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The spring relationship between the Pacific-North American pattern and the North Atlantic Oscillation

机译:北美太平洋格局与北大西洋涛动之间的春季关系

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The Pacific-North American pattern (PNA) and North Atlantic Oscillation (NAO) are two dominant modes of low-frequency variability in the Northern Hemisphere winter. Generally these two patterns are separable and uncorrelated in both space and time. However, dating back to the 1970s there have been studies which have linked the Aleutian and Icelandic low intensities, and shown that a significant temporal correlation does, on occasion, occur. Each of these semi-permanent low pressure systems is a part of the PNA and NAO patterns, respectively, and therefore, given a link between the two semi-permanent low pressure systems, we explore whether a link between the PNA and NAO also appears. Recently studies have found such a link during the winters of certain decades. The present study, documents an observed relationship between the PNA and NAO which is consistently present during the spring and early summer. This relationship is shown to be due to the fact that the PNA and NAO are spatially overlapping projections of the same pattern of variability, given by the first EOF of 500 hPa geopotential height. Both the PNA and NAO patterns correlate more strongly to the first EOF's spatial pattern, resembling the Aleutian low-Icelandic low seesaw pattern, than the rotated EOF (REOF) loading patterns used to compute their respective indices. Furthermore, when the two patterns are correlated, the effect of El-Nino on the Northern Hemisphere is separate from the pattern associated with the PNA. Finally, we examine a 21-year period in the winter for which the PNA and NAO are significantly correlated, and find that the conclusions drawn from the spring hold true. The results presented herein demonstrate that defining the PNA and NAO based upon typical loading patterns may not be the ideal approach; especially given that the patterns are spatially similar and covary in time.
机译:太平洋北美模式(PNA)和北大西洋涛动(NAO)是北半球冬季低频变化的两种主要模式。通常,这两种模式在空间和时间上都是可分离的并且不相关。但是,可以追溯到1970年代,已有研究将阿留申和冰岛的低强度联系起来,并表明有时确实发生了明显的时间相关性。这些半永久性低压系统分别是PNA和NAO模式的一部分,因此,鉴于两个半永久性低压系统之间的联系,我们探讨了PNA和NAO之间是否也存在联系。最近的研究发现,在某些几十年的冬天,这种联系。本研究记录了在春季和初夏期间始终存在的PNA与NAO之间的关系。表示这种关系是由于PNA和NAO是空间重叠的同一变化模式的投影,这是由500 hPa地势高度的第一个EOF给出的。与用于计算各自指数的旋转EOF(REOF)加载模式相比,PNA和NAO模式与第一个EOF的空间模式(与阿留申低冰岛低跷跷板模式类似)的关联性更强。此外,当两个模式相关时,厄尔尼诺现象对北半球的影响与与PNA相关的模式是分开的。最后,我们检查了冬季的21年期,其中PNA和NAO显着相关,并且发现从春季得出的结论是正确的。本文提供的结果表明,基于典型的加载模式定义PNA和NAO可能不是理想的方法;尤其是考虑到这些模式在空间上相似并且在时间上是变化的。

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