北极和中纬度天气和气候之间的联系:揭示海冰和海面温度变化的影响

IF 1.2 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
Ralf Jaiser, M. Akperov, A. Timazhev, Erik Romanowsky, D. Handorf, I. Mokhov
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引用次数: 1

摘要

该研究解决了这样一个问题,即北极海冰的减少是否是冬季北极-中纬度联系观测到的变化的主要驱动因素。我们讨论了全球海面温度的升高是否起到了额外的作用。分析了不同海冰和海表温度边界条件下的4组模型敏感性实验,并与再分析观测数据的变化进行了比较。进行了大气环流状态的探测。对这些气流的气旋和阻塞特征及其在冬季的频率变化进行了评价,以揭示由边界条件变化引起的对流层变化。此外,还研究了对上升到平流层的大尺度环流的影响。结果表明,海面温度变化的影响一般大于海冰浓度变化的影响。然而,特别是在星层路径方面,海冰和海面温度变化的综合影响最好地再现了再分析的结果。对于初冬,观测到的斯堪的纳维亚和乌拉尔之间区域大气阻塞的增加主要是由海面温度的变化引起的。然而,只有在海冰减少和海面温度升高的情况下,才能观察到极地涡旋减弱对平流层环流的影响。晚冬影响在模式敏感性研究中更加不一致,但当两个强迫分量都改变时略有改善。在这种情况下,我们进一步确定了模式中的一个差异,即通过阻止诱导的行星波向上传播来重现平流层极涡的减弱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linkages between Arctic and Mid-Latitude Weather and Climate: Unraveling the Impact of Changing Sea Ice and Sea Surface Temperatures

The study addresses the question, if Arctic sea ice decline is the main driver of observed changes in terms of Arctic-midlatitude linkages during winter. We discuss, if the increase of global sea surface temperatures plays an additional role. A set of four model sensitivity experiments with different sea ice and sea surface temperature boundary conditions is analyzed and compared to observed changes in reanalysis data. A detection of atmospheric circulation regimes is performed. These regimes are evaluated for their cyclone and blocking characteristics and their changes in frequency during winter to reveal tropospheric changes induced by the change of boundary conditions. Furthermore, the impacts on the large-scale circulation up into the stratosphere are investigated. The results show that the impact from sea surface temperature changes is generally stronger than the impact of sea ice concentration changes alone. However, in particular in terms of the startospheric pathway, the combined impact of sea ice and sea surface temperature changes reproduces findings from the reanalysis best.

For early winter, the observed increase in atmospheric blocking in the region between Scandinavia and the Ural are primarily induced by the changes in sea surface temperatures. Nevertheless, the impacts on the stratospheric circulation in terms of a weakened polar vortex, are only observed if sea ice is reduced and sea surface temperatures are increased. Late winter impacts are more inconsistent in the model sensitivity study, but slightly improved when both components of forcing are changed. In this context, we further identify a discrepancy in the model to reproduce the weakening of the stratospheric polar vortex through blocking induced upward propagation of planetary waves.

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来源期刊
Meteorologische Zeitschrift
Meteorologische Zeitschrift 地学-气象与大气科学
CiteScore
2.80
自引率
8.30%
发文量
19
审稿时长
6-12 weeks
期刊介绍: Meteorologische Zeitschrift (Contributions to Atmospheric Sciences) accepts high-quality, English language, double peer-reviewed manuscripts on all aspects of observational, theoretical and computational research on the entire field of meteorology and atmospheric physics, including climatology. Manuscripts from applied sectors such as, e.g., Environmental Meteorology or Energy Meteorology are particularly welcome. Meteorologische Zeitschrift (Contributions to Atmospheric Sciences) represents a natural forum for the meteorological community of Central Europe and worldwide.
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