Bjerknes compensation mechanism as a possible trigger of the low-frequency variability of Arctic amplification

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY Russian Journal of Earth Sciences Pub Date : 2022-11-23 DOI:10.2205/2022es000820
Mikhail M. Latonin, I. Bashmachnikov, L. Bobylev
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Abstract

The causes of Arctic amplification are widely debated, and a cohesive picture has not been obtained yet. This study has investigated the role of the Atlantic meridional oceanic and atmospheric heat transport into the Arctic in the emergence of Arctic amplification. The integral advective fluxes in the layer of Atlantic waters and in the lower troposphere were considered. The results show a strong coupling between the meridional heat fluxes and regional Arctic amplification in the Eurasian Arctic on the decadal time scales (10–15 years). We argue that the low-frequency variability of Arctic amplification is regulated via the chain of oceanic heat transport — atmospheric heat transport — Arctic amplification. The atmospheric response to the ocean influence occurs with a delay of three years and is attributed to the Bjerknes compensation mechanism. In turn, the atmospheric heat and moisture transport directly affects the magnitude of Arctic amplification, with the latter lagging by one year. Thus, the variability of oceanic heat transport at the southern boundary of the Nordic Seas might be a predictor of the Arctic amplification magnitude over the Eurasian Basin of the Arctic Ocean with a lead time of four years. The results are consistent with the concept of the decadal Arctic climate variability expressed via the Arctic Ocean Oscillation index.
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Bjerknes补偿机制作为北极放大低频变率的可能触发因素
北极变暖的原因引起了广泛的争论,目前还没有一个完整的图景。本研究探讨了大西洋经向海洋和大气热输送到北极在北极放大出现中的作用。考虑了大西洋水层和对流层下层的整体平流通量。结果表明,在10 ~ 15年的年代际尺度上,欧亚北极地区经向热通量与北极区域放大之间存在强耦合。我们认为北极放大的低频变率是通过海洋热输送-大气热输送-北极放大的链条来调节的。大气对海洋影响的响应有三年的延迟,这归因于比耶克内斯补偿机制。反过来,大气热湿输送直接影响北极放大幅度,后者滞后一年。因此,北欧海南缘海洋热输运的变率可能是北冰洋欧亚海盆北极放大幅度的预测因子,其提前时间为4年。结果与北冰洋涛动指数表达的北极气候年代际变率概念一致。
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来源期刊
Russian Journal of Earth Sciences
Russian Journal of Earth Sciences GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
15.40%
发文量
41
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