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时序DInSAR在重复采动地表沉陷监测中的应用 被引量:20

Subsidence monitoring caused by repeated excavation with time-series DInSAR
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摘要 基于TerraSAR-X高分辨率SAR数据,利用时序DInSAR技术监测矿区开采沉陷,探讨其在开采沉陷监测中的定量化应用。结合矿区工作面回采进度资料,对时序DInSAR结果进行分析,提取不同开采阶段的超前影响角、边界角、起动距等参数,以认识和描述上覆岩层存在重复采动时的地表沉陷规律。利用在工作面上方角反射器位置上同步获取的GPS观测结果对DInSAR技术进行验证,结果表明X波段SAR数据可以准确监测微小形变,从而保证了开采沉陷影响范围监测及角量参数提取的可靠性。 The high resolution TerraSAR-X SAR data was used to monitor ground subsidence caused by underground coal mining activities with time-series DInSAR method. Analysis was made based on the detailed stoping records of the related working face. With the identified bounds of subsidence, some angular parameters, such as advanced influence angle, angle of subsidence and moving distance were derived. These parameters could be used to depict the evolution of ground subsidence caused by re- peated coal excavation, which is quite different compared with subsidence caused by the first mining. In the end, terrestrial GPS surveying results, which were carried out at the same date when SAR image was acquired, were used to evaluate the DInSAR technology. The results confirm the reliability and validity of X-band SAR data in terms of subsidence boundary extraction and related angular parameters deriva- tion, thus promoting the quantitative application of DInSAR technology.
出处 《采矿与安全工程学报》 EI 北大核心 2013年第3期390-395,共6页 Journal of Mining & Safety Engineering
基金 国家自然科学基金项目(51174191) 国家"十二五"科技支撑计划项目(2012BAC10B03)
关键词 时序DInSAR 重复采动 超前影响角 边界角 起动距 TERRASAR-X time-series DInSAR repeated excavation advanced influence angle angle of subsidence moving distance TerraSAR-X
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参考文献11

  • 1CARNEC C,MASSONNET D,KING C. Two examplesof the use of SAR interferometry on displacement fieldsof small spatial extension[J]. Geophysical ResearchLetters, 1996, 23 (24): 3579-3582.
  • 2STOW R J, WRIGHT P A. Mining Subsidence LandSurveying by SAR Interferometry[C]// KOHLHAMMERG,GUYENNE T D, DANESY D. Proceedings of 3rdERS Symposium. European Space Agency Special Pub-lication ESA SP-414, 1997: 525-530.
  • 3PERSKI Z. The Interpretation of ERS-1 and ERS-2InSAR Data for the Mining Subsidence Monitoring inUpper Silesian Coal Basin[C]// FULOPP G R,CLEVERSJ,BEEK K J. International Archives of Photogrametryand Remote Sensing. Amsterdam : ISPRS,2000 :1682-1750.
  • 4CARNEC C,DELACOURT C_ Three years of miningsubsidence monitored by SAR interferometry,nearGardanne,France[J]. Journal of Applied Geophysics,2000,43(1): 43-54.
  • 5GE L L,HAN S,RIZOS C . The Double Interpolation andDouble Prediction (DIDP) Approach for InSAR and GPSIntegration[C]// DOWMAN I,JANSSEN L. InternationalArchives of Photogrammetry and Remote Sensing,Amsterdam: ISPRS, 2000: 205-212.
  • 6GE L L, CHANG H C, RIZOS C,et al. Multi-passDifferential Radar Interferometry with the Aid of GIS[C]// ALTAN O. International Archives of Photogram-metry. Remote Sensing and Spatial Information Sci-ences, Istanbul: ISPRS,2004: 861-867.
  • 7GE L L, CHANG H C,Rizos C. Mine subsidencemonitoring using multi-source satellite SAR images[J].Photogrammetric Engineering & Remote Sensing,2007,73(3): 259-266.
  • 8WEGMULLER U, STROZZI T, WERNER C,etal. Monitoring of mining-induced surface deformation inthe Ruhrgebiet (Germany) with SAR interferometryfC]//STEIN T I. Proceedings of IGARSS 2000, Hawaii:Institute of Electrical and Electronics Engineers,2000:2771-2773.
  • 9吴立新,高均海,葛大庆,廖明生.工矿区地表沉陷D-InSAR监测试验研究[J].东北大学学报(自然科学版),2005,26(8):778-782. 被引量:104
  • 10董玉森,Ge Linlin,Chang Hsingchun,张志.基于差分雷达干涉测量的矿区地面沉降监测研究[J].武汉大学学报(信息科学版),2007,32(10):888-891. 被引量:53

二级参考文献25

  • 1李陶,刘经南,廖明生.重复轨道差分干涉测量参数模型的建立[J].武汉大学学报(信息科学版),2005,30(8):744-747. 被引量:3
  • 2刘国林,张连蓬,成枢,江涛.合成孔径雷达干涉测量与全球定位系统数据融合监测矿区地表沉降的可行性分析[J].测绘通报,2005(11):10-13. 被引量:50
  • 3CHANG Zhan-qiang,GONG Hui-li,ZHANG Jing-fa,GONG Li-xia.A Feasible Approach for Improving Accuracy of Ground Deformation Measured by D-InSAR[J].Journal of China University of Mining and Technology,2007,17(2):262-266. 被引量:8
  • 4Zebker 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.
  • 5Perski Z, Jura D. ERS SAR interferometry for land subsidence detection in coal mining areas[R]. Corrigendum to EOQ 63, 2001.25-29.
  • 6Ge 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.
  • 7Timmen 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.
  • 8Jarosz A, Wanke D. Use of InSAR for monitoring of mining deformations[EB/OL].http:∥earth.esa.int/workshop/fringes03/day2, 2004-03-05.
  • 9Webley 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.
  • 10Zebker H A, Villasenor J. Decorrelation in interferometry radar echoes[J]. IEEE Transactions on Geoscience and Remote Sensing, 1992,5(30):950-959.

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