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Stratification and mixing in sea straits

机译:分层和混合海海峡

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摘要

Quantifying the transport through relatively narrow straits connecting basins with differing fluid properties is an important issue in both surface and abyssal flows. These flows range from large-scale flows in ocean straits connecting the major ocean basins down to small-scale regional flows, such as in estuaries and lagoons connected to the coastal ocean by relatively narrow straits or channels. The exchange rate through these straits is dependent on the topography, mixing and stratification, and for steady flows the interplay between these three effects can be quantified using the dimensionless parameter Gr_TA~2, where the Grashoff number Gr_T and the aspect ratio A are evaluated within the strait. When Gr_TA~2 is large, the exchange is determined by the well-known hydraulic solution. As Gr_TA~2 becomes small the exchange rates progressively decrease below the hydraulic predictions toward values determined by diffusive control and characterized by strong vertical mixing. For systems with simple topographic controls, we show how the exchange rate in the strait may be linked to the external basin scale forcing characteristics. We review recent work on extending this picture to consider the effects of unsteadiness in two forms, time-dependent forcing in the basin due to seasonal effects and tidal forcing with an associated barotropic forcing in the strait itself.
机译:通过相对量化运输狭窄的海峡连接与不同的盆地在流体性质是一个重要的问题表面和深海流动。大规模流入海洋海峡连接重大海洋盆地到小规模的地区流,比如在河口和泻湖的联系在相对狭窄的海峡沿海海洋或通道。海峡取决于地形、混合和分层,稳定的流动这三者之间的相互作用可以影响使用无量纲参数量化Gr_TA ~ 2, Grashoff Gr_T和数量长宽比海峡内的评估。当Gr_TA ~ 2大,交换决定由著名的液压解决方案。逐步变小了,小的汇率减少低于液压预测的方向值由扩散控制和决定强大的垂直混合的特征。系统与简单的地形控制,我们表演如何在海峡可能与汇率到外部盆地规模迫使特征。这张照片扩展到考虑的影响以两种形式不稳定,时间迫使在盆地由于季节性和潮汐的影响迫使有一个关联的正压强制海峡本身。

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