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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Frontal movements and property fluxes: Contributions to heat and freshwater trends in the Southern Ocean
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Frontal movements and property fluxes: Contributions to heat and freshwater trends in the Southern Ocean

机译:额叶运动和物产通量:对南大洋热量和淡水趋势的贡献

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摘要

We examine the synoptic variability of temperature and salinity in the Southern Ocean using a static gravest empirical mode (GEM) mapping based on historical hydrography and a time‐evolving projection of the GEM created using satellite altimetry (satGEM).The GEM and satGEM projections allow the separation of observed trends into a omponent due to a shift of the circumpolar fronts (adiabatic) using the satGEM and a component due to changes in water masses (diabatic) expressed as a temporal trend in residual between historical hydrography and the static GEM. The mean southward movement of the Antarctic Circumpolar Current (ACC) fronts drives an adiabatic warming of 1.196 ± 0.090 W m-2 distributed over most of the ACC and at all depths. This is strongest where the meridional temperature gradient is largest, such as in the upper 1000 dbar of the Subantarctic Front (SAF). There is a weak adiabatic freshening of 6.57± 0.18 mm yr-1 m-2, concentrated mainly below the Antarctic Intermediate Water and south of the SAF. Residuals between historical hydrography and the static GEM field, driven by diabatic changes in the water mass structure, have temporal trends in temperature and salinity. When these trends are integrated over the whole ACC there is a net cooling of -0.628 ± 0.129 W m-2 and strong freshening of 30.27 ± 0.70 mm yr-1 m-2. By combining the diabatic and adiabatic components and integrating over the ACC the net increase in heat and freshwater in the region is 0.570 ± 0.099 W m-2 and 36.91 ± 0.72 mm yr-1 m-2,respectively. The sum of the adiabatic and diabatic changes are consistent with previous trends inferred from observations.
机译:我们使用基于历史水文的静态最重经验模式(GEM)映射和使用卫星测高仪(satGEM)创建的GEM随时间变化的投影,研究了南大洋的温度和盐度的天气变化.GEM和satGEM投影允许由于使用satGEM引起的极地线前缘(绝热)的移动,观测到的趋势分离成一个整体,而水质变化(绝热)的分量则表示为历史水文学与静态GEM之间的时间残余趋势。南极极地洋流(ACC)锋的平均向南运动带动绝热升温至1.196±0.090 W m-2,分布在整个ACC的大部分深度和所有深度。在子午温度梯度最大的地方(例如亚南极锋(SAF)的上部1000 dbar),这是最强的。绝热淡化较弱,为6.57±0.18 mm yr-1 m-2,主要集中在南极中层水以下和SAF南部。在水团结构的非绝热变化的驱动下,历史水文学与静态GEM场之间的残留物具有温度和盐度的时间趋势。当将这些趋势综合到整个ACC中时,净冷却为-0.628±0.129 W m-2,强新鲜度为30.27±0.70 mm yr-1 m-2。通过组合绝热和绝热成分并在ACC上积分,该区域的热量和淡水净增加分别为0.570±0.099 W m-2和36.91±0.72 mm yr-1 m-2。绝热和绝热变化的总和与以前从观测中得出的趋势一致。

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