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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Role of tides on the formation of the Antarctic Slope Front at the Weddell-Scotia Confluence
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Role of tides on the formation of the Antarctic Slope Front at the Weddell-Scotia Confluence

机译:潮汐对Weddell-Scotia汇合处南极斜坡前锋形成的作用

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摘要

The structure of the Antarctic Slope Front (ASF) and the associated Antarctic Slope Current (ASC) on the Scotia Sea side of the Weddell-Scotia Confluence (WSC) is described using data from a hydrographic survey and three 1 year long moorings across the continental slope. The ASC in this region flows westward along isobaths with an annual mean speed of ~0.2 m s~(-1), with time variability dominated by the K_1 and O_1 tidal diurnal constituents, a narrowband oscillation with ~2-week period attributable to the springeap tidal cycle, and seasonal variability. Realistic and idealized high-resolution numerical simulations are used to determine the contribution of tides to the structure of the ASF and the speed of the ASC. Two simulations forced by realistic atmospheric forcing and boundary conditions integrated with and without tidal forcing show that tidal forcing is essential to reproduce the measured ASF/ASC cross-slope structure, the time variability at our moorings, and the reduced stratification within the WSC. Two idealized simulations run with tide-only forcing, one with a homogeneous ocean and the other with initial vertical stratification that is laterally homogeneous, show that tides can generate the ASC and ASF through volume flux convergence along the slope initiated by effects including the Lagrangian component of tidal rectification and mixing at the seabed and in the stratified ocean interior. Climate models that exclude the effects of tides will not correctly represent the ASF and ASC or their influence on the injection of intermediate and dense waters from the WSC to the deep ocean.
机译:韦德—斯科舍汇流处(WSC)斯科舍海侧的南极斜坡前缘(ASF)以及相关的南极斜坡流(ASC)的结构是使用水文勘测数据和整个大陆上3个为期1年的系泊设备描述的坡。该区域的ASC沿等压线向西流动,年平均速度为〜0.2 ms〜(-1),时间变化主要由K_1和O_1潮汐的昼夜成分决定,春季有约2周的窄带振荡。 /潮汐周期短和季节变化。现实和理想的高分辨率数值模拟用于确定潮汐对ASF结构和ASC速度的贡献。由现实的大气强迫和边界条件(包括或不包括潮汐强迫)强迫进行的两个模拟表明,潮汐强迫对于重现测得的ASF / ASC横坡结构,系泊设备的时间变化以及减少WSC内部分层至关重要。两种仅用潮汐强迫进行的理想化模拟,一个具有均质海洋,另一个具有横向均质的初始垂直分层,表明潮汐可以通过沿包括拉格朗日分量在内的效应引发的体积通量收敛产生ASC和ASF。海底和分层海洋内部的潮汐整流和混合过程。排除潮汐影响的气候模型将无法正确地代表ASF和ASC或它们对从WSC向深海注入中,浓水的影响。

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