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Eddy transport as a key component of the Antarctic overturning circulation

机译:涡流运输是南极倾覆环流的关键组成部分

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The exchange ofwater masses across the Antarctic continental shelf break regulates the export of dense shelf waters to depth as well as the transport of warm, mid-depth waters towards ice shelves and glacial grounding lines~1. The penetration of the warmer mid-depth waters past the shelf break has been implicated in the pronounced loss of ice shelf mass over much of west Antarctica~(2-4). In high-resolution, regional circulation models, the Antarctic shelf break hosts an energetic mesoscale eddy field~(5,6), but observations that capture this mesoscale variability have been limited. Here we show, using hydrographic data collected from ocean gliders, that eddy-induced transport is a primary contributor to mass and property fluxes across the slope. Measurements along ten cross-shelf hydrographic sections show a complex velocity structure and a stratification consistent with an onshore eddy mass flux. We show that the eddy transport and the surface wind-driven transport make comparable contributions to the total overturning circulation.Eddy-induced transport is concentrated in the warm, intermediate layers away from frictional boundaries. We conclude that understanding mesoscale dynamics will be critical for constraining circumpolar heat fluxes and future rates of retreat of Antarctic ice shelves.
机译:跨南极大陆架断裂的水团交换调节着密集的架子水向深处的出口以及温暖,中深度的水向冰架和冰川接地线的输送[1]。南极西部〜(2-4)大部分地区冰架质量的明显损失都与较暖的中深度水域越过陆架断裂的渗透有关。在高分辨率的区域环流模型中,南极陆架破裂带动了一个高能的中尺度涡旋场〜(5,6),但是捕获这种中尺度变化的观测却受到限制。在这里,我们使用海洋滑翔机收集的水文数据表明,涡流引起的运输是整个斜坡上质量和特性通量的主要贡献者。沿十个跨陆架水文剖面的测量结果显示出复杂的速度结构和与陆上涡流质量通量一致的分层。我们显示出涡流运输和地表风驱动的运输对整个倾覆环流做出了可比的贡献。涡流引起的运输集中在温暖的中间层,远离摩擦边界。我们得出结论,了解中尺度动力学对于限制绕极热通量和未来南极冰架的退缩速度至关重要。

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