining Area, as the typical mining/industrial area in Eastern China, are selected as the experimental district for the application of D-InSAR to the monitoring and the dynamical analysis of surface subsidence. The 5-scene ERS1/2 SLC SAR data acquired from two temporal phases in 1997 and 1998 being selected as experimental data, the deformation in the line of sight was extracted separately by way of “2 pass” and “3 pass” D-InSAR. By transforming the LOS deformation into vertical subsidence, the evolution of surface subsidence caused by underground coal mining and underground water exploitation was analyzed. The temporal decorrelation, spatial decorrelation and other error sources in D-InSAR monitoring in mining area were analyzed and discussed. As one of the key technologies for digital mine, it was suggested that the multi-temporal and the Connor Reflectors(or Plane Reflectors) could be applied in D-InSAR that is being used for the long-term surface subsidence monitoring in mining area.
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2005年第8期778-782,共5页 Journal of Northeastern University(Natural Science)
基金 教育部高校青年教师奖专项武汉大学测绘遥感信息工程国家重点实验室开放基金资助项目煤炭科学研究总院青年创新基金资助项目(2004QN33).
关键词 地表沉陷 D-lnSAR 数字矿山 去相干 多时相 surface subsidence D-InSAR digital mine decorrelation multi-temporal phase
作者简介 吴立新(1966-),男,江西宜春人,东北大学教授,博士生导师,教育部长江学者特聘教授。
  • 相关文献

参考文献13

  • 1Zebker H A,Rosen P,Goldstein R M,et al. On the derivation of coseismic displacement fields using differential radar interferometry: the landers earthquake[J]. JGR, 1994,99A(1):1-26.
  • 2Perski Z, Jura D. ERS SAR interferometry for land subsidence detection in coal mining areas[R]. Corrigendum to EOQ 63, 2001.25-29.
  • 3Ge L L, Eric C. Quantitative subsidence monitoring: the integrated InSAR, GPS and GIS approach[EB/OL]. http:∥www.gmat.unsw.edu.au/staff/Linlin/Ge-publication.html, 2004-09-10.
  • 4Timmen L, Ye X, Reigber C. Monitoring of small motions in mining areas by SAR interferometry[EB/OL]. http:∥earth. esa.int/workshop/fringe1996, 2003-12-15.
  • 5Jarosz A, Wanke D. Use of InSAR for monitoring of mining deformations[EB/OL].http:∥earth.esa.int/workshop/fringes03/day2, 2004-03-05.
  • 6Webley P W, Bingley R M, Dodson A H, et al. Atmospheric water vapour correction to InSAR surface motion measurements on mountains: results from a dense GPS network on mount etna[J]. Physic and Chemistry of the Earth, 2002,27:363-370.
  • 7Zebker H A, Villasenor J. Decorrelation in interferometry radar echoes[J]. IEEE Transactions on Geoscience and Remote Sensing, 1992,5(30):950-959.
  • 8Wu X Q, Heinz K. The effects of different land covers on the accuracy of interferometric DEM[EB/OL]. http:∥earth.esa.int/workshops/fringe1996, 2003-12-15.
  • 9Mora O, Broquetas A. Linear and nonlinear terrain deformation maps from a reduced set of interferometric SAR images[J]. IEEE Transactions on Geoscience and Remote Sensing, 2003,41(10):2243-2253.
  • 10Colesanti C, Ferretti A, Novali F, et al. SAR monitoring of progressive and seasonal ground deformation using the permanent scatters technique[J]. IEEE Transactions on Geoscience and Remote Sensing, 2003,7(41):1685-1701.

同被引文献958

引证文献100

二级引证文献787

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部