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Application of multi-temporal high-resolution imagery and GPS in a study of the motion of a canyon rim landslide

机译:多时相高分辨率影像和GPS在峡谷边缘滑坡运动研究中的应用

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Change detection techniques using co-registered high-resolution satellite imagery and archival digital aerial photographs have been used in conjunction with GPS to constrain the magnitude and timing of previously undocumented historical motion of the Salmon Falls landslide in south-central Idaho, USA. The landslide has created natural dams of Salmon Falls Creek, resulting in the development of large lakes and a potential flooding hazard. Rapid motion (cm/year-m/year) of the relatively remote landslide was first reported in 1999, but significant horizontal motion (up to 10.8 m) is demonstrated between 1990 and 1998 by measuring changes in the locations of ground control points in a time-series of images. The total (three-dimensional) motion of the landslide prior to 2002 was calculated using the horizontal (two-dimensional) velocities obtained in the image change detection study and horizontal-to-vertical ratios of motion derived for the landslide in 2003-2004 collected from a network of autonomous GPS stations. The total historical motion that was estimated using this method averages about 12 m, which is in agreement with field observations.
机译:使用联合注册的高分辨率卫星图像和档案数字航拍照片的变化检测技术已与GPS结合使用,以限制美国爱达荷州中南部鲑鱼瀑布滑坡以前未记录的历史运动的大小和时间。滑坡形成了Salmon Falls Creek的天然大坝,导致了大湖的发展和潜在的洪灾危险。 1999年首次报道了相对偏远的滑坡的快速运动(厘米/年-米/年),但是通过测量地面控制点位置的变化证明了在1990年至1998年之间有明显的水平运动(高达10.8 m)。图像的时间序列。使用图像变化检测研究中获得的水平(二维)速度和收集的2003-2004年滑坡的运动的纵横比来计算2002年之前滑坡的总(三维)运动来自自治GPS站网络。使用此方法估算的总历史运动平均约为12 m,这与现场观测结果一致。

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