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Seasonal stratification of the upper ocean salinity stratification in the Tropics

机译:热带地区上层海洋盐度分层的季节性分层

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摘要

In comparison to the deep ocean, the upper mixed layer is a region typically characterized by substantial vertical gradients in water properties. Within the Tropics, the rich variability in the vertical shapes and forms that these structures can assume through variation in the atmospheric forcing results in a differential effect in terms of the temperature and salinity stratification. Rather than focusing on the strong halocline above the thermocline, commonly referred to as the salinity barrier layer, the present study takes into account the respective thermal and saline dependencies in the Brunt-V¤ais¤al¤a frequency (N2) in order to isolate the specific role of the salinity stratification in the layers above the main pycnocline. We examine daily vertical profiles of temperature and salinity from an ocean reanalysis over the period 2001-2007. We find significant seasonal variations in the Brunt-V¤ais¤al¤a frequency profiles are limited to the upper 300 m depth. Based on this, we determine the ocean salinity stratification (OSS) to be defined as the stabilizing effect (positive values) due to the haline part of N2 averaged over the upper 300 m. In many regions of the tropics, the OSS contributes 40-50% to N2 as compared to the thermal stratification and, in some specific regions, exceeds it for a few months of the seasonal cycle. Away from the tropics, for example, near the centers of action of the subtropical gyres, there are regions characterized by the permanent absence of OSS. In other regions previously characterized with salinity barrier layers, the OSS obviously shares some common variations; however, we show that where temperature and salinity are mixed over the same depth, the salinity stratification can be significant. In addition, relationships between the OSS and the sea surface salinity are shown to be well defined and quasilinear in the tropics, providing some indication that in the future, analyses that consider both satellite surface salinity measurements at the surface and vertical profiles at depth will result in a better determination of the role of the salinity stratification in climate prediction systems.
机译:与深海相比,上层混合层是一个典型的区域,其特征是水质在垂直方向上存在明显的梯度。在热带地区,这些结构可以通过大气强迫的变化而承担的垂直形状和形式的丰富变化,导致温度和盐分分层方面的差异。本研究没有关注温跃层上方的强盐环(通常称为盐分阻挡层),而是考虑了Brunt-Väaisal频率(N2)中各自对热量和盐的依赖性,以便在主要比高辛啉以上的层中分离盐分分层的特定作用。我们从2001年至2007年的海洋再分析中,研究了温度和盐度的每日垂直剖面。我们发现在Brunt-Väaisäal¤a频率剖面中存在明显的季节性变化,但仅限于深度300 m以内。在此基础上,我们确定海洋盐度分层(OSS)为稳定效应(正值),这是由于N2的盐分在上层300 m处平均所致。在热带的许多地区,与热分层相比,OSS对N2的贡献为40-50%,并且在某些特定区域中,在季节性周期的几个月内,N2超过了N2。远离热带地区,例如,在亚热带回旋作用中心附近,有一些区域的特征是永久缺乏OSS。在以前具有盐分阻挡层特征的其他地区,OSS显然具有一些共同的变化。但是,我们表明,在同一深度混合温度和盐度的情况下,盐度分层可能很显着。另外,在热带地区,OSS与海面盐度之间的关系已被很好地定义和准线性,这提供了一些迹象,表明将来在进行分析时,将同时考虑地表卫星盐度测量和深度垂直剖面更好地确定盐度分层在气候预测系统中的作用。

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    Maes C.; OKane T.;

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