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Evidence and analysis of 2012 Greenland records from spaceborne observations, a regional climate model and reanalysis data

机译:来自太空观测,区域气候模型和再分析数据的2012年格陵兰记录的证据和分析

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摘要

A combined analysis of remote sensing observations, regional climate model (RCM) outputs and reanalysis data over the Greenland ice sheet provides evidence that multiple records were set during summer 2012. Melt extent was the largest in the satellite era (extending up to ∼97% of the ice sheet) and melting lasted up to ∼2 months longer than the 1979–2011 mean. Model results indicate that near surface temperature was ∼3 standard deviations (σ) above the 1958–2011 mean, while surface mass balance (SMB) was ∼3σ below the mean and runoff was 3.9σ above the mean over the same period. Albedo, exposure of bare ice and surface mass balance also set new records, as did the total mass balance with summer and annual mass changes of, respectively, −627 Gt and −574 Gt, 2σ below the 2003–2012 mean. We identify persistent anticyclonic conditions over Greenland associated with anomalies in the North Atlantic Oscillation (NAO), changes in surface conditions (e.g., albedo, surface temperature) and preconditioning of surface properties from recent extreme melting as major driving mechanisms for the 2012 records. Less positive if not increasingly negative SMB will likely occur should these characteristics persist.
机译:格陵兰冰原上的遥感观测,区域气候模式(RCM)输出和再分析数据的综合分析提供了证据,表明在2012年夏季期间已创下多项记录。融化程度是卫星时代最大的(延伸至约97%)融化持续的时间比1979-2011年的平均时间长2个月左右。模型结果表明,在同一时期,近地表温度比1958-2011年均值高出约3个标准差(σ),而表面质量平衡(SMB)在均值之下低出约3σ,径流比均值高出3.9σ。反照率,裸冰暴露和地表质量平衡也创下了新记录,夏季和年度质量变化的总质量平衡分别为-627 Gt和-574 Gt,比2003-2012年平均值低2σ。我们确定格陵兰岛上持续存在的反气旋状况与北大西洋涛动(NAO)异常,表面状况的变化(例如反照率,表面温度)以及近期极端融化引起的表面特性预处理是2012年记录的主要驱动机制。如果这些特征持续存在,则可能会出现不太积极甚至不太消极的SMB。

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