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Topographic generation of submesoscale centrifugal instability and energy dissipation

机译:亚中尺度离心不稳定性和能量耗散的地形生成

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摘要

Most of the ocean kinetic energy is contained in the large scale currents and the vigorous geostrophic eddy field, at horizontal scales of order 100 km. To achieve equilibrium the geostrophic currents must viscously dissipate their kinetic energy at much smaller scale. However, geostrophic turbulence is characterized by an inverse cascade of energy towards larger scale, and the pathways of energy toward dissipation are still in question. Here, we present a mechanism, in the context of the Gulf Stream, where energy is transferred from the geostrophic flow to submesoscale wakes through anticyclonic vertical vorticity generation in the bottom boundary layer. The submesoscale turbulence leads to elevated local dissipation and mixing outside the oceanic boundary layers. This process is generic for boundary slope currents that flow in the direction of Kelvin wave propagation. Topographic generation of submesoscale flows potentially provides a new and significant route to energy dissipation for geostrophic flows.
机译:海洋动能的大部分包含在大尺度的洋流和剧烈的地转涡流场中,水平尺度为100 km。为了达到平衡,地转流必须以小得多的比例粘性地耗散其动能。然而,地转湍流的特征是能量朝着更大的方向反级联,而能量向消散的途径仍然是个问题。在这里,我们在墨西哥湾流的背景下提出了一种机制,在该机制中,通过底部边界层的反气旋垂直涡旋产生,能量从地转流转移到了亚中尺度的尾流。亚中尺度湍流导致海洋边界层外部局部耗散和混合增加。该过程对于沿开尔文波传播方向流动的边界斜坡电流是通用的。亚中尺度流的地形生成可能为地转流的能量消散提供一条新的重要途径。

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