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Spatial and seasonal patterns of fine-scale to mesoscale upper ocean dynamics in an Eastern Boundary Current System

机译:东部边界流系统中细尺度到中尺度上层海洋动力学的空间和季节格局

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摘要

The physical forcing of the ocean surface includes a variety of energetic processes, ranging from internal wave (IW) to submesoscale and mesoscale, associated with characteristic horizontal scales. While the description of mesoscale ocean dynamics has greatly benefited from the availability of satellite data, observations of finer scale patterns remain scarce. Recent studies showed that the vertical displacements of the oxycline depth, which separates the well-mixed oxygenated surface layer from the less oxygenated deeper ocean, estimated by acoustics, provide a robust proxy of isopycnal displacements over a wide range of horizontal scales. Using a high-resolution and wide-range acoustic data set in the Northern Humboldt Current System (NHCS) off Peru, the spatial and temporal patterns of fine-scale-tomesoscale upper ocean dynamics are investigated. The spectral content of oxycline/pycnocline profiles presents patterns characteristic of turbulent flows, from the mesoscale to the fine scale, and an energization at the IW scale (2 km-200 m). On the basis of a typology performed on 35,000 structures we characterized six classes of physical structures according to their shape and scale range. The analysis reveals the existence of distinct features for the fine-scale range below similar to 2-3 km, and clearly indicates the existence of intense IW and submesoscale activity over the entire NHCS region. Structures at scales smaller than 2 km were more numerous and energetic in spring than in summer. Their spatiotemporal variability supports the interpretation that these processes likely relate to IW generation by interactions between tidal flows, stratification and the continental slope. Given the impact of the physical forcing on the biogeochemical and ecological dynamics in EBUS, these processes should be further considered in future ecosystem studies based on observations and models. The intensification of upper ocean stratification resulting from climate change makes such high-resolution analyses even more critical. (C) 2016 Elsevier Ltd. All rights reserved.
机译:海洋表面的物理强迫包括各种能量过程,从内波(IW)到亚中尺度和中尺度,与特征水平尺度相关。虽然中尺度海洋动力学的描述已大大受益于卫星数据的获取,但对更小尺度模式的观测仍然很少。最近的研究表明,通过声学估计,将氧化层深度表层与低氧化层较深的海洋分隔开来的垂直氧化层深度位移,可以在很宽的水平范围内提供等渗位移的可靠替代。利用秘鲁北部北部洪堡洋流系统(NHCS)中的高分辨率和宽范围的声波数据集,研究了小尺度至尺度尺度的上层海洋动力学的时空格局。土霉素/吡咯啉剖面的光谱含量显示了从中尺度到精细尺度的湍流特征模式,以及在IW尺度(2 km-200 m)上的增能。根据对35,000种结构进行的分类学分析,我们根据其形状和尺度范围对六类物理结构进行了表征。分析揭示了在类似于2-3 km的细尺度范围内存在明显的特征,并清楚地表明了整个NHCS区域内强烈的IW和亚中尺度活动的存在。春季小于夏季,规模小于2 km的建筑物数量众多且充满活力。它们的时空变异性支持以下解释:这些过程可能与潮汐流,分层和大陆坡之间的相互作用有关IW的产生。考虑到物理强迫对EBUS中生物地球化学和生态动力学的影响,在未来基于观测和模型的生态系统研究中应进一步考虑这些过程。气候变化导致的上层海洋分层加剧,使得这种高分辨率分析变得更加关键。 (C)2016 Elsevier Ltd.保留所有权利。

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  • 来源
    《Progress in Oceanography》 |2016年第3期|105-116|共12页
  • 作者单位

    UMR248 MARBEC IRD IFREMER UM CNRS, IRD, Ave Jean Monnet, F-34203 Sete, France|Inst Mar Peru, Esquina Gamarra & Gral Valle S-N, Callao, Peru;

    UMR248 MARBEC IRD IFREMER UM CNRS, IRD, Ave Jean Monnet, F-34203 Sete, France;

    UPMC CNRS IRD MNHN, LOCEAN, IPSL, 4 Pl Jussieu,Case 100, F-75252 Paris 05, France;

    UPMC CNRS IRD MNHN, LOCEAN, IPSL, 4 Pl Jussieu,Case 100, F-75252 Paris 05, France;

    CNES CNRS IRD UPS, UMR LEGOS, IRD, 14 Ave Edouard Belin, F-31400 Toulouse, France;

    Inst Mar Peru, Esquina Gamarra & Gral Valle S-N, Callao, Peru;

    Inst Mar Peru, Esquina Gamarra & Gral Valle S-N, Callao, Peru;

    UMR CNRS 6285 Lab STICC, Inst Mines Telecom, Telecom Bretagne, F-29238 Brest, France;

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