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Variations in freshwater pathways from the Arctic Ocean into the North Atlantic Ocean

机译:从北冰洋到北大西洋的淡水路径的变化

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Understanding the mechanisms that drive exchanges between the Arctic Ocean and adjacent oceans is critical to building our knowledge of how the Arctic is reacting to a warming climate, and how potential changes in Arctic Ocean freshwater export may impact the AMOC (Atlantic Meridional Overturning Circulation). Here, freshwater pathways from the Arctic Ocean to the North Atlantic are investigated using a 1 degree global model. An EOF analysis of modeled sea surface height (SSH) demonstrates that while the second mode accounts for only 15% of the variability, the associated geostrophic currents are strongly correlated with freshwater exports through CAA (Canadian Arctic Archipelago; r = 0.75), Nares Strait (r = 0.77) and Fram Strait (r = -0.60). Separation of sea level into contributing parts allows us to show that the EOF1 is primarily a barotropic mode reflecting variability in bottom pressure equivalent sea level, while the EOF2 mode reflects changes in steric height in the Arctic Basin. This second mode is linked to momentum wind driven surface current, and dominates the Arctic Ocean freshwater exports. Both the Arctic Oscillation and Arctic Dipole atmospheric indices are shown to be linked to Arctic Ocean freshwater exports, with the forcing associated with the Arctic Dipole reflecting the out of-phase relationship between transports through the CM and those through Fram Strait. Finally, observed freshwater transport variation through the CM is found to be strongly correlated with tide gauge data from the Beaufort Sea coast (r = 0.81), and with the EOF2 mode of GRACE bottom pressure data (r = 0.85) on inter-annual timescales. (C) 2017 Published by Elsevier Ltd. All rights reserved.
机译:理解推动北冰洋与相邻海洋之间交换的机制对于建立我们对北极如何对变暖的气候做出反应以及北冰洋淡水出口的潜在变化如何影响AMOC(大西洋子午线翻转循环)的知识至关重要。在这里,使用1度全局模型研究了从北冰洋到北大西洋的淡水路径。对模型海面高度(SSH)的EOF分析表明,虽然第二种模式仅占变异性的15%,但相关的地转流与通过CAA(加拿大北极群岛; r = 0.75)的淡水出口密切相关,纳雷斯海峡(r = 0.77)和Fram Strait(r = -0.60)。将海平面分成重要部分可以使我们证明EOF1主要是一种正压模式,反映了底压等效海平面的变化,而EOF2模式则反映了北极盆地的空间高度变化。第二种模式与动量风驱动的地表流有关,并主导着北冰洋淡水出口。北极涛动指数和北极偶极子大气指数均与北冰洋淡水出口有关,与北极偶极子有关的强迫反映了通过CM的运输与通过Fram海峡的运输之间的异相关系。最后,发现通过CM观测到的淡水运移变化与波弗特海沿岸的潮汐仪数据(r = 0.81)以及年际时标上的GRACE底部压力数据的EOF2模式(r = 0.85)密切相关。 。 (C)2017由Elsevier Ltd.出版。保留所有权利。

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