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Interannual-decadal variability of wintertime mixed layer depths in the North Pacific detected by an ensemble of ocean syntheses

机译:海洋综合观测到的北太平洋冬季混合层深度的年际年代际变化

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摘要

The interannual-decadal variability of the wintertime mixed layer depths (MLDs) over the North Pacific is investigated from an empirical orthogonal function (EOF) analysis of an ensemble of global ocean reanalyses. The first leading EOF mode represents the interannual MLD anomalies centered in the eastern part of the central mode water formation region in phase opposition with those in the eastern subtropics and the central Alaskan Gyre. This first EOF mode is highly correlated with the Pacific decadal oscillation index on both the interannual and decadal time scales. The second leading EOF mode represents the MLD variability in the subtropical mode water (STMW) formation region and has a good correlation with the wintertime West Pacific (WP) index with time lag of 3 years, suggesting the importance of the oceanic dynamical response to the change in the surface wind field associated with the meridional shifts of the Aleutian Low. The above MLD variabilities are in basic agreement with previous observational and modeling findings. Moreover the reanalysis ensemble provides uncertainty estimates. The interannual MLD anomalies in the first and second EOF modes are consistently represented by the individual reanalyses and the amplitudes of the variabilities generally exceed the ensemble spread of the reanalyses. Besides, the resulting MLD variability indices, spanning the 1948–2012 period, should be helpful for characterizing the North Pacific climate variability. In particular, a 6-year oscillation including the WP teleconnection pattern in the atmosphere and the oceanic MLD variability in the STMW formation region is first detected.
机译:通过对全球海洋再分析集合的经验正交函数(EOF)分析,研究了北太平洋冬季混合层深度(MLD)的年际年代际变化。第一个领先的EOF模式代表年中MLD异常,其集中在中部模式水形成区域的东部,与东部亚热带和中部阿拉斯加环流相反。第一个EOF模式在年际和年代际时间尺度上都与太平洋年代际振荡指数高度相关。第二个领先的EOF模式代表了亚热带模式水(STMW)形成区域的MLD变异性,并且与冬季西太平洋(WP)指数具有良好的相关性,且时滞为3年,这表明海洋动力响应对海洋动力学的重要性。与阿留申低地子午线位移相关的地表风场变化。上述MLD变异与先前的观测和模型发现基本吻合。此外,重新分析合奏提供不确定性估计。第一和第二EOF模式下的年际MLD异常始终由单独的重新分析表示,并且变化幅度通常超过重新分析的整体分布。此外,由此得出的横跨1948-2012年的MLD变异性指数应有助于表征北太平洋的气候变异性。特别是,首先检测到6年的振荡,包括大气中的WP遥距模式和STMW形成区域中的海洋MLD变异性。

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