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Seasonal modes of dryness and wetness variability over Europe and their connections with large scale atmospheric circulation and global sea surface temperature

机译:欧洲干湿变化的季节性模式及其与大规模大气环流和全球海表温度的联系

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摘要

The relationship between the seasonal modes of interannual variability of a multiscalar drought index over Europe and the large-scale atmospheric circulation and sea surface temperature (SST) anomaly fields is investigated through statistical analysis of observed and reanalysis data. It is shown that the seasonal modes of dryness and wetness variability over Europe and their relationship with the large-scale atmospheric circulation and global SST anomaly fields differ from one season to another. During winter, the dominant modes of dryness and wetness variability are influenced by the Arctic Oscillation (AO)/North Atlantic Oscillation (NAO), the Scandinavian pattern, the East Atlantic pattern and the East Atlantic/Western Russia pattern. The spring dryness/wetness modes are influenced mainly by the AO, Polar/Eurasian patterns and the Atlantic Multidecadal Oscillation conditions. The phases (positive or negative) and the superposition of these large scale variability modes play a significant role in modulating the drought conditions over Europe. During summer, the atmospheric blocking is one of the main drivers of dryness and wetness conditions, while during autumn dryness/wetness conditions variability can be related to the NAO or with a wave train like pattern in the geopotential height at 850mb, which develops over the Atlantic Ocean and extends up to Siberia. It is also found that the response of the dryness and wetness conditions to global SST is more regional in summer, compared to the other seasons, when local processes may play a more important role.
机译:通过对观测资料和再分析资料的统计分析,研究了欧洲多尺度干旱指数年际变化的季节模式与大规模大气环流和海表温度(SST)异常场之间的关系。结果表明,欧洲干燥和湿度变化的季节模式及其与大规模大气环流和全球海表温度异常场的关系在一个季节之间是不同的。在冬季,干燥和湿度变化的主要模式受北极涛动(AO)/北大西洋涛动(NAO),斯堪的纳维亚模式,东大西洋模式和东大西洋/俄罗斯西部模式的影响。春季干/湿模式主要受AO,极/欧亚模式和大西洋多年代际振荡条件的影响。这些大规模变异模式的相位(正向或负向)和叠加在调节欧洲干旱状况中起着重要作用。在夏季,大气阻塞是干燥和湿润条件的主要驱动因素之一,而在秋季干燥/湿润条件下,变异性可能与NAO有关,也可能与地势高度850mb处的波状波状模式有关,该波状图样在海拔高度上发展。大西洋,一直延伸到西伯利亚。还发现,与其他季节相比,干燥和潮湿条件对全球SST的响应在夏季更具区域性,而其他季节则可能在本地过程中发挥更重要的作用。

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