本格拉上升流区海表温度的变化。第2部分:长期趋势

A. Polonsky, А Б Полонский, A. Serebrennikov, Андрей Николаевич Серебренников
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引用次数: 2

摘要

利用1985-2017年海表温度日卫星资料和1988-2017年海表风日资料,探讨了本格拉上升流区海表温度的长期变化趋势及其原因。结果表明,在本格拉上升流区,近20年来驱动风明显增强。与此同时,本格拉上升流南部的热上升流指数下降(考虑到该指数的符号或其绝对值的增加),但实际上不影响其北部的热上升流指数。造成这种差异的原因可能是风场结构的变化,这使得本格拉上升流不同地区切向风应力涡度的大小有相反的趋势。在本格拉上升流的南部,Ekman上升流和由驱动风涡度引起的垂直速度都有增强的趋势,而在北部,相应的趋势有相反的迹象。这导致本格拉上升流北部部分补偿了这两种影响。造成风场结构变化的原因是副热带高压中心向东南移动以及伴随而来的海岸带近地面风矢量的反转。
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On the changes in the sea surface temperature in the benguela upwelling region. Part 2: the long-term tendencies
The paper examines the issue on the long-term trends in the sea surface temperature (SST) in the Benguela upwelling zone and their causes using the daily SST satellite data for 1985–2017’s and the daily near-surface wind for 1988–2017”s. It is shown that in the Benguela upwelling region, there is a significant intensification of driving winds in the last 20 yrs. This is accompanied by a decrease of the thermal upwelling index (taking into account the sign of the index or an increase of its absolute values) in the southern part of the Benguela upwelling, but practically does not influence this indicator in its northern part. The likely reason for this difference is the change in the wind field structure, as a result of which there are opposite trends in the magnitude of the vorticity of the tangential wind stress in different parts of the Benguela upwelling. In the southern part of the Benguela upwelling, both the Ekman’s upwelling and the vertical velocities due to the vorticity of the driving wind intensify, while in the northern part the corresponding trends have the opposite signs. This leads to a partial compensation of these two effects in the northern part of the Benguela upwelling. The reason for the change in the wind field structure is the displacement of the center of the Subtropical High to the south-east and the concomitant reversal of the near-surface wind vector in the coastal zone.
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