A SAR Record of Early 21st Century Change in Greenland.

IF 2.6
The journal of glaciology Pub Date : 2016-02-01 Epub Date: 2016-03-16 DOI:10.1017/jog.2016.10
Ian Joughin, Ben E Smith, Ian M Howat, Twila Moon, Ted A Scambos
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Abstract

Glaciers in Greenland are changing rapidly. To better understand these changes, we have produced a series of seven synthetic-aperture-radar (SAR) backscatter mosaics for seven winters during the period from 2000 to 2013. Six of the mosaics were created using RADARSAT Fine-Beam data and the seventh used ALOS PALSAR Fine-Beam Single-Polarization data. The RADARSAT mosaics are radiometrically calibrated and capture changes in the backscatter coefficient related to melt and other events, particularly the strong melting in the summer of 2012. Comparison of features in the ascending-orbit ALOS mosaic and the descending-orbit RADARSAT mosaics indicate that in areas of smooth to moderate topography their locations are consistent to within a few 10s of meters. The locations of features identifiable in the RADARAT mosaics, which were collected with the same imaging parameters, generally agree to within better than the 20-m posting of the data. With such geometric accuracy, these data establish a record of change in Greenland for the early part of the 21st Century, thus providing a baseline that can be compared with new radar and optical data sets.

Abstract Image

Abstract Image

Abstract Image

格陵兰岛21世纪初变化的SAR记录。
格陵兰岛的冰川正在迅速变化。为了更好地理解这些变化,我们在2000年至2013年的7个冬季制作了一系列7个合成孔径雷达(SAR)后向散射马赛克。其中6个马赛克使用RADARSAT精细光束数据,第7个使用ALOS PALSAR精细光束单偏振数据。RADARSAT拼合图是经过辐射校准的,并捕获了与融化和其他事件有关的后向散射系数的变化,特别是2012年夏季的强烈融化。ALOS上升轨道拼接图与RADARSAT下降轨道拼接图的特征比较表明,在地形平坦至中等的地区,它们的位置在几十米以内是一致的。使用相同成像参数收集的RADARAT马赛克中可识别的特征位置通常比20米数据发布的位置更一致。有了这样的几何精度,这些数据建立了21世纪初格陵兰岛变化的记录,从而提供了一个基线,可以与新的雷达和光学数据集进行比较。
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