热带西太平洋的加强梯度在亚季节时间尺度上与欧洲夏季气温有关

Chiem van Straaten, Dim Coumou, Kirien Whan, Bart van den Hurk, Maurice Schmeits
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引用次数: 0

摘要

摘要最近的研究表明,与厄尔Niño-Southern涛动(ENSO)密切相关的热带太平洋对流(亚)季节变化与欧洲-大西洋夏季环流有关。这种遥相关是非平稳的,可能是由于热带太平洋和热带外大西洋的长期变化。数值模型似乎也没有完全捕捉到它。发现西太平洋海表温度偶极子是欧洲温度数值分季节预报误差的最佳预测因子。在这项诊断研究中,我们使用再分析数据来进一步研究远连通路及其非平稳性背后的过程。我们发现,与偶极子相关的海温梯度是ENSO变率和西太平洋变暖的结合,并且自1980年以来变得更强。热带加热被抑制和增强的相关型态之后是持续数周的准静止波。在La Niña-like梯度之后,东欧和俄罗斯的高压中心在三到六周后出现。三到六周后,西欧上空的高压紧随其后。后一种情况的条件是北大西洋海温的强经向三极和同一位置的急流。总的来说,本研究中诊断的亚季节路径与季节尺度上检测到的模式相关联,并证实了早期的发现,即太平洋和欧洲之间的夏季连通性在最近几十年发生了变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strengthening gradients in the tropical west Pacific connect to European summer temperatures on sub-seasonal timescales
Abstract. Recent work has shown that (sub-)seasonal variability in tropical Pacific convection, closely linked to the El Niño–Southern Oscillation (ENSO), relates to summertime circulation over the Euro-Atlantic. The teleconnection is non-stationary, probably due to long-term changes in both the tropical Pacific and extra-tropical Atlantic. It also appears imperfectly captured by numerical models. A dipole in west Pacific sea surface temperatures (SSTs) was found to be the best predictor of errors in numerical sub-seasonal forecasts of European temperature. In this diagnostic study we use reanalysis data to further investigate the teleconnection pathway and the processes behind its non-stationarity. We show that SST gradients associated with the dipole represent a combination of ENSO variability and west Pacific warming, and have become stronger since 1980. Associated patterns of suppressed and enhanced tropical heating are followed by quasi-stationary waves that linger for multiple weeks. Situations with La Niña-like gradients are followed by high-pressure centres over eastern Europe and Russia, three to six weeks later. Inverted situations are followed by high pressure over western Europe, three to six weeks later. The latter situation is conditional on a strong meridional tripole in north Atlantic SSTs and a co-located jet stream. Overall, the sub-seasonal pathway diagnosed in this study connects to patterns detected on seasonal scales, and confirms earlier findings that the summertime connectivity between the Pacific and Europe has shifted in recent decades.
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