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首页> 外文期刊>Journal of Physical Oceanography >Radiation and Dissipation of Internal Waves Generated by Geostrophic Motions Impinging on Small-Scale Topography: Theory
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Radiation and Dissipation of Internal Waves Generated by Geostrophic Motions Impinging on Small-Scale Topography: Theory

机译:撞击小尺度地形的地转运动产生的内波的辐射和耗散:理论

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Observations and inverse models suggest that small-scale turbulent mixing is enhanced in the Southern Ocean in regions above rough topography. The enhancement extends O(1) km above the topography, suggesting that mixing is supported by the breaking of gravity waves radiated from the ocean bottom. In this study, it is shown that the observed mixing rates can be sustained by internal waves generated by geostrophic motions flowing over bottom topography. Weakly nonlinear theory is used to describe the internal wave generation and the feedback of the waves on the zonally averaged flow. Vigorous inertial oscillations are driven at the ocean bottom by waves generated at steep topography. The wave radiation and dissipation at equilibrium is therefore the result of both geostrophic flow and inertial oscillations differing substantially from the classical lee-wave problem. The theoretical predictions are tested versus two-dimensional high-resolution numerical simulations with parameters representative of Drake Passage. This work suggests that mixing in Drake Passage can be supported by geostrophic motions impinging on rough topography rather than by barotropic tidal motions, as is commonly assumed.
机译:观测和反演模型表明,在南大洋上粗糙地形以上的地区,小规模的湍流混合得到了增强。增强作用在地形上方延伸了O(1)km,这表明从海底辐射出的重力波的破裂支持了混合。在这项研究中,表明观察到的混合速率可以由在底部地形上流过的地转运动产生的内部波维持。弱非线性理论被用来描述内部波的产生以及波在区域平均流上的反馈。剧烈的惯性振荡是由陡峭地形产生的波在海底驱动的。因此,平衡时的波辐射和耗散是地转流和惯性振荡的结果,与经典的逆流问题大不相同。将理论预测与带有代表Drake Passage的参数的二维高分辨率数值模拟进行了测试。这项工作表明,在德雷克海峡中的混合可以通过撞击粗略地形的地转运动来支持,而不是通常认为的正压潮汐运动来支持。

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