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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Possible Linkage Between Winter Extreme Low Temperature Over Western‐Central China and Autumn Sea Ice Loss
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Possible Linkage Between Winter Extreme Low Temperature Over Western‐Central China and Autumn Sea Ice Loss

机译:Possible Linkage Between Winter Extreme Low Temperature Over Western‐Central China and Autumn Sea Ice Loss

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Abstract Based on reanalysis datasets and sea‐ice sensitivity experiments, this study has pointed out that the autumn sea ice loss in East Siberian‐Chukchi‐Beaufort (EsCB) Seas significantly increases the frequency of winter extreme low temperature over western‐central China. Autumn sea ice loss warms the troposphere and generates anticyclonic anomaly over the Arctic region 1 month later. Under the effects of synoptic eddy‐mean flow interaction and anomalous upward propagated planetary wave 2, the Arctic anticyclonic anomaly strengthens and develops toward Greenland‐Northern Europe, accompanied by a weakened stratospheric polar vortex. In winter, following intra‐seasonal downward propagation of stratospheric anomalies, the Northern European positive geopotential height anomalies enhance and expand downstream within 7 days, favoring Arctic cold air east of Novaya Zemlya southward (the hyperpolar path) accumulating in Siberia around Lake Baikal. In the subsequent 2–3 days, these cold anomalies rapidly intrude western‐central China and induce abrupt sharp cooling, thus more frequent extreme low temperature there. In contrast, the role of autumn Barents‐Kara (BK) sea ice loss exhibits quite different features, mainly favoring northwestern, northeastern and eastern China to experience increased frequency of extreme low temperature in winter.
机译:抽象的基础上,再分析数据集和海上的冰敏感性实验,本研究指出秋天的海冰损失在东冬天的频率显著增加极端低温比西方还是中央中国并生成反气旋异常了北极地区1月后。综观涡量平均流量交互和异常上行传播行星波2,北极反气旋异常加强和发展对格陵兰岛还是北欧,伴随着削弱了平流层极涡。在内部非季节性向下传播平流层异常,北欧积极的位势高度异常增强7天内,扩大下游,支持北极的冷空气向南离东部(hyperpolar路径)积累在西伯利亚在贝加尔湖。这些寒冷异常迅速侵入中国中部和西部诱导突然清晰冷却,从而更频繁的极端低温度。秋天巴伦支海卡拉(BK)海冰损失应承担的展品完全不同的特征,主要是支持西北、东北和华东地区极低频率的增加经验在冬天温度。

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