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首页> 外文期刊>Advances in Atmospheric Sciences >A Preliminary Study on the Relationship Between Arctic Oscillation and Daily SLP Variance in the Northern Hemisphere During Wintertime
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A Preliminary Study on the Relationship Between Arctic Oscillation and Daily SLP Variance in the Northern Hemisphere During Wintertime

机译:冬季北半球北极涛动与每日SLP变化之间关系的初步研究

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摘要

In the present study, the authors investigated the relationship between the Arctic Oscillation (AO) and the high-frequency variability of daily sea level pressures in the Northern Hemisphere in winter (November through March), using NCEP/NCAR reanalysis datasets for the time period of 1948/49-2000/01. High-frequency signals are defined as those with timescales shorter than three weeks and measured in terms of variance, for each winter for each grid. The correlations between monthly mean AO index and high-frequency variance are conducted. A predominant feature is that several regional centers with high correlation show up in the middle to high latitudes. Significant areas include mid- to high-latitude Asia centered at Siberia, northern Europe and the middle-latitude North Atlantic east of northern Africa. Their strong correlations can also be confirmed by the singular value decomposition analysis of covariance between mean SLP and high-frequency variance. This indicates that the relationship of AO with daily Sea Level Pressure (SLP) is confined to some specific regions in association with the inherent atmospheric dynamics. In middle-latitude Asia, there is a significant (at the 95% level) trend of variance of -2.26% (10 yr)~(-1). Another region that displays a strong trend is the northwestern Pacific with a significant rate of change of 0.80% (10 yr)~(-1). If the winter of 1948/49, an apparent outlier, is excluded, a steady linear trend of +1.51% (10 yr)~(-1) shows up in northern Europe. The variance probability density functions (PDFs) are found to change in association with different AO phases. The changes corresponding to high and low AO phases, however, axe asymmetric in these regions. Some regions such as northern Europe display much stronger changes in high AO years, whereas some other regions such as Siberia show a stronger connection to low AO conditions. These features are supported by ECMWF reanalysis data. However, the dynamical mechanisms involved in the AO-high frequency SLP variance connection have not been well understood, and this needs further study.
机译:在本研究中,作者使用NCEP / NCAR再分析数据集研究了北半球冬季(11月至3月)的北极涛动(AO)与日海平面压力的高频变化之间的关系。 1948 / 49-2000 / 01。高频信号的定义是,每个冬季每个网格的时标短于三周,并用方差来衡量。进行月平均AO指数与高频方差之间的相关性。一个主要特征是在中高纬度地区出现了几个具有高度相关性的区域中心。重要地区包括以西伯利亚,北欧和北非东部的中纬度北大西洋为中心的中高纬度亚洲。它们的强相关性也可以通过均值SLP和高频方差之间的协方差的奇异值分解分析来确认。这表明AO与每日海平面压力(SLP)的关系仅限于某些特定区域,与固有的大气动力学有关。在中纬度亚洲,有一个明显的(在95%水平上)方差为-2.26%(10年)〜(-1)的趋势。另一个表现出强劲趋势的地区是西北太平洋,其变化幅度为0.80%(10年)〜(-1)。如果将1948/49年冬季(一个明显的异常)排除在外,则北欧出现+ 1.51%(10年)〜(-1)的稳定线性趋势。发现方差概率密度函数(PDF)随不同AO相位而变化。然而,对应于高和低AO相位的变化在这些区域中是不对称的。某些地区(如北欧)在高AO年份显示出更强的变化,而其他一些地区(如西伯利亚)与低AO条件则显示出更强的联系。 ECMWF重新分析数据支持这些功能。然而,关于AO-高频SLP方差连接的动力学机制尚未得到很好的理解,这需要进一步研究。

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