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首页> 外文期刊>Journal of Climate >Numerical investigations of seasonal and interannual variability of North Pacific Subtropical Mode Water and its implications for pacific climate variability.
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Numerical investigations of seasonal and interannual variability of North Pacific Subtropical Mode Water and its implications for pacific climate variability.

机译:北太平洋亚热带模式水季节和年际变化的数值研究及其对太平洋气候变化的影响。

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North Pacific Subtropical Mode Water (NPSTMW) is an essential feature of the North Pacific subtropical gyre imparting significant influence on regional SST evolution on seasonal and longer time scales and, as such, is an important component of basin-scale North Pacific climate variability. This study examines the seasonal-to-interannual variability of NPSTMW, the physical processes responsible for this variability, and the connections between NPSTMW and basin-scale climate signals using an eddy-permitting 1979-2006 ocean simulation made available by the Estimating the Circulation and Climate of the Ocean, Phase II (ECCO2). The monthly mean seasonal cycle of NPSTMW in the simulation exhibits three distinct phases: (i) formation during November-March, (ii) isolation during March-June, and (iii) dissipation during June-November - each corresponding to significant changes in upper-ocean structure. An interannual signal is also evident in NPSTMW volume and other characteristic properties with volume minima occurring in 1979, 1988, and 1999. This volume variability is correlated with the Pacific decadal oscillation (PDO) with zero time lag. Further analyses demonstrate the connection of NPSTMW to the basin-scale ocean circulation. With this, modulations of upper-ocean structure driven by the varying strength and position of the westerlies as well as the regional air-sea heat flux pattern are seen to contribute to the variability of NPSTMW volume on interannual time scales.Digital Object Identifier http://dx.doi.org/10.1175/2010JCLI3435.1
机译:北太平洋亚热带模式水(NPSTMW)是北太平洋亚热带回旋的基本特征,对季节性和较长时间尺度的区域SST演变具有重要影响,因此,它是流域尺度北太平洋气候变化的重要组成部分。这项研究使用了1979-2006年的涡流许可海洋模拟,研究了NPSTMW的季节到年际变化,造成这种变化的物理过程,以及NPSTMW和流域尺度气候信号之间的联系。海洋气候,第二阶段(ECCO2)。在模拟中,NPSTMW的月平均季节周期显示出三个不同的阶段:(i)11月至3月的形成,(ii)3月至6月的孤立,以及(iii)6月至11月的消散-每个都对应于上层的显着变化。海洋结构。 NPSTMW体积和其他特征的年际信号也很明显,体积最小值出现在1979、1988和1999年。该体积变化与零时滞的太平洋年代际振荡(PDO)相关。进一步的分析表明,NPSTMW与流域尺度的海洋环流有关。这样,由于西风强度和位置的变化以及区域海海热通量模式的驱动,对上层海洋结构的调节被认为有助于NPSTMW体积在年际尺度上的变化。 //dx.doi.org/10.1175/2010JCLI3435.1

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