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Using terrestrial laser scanning for differential measurement of interannual rock glacier movement in the Argentine Dry Andes.

机译:使用陆地激光扫描仪对阿根廷干安第斯山脉的年际冰川运动进行差分测量。

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摘要

Argentina has recently implemented laws to protect glaciers and buried ice in the Andes to improve the sustainability of scarce, long-term water resources. Therefore, all glaciers and buried ice terrains must be located and avoided in any commercial alterations of the landscape. Buried ice in this remote and often dangerous terrain typically is located via the use of remote-sensing techniques. This thesis applies one such technique, Light Detection and Ranging (LiDAR) in the form of Terrestrial Laser Scanning (TLS), to detect rock glacier movement that is indicative of flowing, buried ice not visible in near surface excavations. TLS surveys were completed at two locales, Los Azules and El Altar, in both AD 2013 and AD 2014 on landscapes where buried ice is suspected to have produced the current surface forms. Multiple TLS scans were co-registered with the use of benchmarks, both between scans and between years, which introduced quantifiable positional errors. Digital Elevation Models (DEMs) were derived from the point cloud data by standardizing the spacing of the points in the horizontal direction, creating 0.1 m by 0.1 m cells with elevation as the cell value. The DEMs for each year were subtracted from each other to yield a change in elevation. The surface roughness of the rock glaciers (vertical variability within each cell) was empirically determined and evaluated as a threshold for results. Both sites showed sub-decimeter interannual movements, and the direction of their movement is typical of forms with buried ice. The results of the study were validated using independent GPS data showing annual movement rates. Despite the downslope movement of these rock glaciers, the volume of ice contained within them remains unclear, and further study is required to assess the volume of water contained.
机译:阿根廷最近实施了保护安第斯山脉冰川和埋冰的法律,以改善稀缺的长期水资源的可持续性。因此,必须对所有冰川和埋藏的冰川地形进行定位,并避免在景观的任何商业改造中使用。通常,通过使用遥感技术,可以在这个偏远且通常危险的地形中埋入冰块。本文采用一种技术,即地面激光扫描(TLS)形式的光检测和测距(LiDAR),来检测岩石冰川运动,该运动表明在近地表开挖中看不到流动的埋冰。 TLS调查在公元2013年和2014年的两个地点分别在Los Azules和El Altar进行,调查对象是怀疑埋有冰层的地形。两次扫描之间以及多年之间,多次使用基准扫描对TLS进行了注册,从而引入了可量化的位置误差。通过对点在水平方向上的间距进行标准化,从点云数据中得出数字高程模型(DEM),以高程作为像元值创建0.1 m x 0.1 m像元。彼此减去每年的DEM,以产生海拔变化。凭经验确定岩石冰川的表面粗糙度(每个单元内的垂直变化)并将其评估为结果的阈值。这两个站点都显示了亚分米的年际运动,并且其运动方向是典型的埋冰形式。该研究结果使用独立的GPS数据验证,该数据显示了年移动率。尽管这些岩石冰川有下坡运动,但其中的冰量仍不清楚,因此需要进一步研究以评估其中的水量。

著录项

  • 作者

    Kane, Renato R.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Physical geography.;Remote sensing.
  • 学位 M.S.
  • 年度 2014
  • 页码 63 p.
  • 总页数 63
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:44

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