Effect of large-scale modes of total variability of the atmosphere and ocean in the Atlantic-European region on the climate of Belarus

S. Lysenko, V. Loginov, I. V. Buyakov
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Abstract

We have established the relationships of quasicyclic components in changes of air temperature and precipitation in Belarus with large-scale modes of general variability of the atmosphere and ocean in the Atlantic-European region. When the summer air temperature changes in Belarus and in Eastern Europe, a quasi-60-year oscillation is identified, which coincides in phase with the Atlantic multi-decadal oscillation. It is shown that the time series of winter air temperature in Belarus contain a quasi-8-year component synchronized with a similar component of the North Atlantic Oscillation. Moreover, the periods of acceleration and deceleration of winter warming in Belarus coincide with the upward and downward quasi-30-year phases of the North Atlantic Oscillation, respectively. The latter are also consistent with fluctuations in moisture content in Belarus and Europe. Based on the established patterns, we have concluded that the rapid rise in winter temperatures, slowing down of summer warming and deterioration in water supply in the southern regions of Belarus observed in the last decade are part of a natural cycle lasting about 30 years, developing against the background of a long-term trend of anthropogenic global warming.
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大西洋-欧洲地区大气和海洋总变率的大尺度模态对白俄罗斯气候的影响
我们已经建立了白俄罗斯气温和降水变化的准循环分量与大西洋-欧洲地区大气和海洋一般变率的大尺度模态的关系。当白俄罗斯和东欧的夏季气温变化时,发现了一个准60年振荡,它与大西洋多年代际振荡相一致。结果表明,白俄罗斯冬季气温时间序列包含与北大西洋涛动相似分量同步的准8年分量。此外,白俄罗斯冬季增暖的加速期和减速期分别与北大西洋涛动的准30年上升和下降相吻合。后者也与白俄罗斯和欧洲的水分含量波动相一致。根据已确定的模式,我们得出结论,过去十年在白俄罗斯南部地区观测到的冬季气温迅速上升、夏季升温放缓和供水恶化是持续约30年的自然循环的一部分,是在人为全球变暖的长期趋势背景下发展起来的。
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