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首页> 外文期刊>Geophysical Research Letters >The 1979-2005 Greenland ice sheet melt extent from passive microwave data using an improved version of the melt retrieval XPGR algorithm
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The 1979-2005 Greenland ice sheet melt extent from passive microwave data using an improved version of the melt retrieval XPGR algorithm

机译:1979-2005年格陵兰岛冰盖融化程度的数据来自被动微波数据,采用了改进的融解检索XPGR算法

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摘要

Analysis of passive microwave satellite observations over the Greenland ice sheet reveals a significant increase in surface melt over the period 1979-2005. Since 1979, the total melt area was found to have increased by +1.22 x 10(7) km(2). An improved version of the cross-polarized gradient ratio (XPGR) technique is used to identify the melt from the brightness temperatures. The improvements in the melt retrieval XPGR algorithm as well as the surface melt acceleration are discussed with results from a coupled atmosphere-snow regional climate model. From 1979 to 2005, the ablation period has been increasing everywhere over the melt zone except in the regions where the model simulates an increased summer snowfall. Indeed, more snowfall in summer decreases the liquid water content of the snowpack, raises the albedo and therefore reduces the melt. Finally, the observed melt acceleration over the Greenland ice sheet is highly correlated with both Greenland and global warming suggesting a continuing surface melt increase in the future.
机译:对格陵兰冰原上无源微波卫星观测结果的分析表明,1979年至2005年期间,地表融化明显增加。自1979年以来,发现总熔体面积增加了+1.22 x 10(7)km(2)。交叉极化梯度比率(XPGR)技术的改进版本用于从亮度温度中识别熔体。结合大气-雪地区气候模型的结果,讨论了熔体反演XPGR算法的改进以及地表熔体加速。从1979年到2005年,除了模型模拟夏季降雪增加的区域外,整个融化区的消融期一直在增加。的确,夏季更多的降雪减少了积雪的液态水含量,提高了反照率,因此减少了融雪。最后,在格陵兰冰盖上观测到的融化加速与格陵兰和全球变暖高度相关,这表明未来地表融化持续增加。

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