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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Analyzing the tidal-related origin of subinertial flows through the Strait of Gibraltar
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Analyzing the tidal-related origin of subinertial flows through the Strait of Gibraltar

机译:分析直布罗陀海峡地下流动的潮汐相关源

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The effects of tidal dynamics on subinertial flows through the Strait of Gibraltar are analyzed. As found in previous studies, an empirical orthogonal function analysis of subinertial currents at the Camarinal Sill yields two dominant oscillation modes. The first mode presents a barotropic character and rather irregular fluctuations and it has been related to meteorological forcing. The second mode is baroclinic and presents a clear deterministic behavior with time that seems to be related to tidal forcing. Against the hypothesis proposed in previous studies stating that tidal mixing cycles explain the second mode, we show, by using a one-dimensional numerical model of two-layer immiscible shallow water, that the origin of this mode may basically be related to nonlinear interactions among the main semidiumal tidal constituents through the advective terms in the momentum balance and other nonlinear terms in the volume conservation equations. That mode is also crucial to understanding the vertical shear time variations of the horizontal currents. In particular, it minimizes the differences in the maximum shear between neap and spring tides.
机译:分析了潮汐动力对通过直布罗陀海峡的非惯性流的影响。如先前的研究中所发现的,在卡马林基台下的惯性电流的经验正交函数分析产生了两种主要的振荡模式。第一种模式具有正压性特征,并且具有不规则的波动,并且与气象强迫有关。第二种模式是斜压模式,并且随着时间的推移呈现出明确的确定性行为,这似乎与潮汐强迫有关。针对先前研究提出的假设,即潮汐混合周期解释了第二种模式,我们通过使用两层不混溶浅水的一维数值模型表明,该模式的起源可能基本上与非线性相互作用有关。通过潮气平衡中的对流项和体积守恒方程中的其他非线性项,主要的半潮汐成分。该模式对于理解水平电流的垂直剪切时间变化也至关重要。特别是,它将潮汐和潮汐之间最大剪切力的差异最小化。

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