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Thermal tracing of retained meltwater in the lower accumulation area of the Southwestern Greenland ice sheet

机译:西南格陵兰冰盖下部堆积区保水融水的伴热

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摘要

We present in situ firn temperatures from the extreme 2012 melt season in the southwestern lower accumulation area of the Greenland ice sheet. The upper 2.5 m of snow and firn was temperate during the melt season, when vertical meltwater percolation was inefficient due to a similar to 5.5 m thick ice layer underlying the temperate firn. Meltwater percolation and refreezing beneath 2.5 m depth only occurred after the melt season. Deviations from temperatures predicted by pure conductivity suggest that meltwater refroze in discrete bands at depths of 2.0-2.5, 5.0-6.0 and 8.0-9.0 m. While we find no indication of meltwater percolation below 9 m depth or complete filling of pore volume above, firn at 10 and 15 m depth was respectively 4.2-4.5 ºC and 1.7 ºC higher than in a conductivity-only simulation. Even though meltwater percolation in 2012 was inefficient, firn between 2 and 15 m depth the following winter was on average 4.7 degrees C warmer due to meltwater refreezing. Our observations also suggest that the 2012 firn conditions were preconditioned by two warm summers and ice layer formation in 2010 and 2011. Overall, firn temperatures during the years 2009-13 increased by 0.6 ºC.
机译:我们介绍了格陵兰冰原西南较低蓄积区2012年极端融化季节的原位烧成温度。在融化季节,上部2.5 m的积雪和温度为温带,而垂直的融化水渗滤效率较低,这是由于在温带强度的下方存在类似于5.5 m厚的冰层。在融化季节之后才发生融水渗透和在2.5 m深度以下重新冻结。由纯电导率预测的温度偏差表明,融水在2.0-2.5、5.0-6.0和8.0-9.0 m的离散带中回冻。虽然我们没有发现低于9 m深度的熔体水渗滤或完全充满以上孔隙的迹象,但在10和15 m深度处的烧结分别比仅电导率模拟高4.2-4.5ºC和1.7ºC。尽管2012年的融水渗透效率低下,但由于融水的重新冻结,第二个冬季的深度在2至15 m之间,平均升温4.7摄氏度。我们的观察结果还表明,2012年的烧成条件是由两个温暖的夏天和2010年和2011年的冰层形成预先调节的。总体而言,2009-13年的烧成温度升高了0.6ºC。

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