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ICESat measurement of Greenland Ice sheet surface slope and roughness

机译:ICESat测量格陵兰冰盖表面的坡度和粗糙度

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The Ice, Cloud and land Elevation Satellite (ICESat) in its 8 day repeat orbit mode provided data not only on the along-track surface slope, but also on the cross-track surface slope from adjacent repeat ground tracks. During the first 36 days of operation, four to five such repeat orbits occurred within 1 km in the cross-track direction. This provided an opportunity to use ICESat data to measure surface slope in the cross-track direction at 1 km scale. An algorithm was developed to calculate the cross-track surface slope. Combining the slopes in the cross-track and along-track directions gives a three-dimensional surface slope at 1 km scale. The along-track surface slope and surface roughness at 10 km scale are also calculated. A comparison between ICESat surface elevation and a European Remote-sensing Satellite (ERS-1) 5 km digital elevation model shows a difference of 1-2 m in central Greenland where the surface slope is small, and >20 m at the edge of Greenland where the surface slope is large. The large elevation difference at the edge is most likely due to the slope-induced error in radar altimeter measurement. Accurate surface slope data from ICESat will help to correct the slope-induced error of radar altimeter missions such as Geosat, ERS-1 and ERS-2.
机译:冰,云和陆地高程卫星(ICESat)在其8天重复轨道模式下,不仅提供了沿轨道表面坡度的数据,而且还提供了来自相邻重复地面轨道的跨轨道表面坡度的数据。在运行的前36天中,有4至5个这样的重复轨道发生在跨轨方向1公里以内。这提供了使用ICESat数据以1 km的比例测量跨轨方向上的表面坡度的机会。开发了一种算法来计算跨轨表面坡度。结合沿横向和沿横向的坡度,可以得出1 km尺度的三维表面坡度。还计算了沿轨道表面的坡度和10 km尺度的表面粗糙度。 ICESat地面高度与欧洲遥感卫星(ERS-1)5 km数字高度模型之间的比较显示,在格陵兰中部,地面坡度较小,而格陵兰边缘> 20 m,两者之间的差异为1-2 m表面坡度大的地方。边缘高度差很大,很可能是由于雷达高度计测量中的坡度引起的误差。来自ICESat的准确表面坡度数据将有助于纠正由雷达测高仪任务(如Geosat,ERS-1和ERS-2)引起的坡度误差。

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