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Role of sea surface temperature, Arctic sea ice and Siberian snow in forcing the atmospheric circulation in winter of 2012-2013

机译:2012-2013年冬季海表温度,北极海冰和西伯利亚积雪在强迫大气环流中的作用

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During the 2012-2013 winter, the negative phase of the North Atlantic Oscillation (NAO) predominated, resulting in a cold winter over Europe and northern Asia punctuated by episodes of frigid weather. This climate anomaly is part of a recent trend towards negative values of the NAO index that has occurred over recent winters. The negative trend of the NAO may be related to atmospheric internal variability but it may also be partly forced by slowly varying components of the climate system. In the present study, we investigate the influence of surface conditions on the atmospheric circulation for the 2012-2013 winter using an atmospheric global climate model. In particular, the role of low Arctic sea ice concentration, warm tropical/North Atlantic sea surface temperature and positive Siberian snow cover anomalies are isolated by prescribing them in a set of different numerical experiments. Our simulations suggest that each of these surface forcings favored a negative NAO during the 2012-2013 winter. In our model, the combined NAO response to tropical/North Atlantic SST, Arctic sea ice and Siberian snow anomalies accounts for about 30 % of the observed NAO anomaly. Different physical mechanisms are explored to elucidate the atmospheric responses and are shown to involve both tropical and extratropical processes.
机译:在2012年至2013年冬季,北大西洋涛动(NAO)的负相位占主导地位,导致欧洲和北亚的寒冷冬季被严寒天气打断。这种气候异常是最近冬季出现的NAO指数出现负值的最新趋势的一部分。 NAO的负面趋势可能与大气内部变化有关,但也可能部分地由气候系统的缓慢变化所致。在本研究中,我们使用大气全球气候模型调查地表条件对2012-2013年冬季大气环流的影响。特别是,通过在一系列不同的数值实验中对北极海冰浓度低,热带/北大西洋海温升高和西伯利亚积雪正异常的作用进行了隔离。我们的模拟表明,在2012-2013年冬季期间,这些表面强迫中的每一个都对负NAO有利。在我们的模型中,NAO对热带/北大西洋海温,北极海冰和西伯利亚雪异常的综合响应约占所观测到的NAO异常的30%。探索了不同的物理机制来阐明大气响应,并显示涉及热带和温带过程。

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