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Atmospheric conditions during the Arctic Clouds in Summer Experiment (ACSE): Contrasting open-water and sea-ice surfaces during melt and freeze-up seasons

机译:夏季实验中的北极云期间的大气条件(aCsE):在融化和冻结季节对比开阔水域和海冰表面

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摘要

The Arctic Clouds in Summer Experiment (ACSE) was conducted during summer and early autumn 2014, providing a detailed view of the seasonal transition from ice melt into freeze-up. Measurements were taken over both ice-free and ice-covered surfaces near the ice edge, offering insight into the role of the surface state in shaping the atmospheric conditions. The initiation of the autumn freeze-up was related to a change in air mass, rather than to changes in solar radiation alone; the lower atmosphere cooled abruptly, leading to a surface heat loss. During melt season, strong surface inversions persisted over the ice, while elevated inversions were more frequent over open water. These differences disappeared during autumn freeze-up, when elevated inversions persisted over both ice-free and ice-covered conditions. These results are in contrast to previous studies that found a well-mixed boundary layer persisting in summer and an increased frequency of surface-based inversions in autumn, suggesting that knowledge derived from measurements taken within the pan-Arctic area and on the central ice pack does not necessarily apply closer to the ice edge. This study offers an insight into the atmospheric processes that occur during a crucial period of the year; understanding and accurately modeling these processes is essential for the improvement of ice-extent predictions and future Arctic climate projections.
机译:2014年夏季和秋季初进行了夏季北极云实验(ACSE),提供了从冰融化到冻结的季节性过渡的详细视图。在靠近冰边缘的无冰和覆冰表面上进行了测量,从而洞悉了表面状态在塑造大气条件中的作用。秋季冰冻的开始与空气质量的变化有关,而不是与太阳辐射的变化有关。较低的大气层突然冷却,导致表面热量损失。在融化季节,在冰层上持续强烈的地表反演,而在开放水域上反演升高的频率更高。在秋季冻结期间,当无冰和覆冰条件下反演持续加剧时,这些差异就消失了。这些结果与先前的研究相反,先前的研究发现,边界层在夏季持续存在,而秋季时基于表面的反演频率增加,这表明从泛北极地区和中央冰袋进行的测量得出的知识不一定靠近冰边缘。这项研究可以洞悉一年中关键时期发生的大气过程;理解和准确模拟这些过程对于改进冰量预测和未来北极气候预测至关重要。

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