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基于D-InSAR技术的淮南矿区地面沉陷监测 被引量:8

Monitoring of Surface Subsidence Based on D-InSAR Technology in Huainan Mining Area
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摘要 针对常规的通过大地水准测量、GPS测量监测矿区地面沉陷的技术存在监测周期长、成本高、无法全面监测等缺陷,提出了一种基于D-InSAR技术的矿区地面沉陷监测方法。以淮南矿区为试验区,采用两轨法D-InSAR技术,利用该地区2个时相的ALOS PALSAR数据获取了淮南矿区试验时间段内的地面形变图,分析了淮南矿区各矿的地面沉陷信息。结果表明,煤矿开采区存在5~25 cm不同程度的沉陷,与实际情况相符,因此,基于D-InSAR技术的监测方法可以作为一种获取矿区大范围的地表沉陷信息的有效方法。 In view of defects of long monitoring period,high cost and incomprehensive monitoring existed in monitoring technology of surface subsidence in mining areas by use of geodesic leveling and GPS measurements,a monitoring method of surface subsidence based on D-InSAR technology was proposed.Taking Huainan Coal Mining Area as experimental district,two-pass D-InSAR technology was used to get surface deformation image of Huainan Coal Mining Area in experimental time by use of experimental data of two scenes ALOS PALSAR data.The information of surface subsidence of coal mines of Huainan Coal Mining Area was analyzed.The result showed that the subsidence of mining area is 5~25 cm and corresponds to practice.Therefore,the monitoring method based on D-InSAR technology is an effective method to obtain information of surface subsidence for mining area.
出处 《工矿自动化》 2011年第8期48-51,共4页 Journal Of Mine Automation
基金 国家环保部公益性行业专项基金项目(200809128) 国家自然科学基金资助项目(50774080) 国家自然科学基金资助项目(40971275)
关键词 煤矿 地表沉陷 合成孔径雷达差分干涉测量 两轨法 D-INSAR coal mine surface subsidence differential synthetic aperture radar interferometry two-pass D-InSAR
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  • 1马超,单新建.星载合成孔径雷达差分干涉测量(D-InSAR)技术在形变监测中的应用概述[J].中国地震,2004,20(4):410-418. 被引量:24
  • 2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:97
  • 3国土资源部规划司.矿产资源规划研究[M].北京:地质出版社,2003.
  • 4GABRIE A K, GOLDSTEIN R M, ZEBEKER H A Mapping Small Elevation Changes over Large Areas Differential Radar Interferometry[J]. J. Geophys Res. , 1989,94:9 183-9 191.
  • 5PERSKI Z. ERS InSAR Data for Geological Interpretation of Mining Subsidence in Upper Silesian Coal Basin in Poland[J].European Space Agency, (Special Publication) ESA SP, 2000,478:151-157.
  • 6RAUCOULES D, MAISONS C, CARNEC C, et al. Monitoring of Slow Ground Deformation by ERS Radar Interferometry on the Vauvert Salt Mine ( France ) Comparisons with Ground-based Measurement[J]. Remote Sensing of Environment, 2003,88(4) : 468-478.
  • 7GE Lin-lin, CHANG H, CHUNG H, et al. Mine Subsidence Monitoring: A Comparison among Envisat, ERS and JERS-1 [C]// Proceedings of the 2004 Envisat & ERS Symposium, 2005, Salzburg, Austria: 953-958.
  • 8GE Lin-lin, LI Xiao-jing, CHRIS R, et al. GPS and GIS Assisted Radar Interferometry[J]. Photogrammetric Engineering and Remote Sensing, 2004, 70(10):1 173-1 177.
  • 9CHANG H, GE Lin-lin. D-InSAR for Mine Subsidence Monitoring Using Multi-source Satellite SAR Images [C]// Geoscienee and Remote Sensing Symposium of 2005 IEEE International Proceedings, 2005:1 742-1 745.
  • 10ZEBKER H A, ROSEN P A, GOLDSTEIN R M, et al. On the Derivation of Coseismic Displacement Fields Using Differential Radar Interferometry: The Lander Earthquakes[J]. J Geophys. Res. , 1994, 99(B10):19 617-19 634.

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