北大西洋东部次极环流的季节性翻转变率:拉格朗日视角

IF 4.1 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Ocean Science Pub Date : 2023-06-06 DOI:10.5194/os-19-769-2023
O. Tooth, H. Johnson, Chris Wilson, D. G. Evans
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引用次数: 2

摘要

摘要观测和海洋再分析都显示北大西洋东部次极环流(eSPG)内大西洋经向翻转环流(MOC)的强度具有明显的季节性。然而,由于冰岛和Irminger盆地内的再循环时间尺度分布广泛,将这种季节性翻转归因于季节性致密水形成仍然具有挑战性。在这里,我们利用拉格朗日水包轨迹来研究季节性翻转变率的本质,这些轨迹初始化在一个允许涡旋的海洋海冰后预报的亚极地北大西洋计划(opsnap)东段的翻转。采用拉格朗日的观点,我们发现秋季欧拉翻转的季节极小值是由上东格陵兰流的层化增强和向南输送增加共同造成的。MOC上肢向南输送的辐合可以用伊尔明格海上部水包再循环次数的减少来解释,这与环流尺度对季节性风强迫的响应一致。为了解释eSPG内再循环时间的多样性,我们还将拉格朗日倾覆(LMOC)量化为沿水包轨迹的总致密水形成。来自北大西洋暖流中部和南部分支的大部分水包在经历冬季向下肢的剧烈转变之前未能返回OSNAP东部,因此它们决定了eSPG内LMOC的平均强度(8.9±2.2 Sv)。LMOC的强烈季节性可以解释为在Irminger上游和冰岛中部盆地中快速循环(≤8.5个月)的一小部分上肢水包的收集,其沿流转变取决于它们到达OSNAP东部的月份。
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Seasonal overturning variability in the eastern North Atlantic subpolar gyre: a Lagrangian perspective
Abstract. Both observations and ocean reanalyses show a pronounced seasonality in the strength of the Atlantic meridional overturning circulation (MOC) within the eastern North Atlantic subpolar gyre (eSPG). However, attributing this overturning seasonality to seasonal dense water formation remains challenging owing to the wide distribution of recirculation timescales within the Iceland and Irminger basins. Here, we investigate the nature of seasonal overturning variability using Lagrangian water parcel trajectories initialised across the Overturning in the Subpolar North Atlantic Program (OSNAP) East section within an eddy-permitting ocean sea ice hindcast. By adopting a Lagrangian perspective, we show that the seasonal minimum of the Eulerian overturning at OSNAP East in autumn results from a combination of enhanced stratification and increased southward transport within the upper East Greenland Current. This convergence of southward transport within the MOC upper limb is explained by decreasing water parcel recirculation times in the upper Irminger Sea, consistent with a gyre-scale response to seasonal wind forcing. To account for the diversity of recirculation times within the eSPG, we also quantify the Lagrangian overturning (LMOC) as the total dense water formation along water parcel trajectories. The majority of water parcels, sourced from the central and southern branches of the North Atlantic Current, fail to return to OSNAP East prior to experiencing wintertime diapycnal transformation into the lower limb, and thus they determine the mean strength of the LMOC within the eSPG (8.9 ± 2.2 Sv). The strong seasonality of the LMOC is explained by a small collection of upper-limb water parcels, circulating rapidly (≤ 8.5 months) in the upper Irminger and central Iceland basins, whose along-stream transformation is determined by their month of arrival at OSNAP East.
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来源期刊
Ocean Science
Ocean Science 地学-海洋学
CiteScore
5.90
自引率
6.20%
发文量
78
审稿时长
6-12 weeks
期刊介绍: Ocean Science (OS) is a not-for-profit international open-access scientific journal dedicated to the publication and discussion of research articles, short communications, and review papers on all aspects of ocean science: experimental, theoretical, and laboratory. The primary objective is to publish a very high-quality scientific journal with free Internet-based access for researchers and other interested people throughout the world. Electronic submission of articles is used to keep publication costs to a minimum. The costs will be covered by a moderate per-page charge paid by the authors. The peer-review process also makes use of the Internet. It includes an 8-week online discussion period with the original submitted manuscript and all comments. If accepted, the final revised paper will be published online. Ocean Science covers the following fields: ocean physics (i.e. ocean structure, circulation, tides, and internal waves); ocean chemistry; biological oceanography; air–sea interactions; ocean models – physical, chemical, biological, and biochemical; coastal and shelf edge processes; paleooceanography.
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