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Autumn sea ice cover, winter Northern Hemisphere annular mode, and winter precipitation in Eurasia.

机译:秋季海冰覆盖,冬季北半球环形模式和欧亚大陆冬季降水。

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摘要

This paper examines the impacts of the previous autumn sea ice cover (SIC) on the winter Northern Hemisphere annular mode (NAM) and winter precipitation in Eurasia. The coherent variations among the Kara-Laptev autumn SIC, winter NAM, and Eurasian winter precipitation appear after the year 1982, which may prove useful for seasonal prediction of winter precipitation. From a physical point of view, the Kara-Laptev SIC and sea surface temperature (SST) anomalies develop in autumn and remain in winter. Given that winter NAM is characterized by an Arctic-midlatitude seesaw centered over the Barents Sea and Kara-Laptev Seas, it is closely linked to the Arctic forcing that corresponds to the Kara-Laptev sea ice increase (reduction) and the associated surface temperature cooling (warming). Moreover, based on both model simulations and observations, the diminishing Kara-Laptev sea ice does induce positive sea level pressure (SLP) anomalies over high-latitude Eurasia in winter, which is accompanied by a significant surface warming in northern Eurasia and cooling south of the Mediterranean. This surface air temperature (SAT) anomaly pattern facilitates increases of specific humidity in northern Eurasia with a major ridge extending southward along the East Asian coast. As a result, the anomalous Eurasian winter precipitation has a more zonal band structure.
机译:本文研究了先前的秋季海冰覆盖(SIC)对冬季北半球环形模式(NAM)和欧亚大陆冬季降水的影响。卡拉-拉普捷夫秋季SIC,冬季NAM和欧亚冬季降水之间的连贯变化出现在1982年以后,这可能对冬季降水的季节预报很有用。从物理角度来看,卡拉-拉普捷夫SIC和海表温度(SST)异常在秋季发展,而在冬季仍然存在。考虑到冬季NAM的特征是北极中纬度跷跷板位于巴伦支海和卡拉-拉普捷夫海的中心,因此它与北极强迫密切相关,后者对应于卡拉-拉普捷夫海冰的增加(减少)和相关的地表温度冷却(变暖)。此外,基于模型模拟和观测,卡拉-拉普捷夫海冰的减少确实会在冬季在高纬度的欧亚大陆上引起正海平面压力(SLP)异常,这伴随着欧亚大陆北部明显的地表变暖和南欧南部的降温。地中海居民。这种地表温度(SAT)异常模式促进了欧亚大陆北部特定湿度的增加,主要的山脊沿东亚海岸向南延伸。结果,异常的欧亚冬季降水具有更多的带状结构。

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