SWOT揭示了驱动南极环极流近地表流和弥散的精细尺度平衡运动

IF 2.6 3区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
Y.-T. Tranchant, B. Legresy, A. Foppert, B. Pena-Molino, H. Phillips
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引用次数: 0

摘要

南极环极流(ACC)是产生小尺度运动的热点,在横额交换中起着关键作用。本文首次分析了由新的地表水和海洋地形(SWOT)卫星提供的高分辨率海面高度(SSH)场对ACC表面流的影响。为了减轻噪声和非平衡地转速度的影响,我们引入了一种二维拟合核方法来推导不同长度尺度的地转速度和循环地转速度。这些速度估计是根据低通滤波分量(>;${>} $ 1天)通过ACC曲流的21个地表漂浮物的轨迹。发现SSH是平衡的,适用于小至10公里尺度的地表速度推断,在SWOT去噪的SSH中,18公里长度尺度被认为是抑制残余不平衡波和保留更精细尺度平衡信号之间的权衡。在这个尺度下,地转近似变得不准确,动量平衡中的高阶项贡献了观测到的漂移速度的20%。最后,从漂移粒子对和虚拟粒子计算的距离平均对统计数据表明,SWOT准确捕获了10-200 km范围内的色散特性,为该范围内平衡运动在粒子色散中起主导作用提供了观测证据。通过以前所未有的准确性捕获平衡动态,SWOT SSH为更广泛地了解ACC和南大洋中小规模示踪剂交换的影响提供了新的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

SWOT Reveals Fine-Scale Balanced Motions Driving Near-Surface Currents and Dispersion in the Antarctic Circumpolar Current

SWOT Reveals Fine-Scale Balanced Motions Driving Near-Surface Currents and Dispersion in the Antarctic Circumpolar Current

SWOT Reveals Fine-Scale Balanced Motions Driving Near-Surface Currents and Dispersion in the Antarctic Circumpolar Current

SWOT Reveals Fine-Scale Balanced Motions Driving Near-Surface Currents and Dispersion in the Antarctic Circumpolar Current

The Antarctic Circumpolar Current (ACC) is a hotspot for the generation of small-scale motions that have a key role in cross-frontal exchanges. We present the first analysis of surface currents in the ACC derived from high-resolution sea surface height (SSH) fields provided by the new Surface Water and Ocean Topography (SWOT) satellite. To mitigate the impact of noise and unbalanced SSH, we introduce a two-dimensional fitting kernel method for deriving geostrophic and cyclogeostrophic velocities at different lengthscales. These velocity estimates are evaluated against the low-pass filtered component ( > ${ >} $ 1 day) of trajectories from 21 surface drifters that passed through the ACC meander. The SSH is found to be balanced and appropriate for inferring surface velocities at scales as small as 10 km, with an 18 km length scale identified as a trade-off between suppressing residual unbalanced waves and preserving finer-scale balanced signals in SWOT denoised SSH. At this scale, the geostrophic approximation becomes inaccurate, and higher-order terms in the momentum balance contribute up to 20% of the observed drifter velocities. Finally, distance-averaged pair statistics calculated from drifter pairs and virtual particles reveal that SWOT accurately captures dispersion properties over the 10–200 km range, providing observational evidence of the dominant role of balanced motions in particle dispersion within this range. By capturing balanced dynamics with unprecedented accuracy, SWOT SSH offers new opportunities to understand the impact of small scales on tracer exchange in the ACC and the Southern Ocean more broadly.

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来源期刊
Earth and Space Science
Earth and Space Science Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
5.50
自引率
3.20%
发文量
285
审稿时长
19 weeks
期刊介绍: Marking AGU’s second new open access journal in the last 12 months, Earth and Space Science is the only journal that reflects the expansive range of science represented by AGU’s 62,000 members, including all of the Earth, planetary, and space sciences, and related fields in environmental science, geoengineering, space engineering, and biogeochemistry.
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