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首页> 外文期刊>Journal of Physical Oceanography >The Surface Circulation of the Caribbean Sea and the Gulf of Mexico as Inferred from Satellite Altimetry
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The Surface Circulation of the Caribbean Sea and the Gulf of Mexico as Inferred from Satellite Altimetry

机译:从卫星测高仪推断,加勒比海和墨西哥湾的表面环流

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The surface circulation of the Caribbean Sea and Gulf of Mexico is studied using 13 years of satellite altimetry data. Variability in the Caribbean Sea is evident over several time scales. At the annual scale, sea surface height (SSH) varies mainly by a seasonal steric effect. Interannually, a longer cycle affects the SSH slope across the current and hence the intensity of the Caribbean Current. This cycle is found to be related to changes in the wind intensity, the wind stress curl, and El Nino-Southern Oscillation. At shorter time scales, eddies and meanders are observed in the Caribbean Current, and their propagation speed is explained by baroclinic instabilities under the combined effect of vertical shear and the β effect. Then the Loop Current (LC) is considered, focusing on the anticyclonic eddies shed by it and the intrusion of the LC into the Gulf of Mexico through time. Twelve of the 21 anticyclonic eddies observed to detach from the LC are shed from July to September, suggesting a seasonality in the timing of these events. Also, a relation is found between the intrusion of the LC into the Gulf of Mexico and the size of the eddies shed from it: larger intrusions trigger smaller eddies. A series of extreme LC intrusions into the Gulf of Mexico, when the LC is observed as far as 92°W, are described. The analyses herein suggest that the frequency of such events has increased in recent years, with only one event occurring in 1993 versus three from 2002 to 2006. Transport through the Straits of Florida appears to decrease during these extreme intrusions.
机译:使用13年的卫星测高数据研究了加勒比海和墨西哥湾的地表环流。加勒比海的变化在几个时间尺度上都很明显。在年尺度上,海面高度(SSH)主要受季节空间效应的影响。每年一次,更长的周期影响整个洋流的SSH斜率,从而影响加勒比海流的强度。发现该周期与风强度,风应力卷曲和厄尔尼诺-南方涛动的变化有关。在较短的时间尺度上,在加勒比海流中观察到涡流和蜿蜒曲折,它们的传播速度由垂直切变和β效应共同作用下的斜压不稳定性所解释。然后考虑回路电流(LC),重点是由其产生的反气旋涡流以及随着时间的流逝,LC侵入墨西哥湾。从7月到9月,观测到从LC分离出的21种反气旋涡流中有12种涡流消失,表明这些事件发生的时间是季节性的。此外,在LC入侵墨西哥湾与从中散发的涡流之间存在关系:较大的入侵会触发较小的涡流。描述了当观察到LC至92°W时,一系列极端LC侵入墨西哥湾的情况。本文的分析表明,近年来此类事件的频率有所增加,1993年仅发生了一次事件,而2002年至2006年发生了三起事件。在这些极端入侵期间,通过佛罗里达海峡的运输似乎有所减少。

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