冬季北极海冰下降与多年拉尼娜现象有关

IF 6.5 2区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Advances in Atmospheric Sciences Pub Date : 2024-07-17 DOI:10.1007/s00376-024-3194-y
Wenxiu Zhong, Qian Shi, Qinghua Yang, Jiping Liu, Song Yang
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引用次数: 0

摘要

自 20 世纪 90 年代末以来,巴伦支海-卡拉海(BKS)的北极海冰出现了显著下降。以往的研究表明,水汽向极地输送增加导致的海冰减少受到热带海洋温度变化(主要指拉尼娜现象)的调节。近几十年来,多年拉尼娜(MYLA)事件的发生率显著增加,其对北极海冰的影响有待进一步探讨。在本研究中,我们调查了多年拉尼娜和其他拉尼娜年(OTLA)期间海冰变化与不同大气诊断之间的关系。与 OTLA 年相比,MYLA 年冬季 BKS 海冰的下降幅度明显更大。这是因为多年拉尼娜现象往往伴随着暖北极-冷大陆模式,乌拉尔地区上空有气压高气压阻挡。因此,更频繁的向北大气河流侵入巴肯山脉,加强了向下的长波辐射,使巴肯山脉海冰融化。然而,在 OTLA 年的初冬,北半球高纬度地区出现了北大西洋负涛动,阻碍了冰岛南部的大气河流。我们推断,BKS 海冰下降对不同拉尼娜现象的不同反应与平流层过程有关。考虑到过去气候的快速变化,更频繁的多年拉尼娜事件可能是近几十年来北极海冰大量减少的原因。
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Wintertime Arctic Sea-Ice Decline Related to Multi-Year La Niña Events

Arctic sea ice has undergone a significant decline in the Barents–Kara Sea (BKS) since the late 1990s. Previous studies have shown that the decrease in sea ice caused by increased poleward moisture transport is modulated by tropical sea temperature changes (mainly referring to La Niña events). The occurrence of multi-year La Niña (MYLA) events has increased significantly in recent decades, and their impact on Arctic sea ice needs to be further explored. In this study, we investigate the relationship between sea-ice variation and different atmospheric diagnostics during MYLA and other La Niña (OTLA) years. The decline in BKS sea ice during MYLA winters is significantly stronger than that during OTLA years. This is because MYLA events tend to be accompanied by a warm Arctic–cold continent pattern with a barotropic high pressure blocked over the Urals region. Consequently, more frequent northward atmospheric rivers intrude into the BKS, intensifying longwave radiation downward to the underlying surface and melting the BKS sea ice. However, in the early winter of OTLA years, a negative North Atlantic Oscillation presents in the high latitudes of the Northern Hemisphere, which obstructs the atmospheric rivers to the south of Iceland. We infer that such a different response of BKS sea-ice decline to different La Niña events is related to stratospheric processes. Considering the rapid climate changes in the past, more frequent MYLA events may account for the substantial Arctic sea-ice loss in recent decades.

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来源期刊
Advances in Atmospheric Sciences
Advances in Atmospheric Sciences 地学-气象与大气科学
CiteScore
9.30
自引率
5.20%
发文量
154
审稿时长
6 months
期刊介绍: Advances in Atmospheric Sciences, launched in 1984, aims to rapidly publish original scientific papers on the dynamics, physics and chemistry of the atmosphere and ocean. It covers the latest achievements and developments in the atmospheric sciences, including marine meteorology and meteorology-associated geophysics, as well as the theoretical and practical aspects of these disciplines. Papers on weather systems, numerical weather prediction, climate dynamics and variability, satellite meteorology, remote sensing, air chemistry and the boundary layer, clouds and weather modification, can be found in the journal. Papers describing the application of new mathematics or new instruments are also collected here.
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