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基于D—InSAR的1993—1995年苏州市地面沉降监测 被引量:16

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摘要 本文利用欧洲空间局ERS-1/2 SAR数据,通过SAR差分干涉测量(D-InSAR)处理得到1993-1995年苏州市地面沉降场测量值。地面水准则测量数据的验证分析表明,差分干涉测量值与水准则值量值的相关度达0.943,标准误差均值为0.1706。雷达差分干涉测量精度可达5mm(以水准则量代表地面形变的真实情况)。研究结果表明,D-InSAR技术进行城市地面沉降方面监测和时空演化特片研究具有很大的优势,同时可用于其它类型城市地质灾害的监测。
出处 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2002年第C00期244-253,共10页 Chinese Journal of Geophysics
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参考文献9

  • 1段永侯.我国地面沉降研究现状与21世纪可持续发展[J].中国地质灾害与防治学报,1998,9(2):1-5. 被引量:54
  • 2Carnec C, Massonnet D, King C. Two examples of the use of SAR interferometry on displacement - fields of small spatial extent. Geophys. Res. Lett., 1996, 23(24):3579-3582.
  • 3Massonnet D, Holzer T, Vadon H. Land subsidence caused by the East Mesa geothermal field, Calfornia, observed using SAR interferometry. Geophys. Res. Lett., 1997, 24(8):901-904.
  • 4Fielding E J, Blom R G, Goldstein R M. Rapid subsidence over oil fields measured by SAR interferometry. Geophys. Res.Lett., 1998, 25(17) :3215-3218.
  • 5Galloway D L, Hudnut K W, Ingebritsen S E, et al. Detection of aquifer system compaction and land subsidence using interferometric synthetic aperture radar, Antelope Valley, Mojave Desert, California. Water Resource Res., 1998, 34(10) :2573-2585.
  • 6Wegmuller U, Strozzi T, Wiesmann A, et al. Land subsidence mapping with ERS interferometry: evaluation of maturity and operational readiness. FRINGE'99, 1999. 173-175.
  • 7Zebker H A, Rosen P A, Goldstein RM, et al. On the derivation of coseismic displacement fields using differential radar intereferoemetry: The Lander earthquakes. J. Geophys. Res., 1994, 99(B10):19617-19634.
  • 8王则任.“竭泽而渔”贻害无穷防患未然持续发展——江苏省苏锡常地区地面沉陷灾害的发生、危害及治理[J].中国地质灾害与防治学报,1998,9(2):18-26. 被引量:13
  • 9张红,王超,刘智.获取张北地震同震形变场的差分干涉测量技术[J].中国图象图形学报(A辑),2000,5(6):497-500. 被引量:20

二级参考文献7

  • 11,Massonnet D, Rossi M, Carmona C et al. The displacement field of the landers earthquake mapped by radar interferometry. Nature, 1992,364:138~142.
  • 22,Zebker H A, Rosen P A, Goldstein R M et al. On the derivation of coseismic displacement fields using differential radar intereferoemetry: The Lander earthquakes. J. Geophys. Res., 1994,99(B10):19617~19634.
  • 33,Gabriel A K, Goldstein R M, Zebker H A. Mapping small elevation changes over large areas:Differential Radar Intereferometry. J. Geophys. Res., 1989,94(B7):9183~9191.
  • 44,Massonnet D, Feigl K. Discrimination of geophysical phenomena in satellite radar interferometry. Geophys. Res. Lett.,1995,22:1537~1540.
  • 55,Feigl K, Sergent A, Jacq D. Estimation of an earthquake focal mechanism from a satellite radar interferogram: Application to the December 4,1992 Landers aftershock, 1995,22:1037~1040.
  • 66,Carnec C, Massonnet D, King C. Two examples of the use of SAR interferometry on displacement fields of small spatial extent, Geophys. Res. Lett., 1996,23:3579~3582.
  • 77,Baer G, Sandwell D, Williams S et al. Coseismic deformation associated with the November 1995, Mw=7.1 Nuweiba earthquake, Gulf of Elat (Aqaba) detected by synthetic aperture radar interferometry, J. Geophys. Res., 1999,104(B11):25221~25232.

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