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NAO-ocean circulation interactions in a coupled general circulation model

机译:耦合的一般环流模型中的NAO-海洋环流相互作用

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摘要

The interplay between the North Atlantic Oscillation (NAO) and the large scale ocean circulation is inspected in a twentieth century simulation conducted with a state-of-the-art coupled general circulation model. Significant lead-lag covariance between oceanic and tropospheric variables suggests that the system supports a damped oscillatory mode involving an active ocean-atmosphere coupling, with a typical NAO-like space structure and a 5 years timescale, qualitatively consistent with a mid-latitude delayed oscillator paradigm. The two essential processes governing the oscillation are (1) a negative feedback between ocean gyre circulation and the high latitude SST meridional gradient and (2) a positive feedback between SST and the NAO. The atmospheric NAO pattern appears to have a weaker projection on the ocean meridional overturning, compared to the gyre circulation, which leads to a secondary role for the thermohaline circulation in driving the meridional heat transport, and thus the oscillatory mode.
机译:北大西洋涛动(NAO)与大规模海洋环流之间的相互作用是在20世纪通过最先进的耦合一般环流模型进行的模拟中进行的。大洋和对流层变量之间的超前滞后协方差表明,该系统支持阻尼振荡模式,该模式涉及活跃的海洋-大气耦合,具有典型的NAO样空间结构,时标为5年,在质量上与中纬度延迟振荡器一致范例。控制振荡的两个基本过程是(1)海洋回旋环流和高纬度SST经线梯度之间的负反馈,以及(2)SST和NAO之间的正反馈。与回旋环流相比,大气NAO模式似乎在海洋子午倾覆上的投影较弱,这导致热盐环流在驱动子午热传输以及振荡模式方面具有次要作用。

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