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Meteorologically-driven circulation and flushing times of the Bay of Algeciras, Strait of Gibraltar

机译:直布罗陀海峡的阿尔赫西拉斯湾的气象驱动环流和冲洗时间

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A primitive-equation model has been used to investigate the meteorologically-driven circulation of the Bay of Algeciras. It is shown that the mean circulation of Atlantic Water (AW) is characterized by an anti-cyclonic cell, while Mediterranean Water (MW) follows a preferred cyclonic pathway. Meteorological forcing distorts substantially the AW mean circulation pattern, and only modulates that of the MW. Winds drive a vertical circulation cell in the Atlantic layer consistent with Ekman dynamics, whereas the horizontal circulation pattern is markedly dependent on the swift Atlantic jet entering the Mediterranean and changes from clearly anticyclonic to cyclonic as the jet separates or approaches the strait's northern shoreline. This occurs through atmospheric pressure-driven acceleration/deceleration of the jet, in agreement with internal hydraulics theory predictions. It is also found that the renewal of AW is largely modulated by tides, with meteorological forcing playing a secondary role. The opposite applies to the renewal of MW.
机译:一个原始方程模型已被用来研究阿尔及利亚湾的气象驱动环流。结果表明,大西洋水(AW)的平均循环以反气旋细胞为特征,而地中海水(MW)则遵循优选的气旋路径。气象强迫极大地扭曲了AW平均循环模式,并且仅调节了MW的平均循环模式。风在大西洋层驱动垂直的循环单元,与埃克曼动力学一致,而水平循环的模式明显取决于迅速进入地中海的大西洋急流,并且当急流分离或接近海峡北部海岸线时,其方向从明显的反气旋变为旋风。与内部水力学理论预测相一致,这是通过大气压驱动的喷气机的加速/减速而发生的。还发现,AW的更新在很大程度上受到潮汐的调节,而气象强迫起着次要作用。相反的适用于MW的更新。

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