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Potential Vorticity Dynamics of Coastal Outflows

机译:沿海流出物的潜在涡度动力学

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摘要

A simple quasigeostrophic model is used to examine the outflow from a river, estuary, or strait into a coastal ocean. As shown by Johnson et al., these quasigeostrophic outflows are accurately described by analytical long-wave solutions. This paper first uses these solutions and contour dynamics simulations to discuss the behavior of coastal outflows. Second, it extends the model and the long-wave theory to consider the effects of ambient currents, tides, winds, or a variable source flux. Third, consideration of the momentum flux at the source is used to understand the turning of the current, showing that steady solutions conserve momentum, hence resolving the momentum imbalance paradox of Pichevin and Nof. Finally, a new numerical scheme to compute steady outflow boundaries is developed. The model focuses on the key dynamics driven by the source velocity and the generation of vorticity as the buoyant fluid adjusts. The simplicity of the model, and insight given by the long-wave solutions, enables a full understanding of the dynamics. The outflows display a range of behaviors, including indefinitely growing near-source bulges, steady boundary profiles with varying offshore width, bidirectional currents, and rarefying or eddy-like leading heads, all of which can be understood with the long-wave theory. Despite the simplicity of the model, the results show good agreement in comparison with observations, experiments, and numerical models.
机译:一个简单的准地转模型用于检查从河流,河口或海峡流入沿海海洋的流量。如Johnson等人所示,这些准地转流出可以通过分析长波解来精确描述。本文首先使用这些解决方案和轮廓动力学模拟来讨论沿海流出的行为。其次,它扩展了模型和长波理论,以考虑环境电流,潮汐,风或可变源通量的影响。第三,从源头考虑动量通量可用来了解电流的变化,表明稳定的解决方案可以保留动量,从而解决了Pichevin和Nof的动量不平衡悖论。最后,开发了一种计算稳态流出边界的新数值方案。该模型重点关注由源速度和随着浮力流体调整而产生的涡度驱动的关键动力学。该模型的简单性以及长波解决方案提供的见解使您可以全面了解动力学。流出物表现出一系列行为,包括无限增长的近源凸起,具有变化的离岸宽度的稳定边界剖面,双向洋流以及稀疏或类似涡流的前波头,所有这些都可以用长波理论来理解。尽管该模型简单,但与观察,实验和数值模型相比,结果显示出良好的一致性。

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