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Bjerknes-like Compensation in the Wintertime North Pacific

机译:北太平洋冬季类似Bjerknes的补偿

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摘要

Observational and model evidence has been mounting that mesoscale eddies play an important role in air-sea interaction in the vicinity of western boundary currents and can affect the jet stream storm track. What is less clear is the interplay between oceanic and atmospheric meridional heat transport in the vicinity of western boundary currents. It is first shown that variability in the North Pacific, particularly in the Kuroshio Extension region, simulated by a high-resolution fully coupled version of the Community Earth System Model matches observations with similar mechanisms and phase relationships involved in the variability. The Pacific decadal oscillation (PDO) is correlated with sea surface height anomalies generated in the central Pacific that propagate west preceding Kuroshio Extension variability with a similar to 3-4-yr lag. It is then shown that there is a near compensation of O(0.1) PW (PW equivalent to 10(15) W) between wintertime atmospheric and oceanic meridional heat transport on decadal time scales in the North Pacific. This compensation has characteristics of Bjerknes compensation and is tied to the mesoscale eddy activity in the Kuroshio Extension region.
机译:越来越多的观测和模型证据表明,中尺度涡旋在西边界流附近的海-气相互作用中起着重要作用,并且会影响射流的风暴轨迹。尚不清楚的是,西部边界流附近的海洋与大气子午热传递之间的相互作用。首次显示,由高分辨率,完全耦合版本的“社区地球系统模型”模拟的北太平洋,特别是黑潮扩展区的变异性,使观测结果与变异性中涉及的相似机制和相位关系相匹配。太平洋年代际振荡(PDO)与在太平洋中部产生的海平面高度异常相关,该异常在黑潮扩展变率之前向西传播,与3-4年滞后相似。然后表明,在北太平洋年代际时间尺度上,冬季大气和海洋子午热传输之间存在O(0.1)PW(PW等于10(15)W)的接近补偿。这种补偿具有Bjerknes补偿的特征,并且与黑潮扩展区的中尺度涡旋活动有关。

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