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DYNAMICAL AND THERMODYNAMICAL SIGNATURES OF ROSSBY WAVES IN PRESENCE OF MEAN FLOW AND TOPOGRAPHY

机译:存在平均流量和层析成像时罗斯比波的动力学和热力学特征

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Satellite altimeter data have revealed over the past decade many new and unexpected properties of baroclinic Rossby wave propagation, such as anomalous too-fast phase speed at mid and high-latitudes, and the widespread occurrence of eddy-like features. Ensuing theoretical work established the importance of the background mean flow, topography, and possible surface intensification to account for too-fast Rossby waves. Topographic variations were also found to play a role in causing a splitting of energy between wave modes, which may sometimes account for apparent spontaneous wave emission, which can be quantified using so-called mode conversion theory. Rossby waves have a SST signature which is expected to depend on the eddy or wave nature of the westward propagating signals, as well as on their possible coupling with the mixed layer. Further work remains to be done to understand the physical processes controlling the westward penetration of boundary-driven waves, as well as to understand the generation mechanisms for signals not originating from the eastern boundaries.
机译:卫星高度计数据在过去的十年中揭示了斜压Rossby波传播的许多新的和出乎意料的特性,例如中高纬度的相速度过快异常,以及涡旋状特征的广泛出现。随后的理论工作确立了背景均值流,地形和可能的表面强度的重要性,以解释过快的Rossby波。还发现地形变化在引起波模之间的能量分裂中也起作用,这有时可能会导致明显的自发波发射,这可以使用所谓的模转换理论进行量化。 Rossby波具有SST信号,这取决于西向传播信号的涡流或波性质,以及它们与混合层的可能耦合。要了解控制边界驱动波向西穿透的物理过程,以及了解不是源于东部边界的信号的生成机制,还有待做的进一步工作。

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