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Mechanisms of decadal variability in the shallow subtropical-tropical circulation of the Atlantic Ocean: a model study

机译:大西洋亚热带浅热带环流年代际变化的机理:模型研究

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摘要

A suite of basin-scale models of the thermohaline and wind-driven circulation in the Atlantic Ocean is used to study the mechanisms of decadal variability in the shallow subtropical-tropical cells (STCs). The emphasis is on the spatial patterns of the transport anomalies in the tropical thermocline, particularly their manifestation in the equatorial current system and on the relative role of changes in the deep meridional overturning cell (MOC) associated with variations in the formation of Labrador Sea Water (LSW) in the subpolar North Atlantic. Using wind stress and heat flux variations based on NCEP/NCAR-reanalysis products, the variability of the zonally integrated STC transports is similar to that obtained in a recent regional model study, corroborating the role of both the southern and northern STC in supporting wind-driven transport anomalies of O(2 Sv) near the equator. Sensitivity experiments indicate that changes in subarctic MOC transports associated with the strong variability in LSW formation during the last decades contributed a signal of O(0.3 Sv) to the upper-layer equatorial transports. Whereas the local wind-driven variability clearly dominates on interannual-decadal timescales and is confined to depths down to 150 m, the weak MOC-related signal is primarily reflected in an interdecadal modulation of the STC transports. While a strong part in the STC's transport anomalies is associated with the western boundary current (NBC), there is an important contribution also by weaker, interior ocean flow anomalies which tend to counteract the variability of the NBC.
机译:一套大西洋海域热盐和风驱动环流的盆地尺度模型被用来研究浅亚热带-热带细胞(STCs)年代际变化的机制。重点是热带温跃层输运异常的空间格局,尤其是它们在赤道洋流系统中的表现,以及与拉布拉多海水形成变化有关的深子午翻转单元(MOC)变化的相对作用。 (LSW)在北极亚极。使用基于NCEP / NCAR再分析产品的风应力和热通量变化,区域整合STC运移的变化与最近的区域模型研究中获得的变化相似,从而证实了南部和北部STC在支持风赤道附近的O(2 Sv)驱动的运输异常。敏感性实验表明,与近几十年来LSW形成的强烈变化有关的亚弧MOC运移的变化为上层赤道运移贡献了O(0.3 Sv)信号。尽管当地的风变率显然在年际年代际尺度上占主导地位,并被限制在低至150 m的深度,但与MOC有关的微弱信号主要反映在STC传输的年代际调制中。尽管STC的运输异常中有很大一部分与西部边界流(NBC)有关,但较弱的内部洋流异常也有重要作用,这往往会抵消NBC的变化。

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