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Decreasing cloud cover drives the recent mass loss on the Greenland Ice Sheet

机译:减少的云层驱动了格陵兰冰原上最近的质量损失

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The Greenland Ice Sheet (GrIS) has been losing mass at an accelerating rate since the mid-1990s. This has been due to both increased ice discharge into the ocean and melting at the surface, with the latter being the dominant contribution. This change in state has been attributed to rising temperatures and a decrease in surface albedo. We show, using satellite data and climate model output, that the abrupt reduction in surface mass balance since about 1995 can be attributed largely to a coincident trend of decreasing summer cloud cover enhancing the melt-albedo feedback. Satellite observations show that, from 1995 to 2009, summer cloud cover decreased by 0.9 ± 0.3% per year. Model output indicates that the GrIS summer melt increases by 27 ± 13 gigatons (Gt) per percent reduction in summer cloud cover, principally because of the impact of increased shortwave radiation over the low albedo ablation zone. The observed reduction in cloud cover is strongly correlated with a state shift in the North Atlantic Oscillation promoting anticyclonic conditions in summer and suggests that the enhanced surface mass loss from the GrIS is driven by synoptic-scale changes in Arctic-wide atmospheric circulation.
机译:自1990年代中期以来,格陵兰冰原(GrIS)的质量一直在加速增长。这是由于增加了向海洋的排冰量和在海面的融化,而后者是主要的贡献。状态的这种变化归因于温度升高和表面反照率降低。我们使用卫星数据和气候模型输出结果表明,自1995年左右以来,地表质量平衡的突然下降在很大程度上可归因于同时出现的趋势,即夏季云层覆盖率下降,从而增强了熔体反照率反馈。卫星观测表明,从1995年到2009年,夏季云层的覆盖率每年下降0.9±0.3%。模型输出表明,夏季云层覆盖率每降低百分之一,GrIS夏季融解量增加27±13千兆吨(Gt),这主要是由于低反照率消融区上短波辐射增加的影响。观测到的云量减少与夏季夏季北大西洋涛动引起反气旋条件的状态变化密切相关,并表明,GrIS引起的表面质量损失增加是由北极范围内大气环流的天气尺度变化驱动的。

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