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首页> 外文期刊>Remote Sensing >Estimation of Mass Balance of the Grosser Aletschgletscher, Swiss Alps, from ICESat Laser Altimetry Data and Digital Elevation Models
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Estimation of Mass Balance of the Grosser Aletschgletscher, Swiss Alps, from ICESat Laser Altimetry Data and Digital Elevation Models

机译:根据ICESat激光测高仪数据和数字高程模型估算瑞士阿尔卑斯山Grosser Aletschgletscher的质量平衡

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Traditional glaciological mass balance measurements of mountain glaciers are a demanding and cost intensive task. In this study, we combine data from the Ice Cloud and Elevation Satellite (ICESat) acquired between 2003 and 2009 with air and space borne Digital Elevation Models (DEMs) in order to derive surface elevation changes of the Grosser Aletschgletscher in the Swiss Alps. Three different areas of the glacier are covered by one nominal ICESat track, allowing us to investigate the performance of the approach under different conditions in terms of ICESat data coverage, and surface characteristics. In order to test the sensitivity of the derived trend in surface lowering, several variables were tested. Employing correction for perennial snow accumulation, footprint selection and adequate reference DEM, we estimated a mean mass balance of −0.92 ± 0.18 m w.e. a−1. for the whole glacier in the studied time period. The resulting mass balance was validated by a comparison with another geodetic approach based on the subtraction of two DEMs for the years 1999 and 2009. It appears that the processing parameters need to be selected depending on the amount of available ICESat measurements, quality of the elevation reference and character of the glacier surface.
机译:山区冰川的传统冰川质量平衡测量是一项艰巨且成本高昂的任务。在这项研究中,我们将2003年至2009年间获得的冰云和高程卫星(ICESat)的数据与空天数字数字高程模型(DEM)结合在一起,以得出瑞士阿尔卑斯山格罗斯·阿莱奇格彻雪彻的地表高程变化。一条标称的ICESat径迹覆盖了冰川的三个不同区域,这使我们能够根据ICESat的数据覆盖率和表面特征来研究该方法在不同条件下的性能。为了测试表面下降趋势的敏感性,测试了几个变量。通过对常年积雪,足迹选择和适当的参考DEM进行校正,我们估计平均质量平衡为-0.92±0.18 m w.e. a -1 。在研究时期内整个冰川。通过将1999年和2009年两个DEM相减得出的结果与另一种大地测量方法进行比较,验证了所产生的质量平衡。看来需要根据可用的ICESat测量量,高程质量来选择加工参数。冰川表面的参考和特征。

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