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Evaluation of Surface and Near-Surface Melt Characteristics on the Greenland Ice Sheet using MODIS and QuikSCAT Data

机译:利用MODIS和QuikSCAT数据评估格陵兰冰原的地表和近地表融化特征

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The Greenland Ice Sheet has been the focus of much attention recently because of increasing melt in response to regional climate warming. To improve our ability to measure surface melt, we use remote-sensing data products to study surface and near-surface melt characteristics of the Greenland Ice Sheet for the 2007 melt season when record melt extent and runoff occurred. Moderate Resolution Imaging Spectroradiometer (MODIS) daily land-surface temperature (LST), MODIS daily snow albedo, and a special diurnal melt product derived from QuikSCAT (QS) scatterometer data, are all effective in measuring the evolution of melt on the ice sheet. These daily products, produced from different parts of the electromagnetic spectrum, are sensitive to different geophysical features, though QS- and MODIS-derived melt generally show excellent correspondence when surface melt is present on the ice sheet. Values derived from the daily MODIS snow albedo product drop in response to melt, and change with apparent grain-size changes. For the 2007 melt season, the QS and MODIS LST products detect 862,769 square kilometers and 766,184 square kilometers of melt, respectively. The QS product detects about 11% greater melt extent than is detected by the MODIS LST product probably because QS is more sensitive to surface melt, and can detect subsurface melt. The consistency of the response of the different products demonstrates unequivocally that physically-meaningful melt/freeze boundaries can be detected. We have demonstrated that these products, used together, can improve the precision in mapping surface and near-surface melt extent on the Greenland Ice Sheet.
机译:格陵兰冰原是近来备受关注的焦点,因为随着区域气候变暖,融化增加。为了提高测量表面融化的能力,我们使用了遥感数据产品来研究格陵兰冰原在2007年融化季节发生记录的融化程度和径流时的表面和近地表融化特征。中分辨率成像光谱仪(MODIS)的每日地表温度(LST),MODIS的每日雪反照率以及由QuikSCAT(QS)散射仪数据得出的特殊的日间融化产物,都可以有效地测量冰盖上融化的演变。这些日常产品由电磁频谱的不同部分产生,对不同的地球物理特征敏感,尽管当冰盖上存在表面融化物时,QS和MODIS衍生的融化物通常表现出极好的对应性。来自每日MODIS雪反照率产品的值随融化而下降,并随表观晶粒尺寸的变化而变化。对于2007年的融化季节,QS和MODIS LST产品分别检测到862,769平方公里和766,184平方公里的融化量。 QS产品检测到的熔融程度比MODIS LST产品检测到的熔融程度高约11%,这可能是因为QS对表面熔融更​​敏感,并且可以检测地下熔融。不同产品响应的一致性明确表明可以检测到具有物理意义的熔化/冻结边界。我们已经证明,这些产品一起使用可以提高在格陵兰冰原上测绘表面和近表面融化程度的精度。

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