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Impact of oceanic-scale interactions on the seasonal modulation of ocean dynamics by the atmosphere

机译:海洋尺度相互作用对大气对海洋动力的季节性调节的影响

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摘要

Ocean eddies (with a size of 100–300 km), ubiquitous in satellite observations, are known to represent about 80% of the total ocean kinetic energy. Recent studies have pointed out the unexpected role of smaller oceanic structures (with 1–50 km scales) in generating and sustaining these eddies. The interpretation proposed so far invokes the internal instability resulting from the large-scale interaction between upper and interior oceanic layers. Here we show, using a new high-resolution simulation of the realistic North Pacific Ocean, that ocean eddies are instead sustained by a different process that involves small-scale mixed-layer instabilities set up by large-scale atmospheric forcing in winter. This leads to a seasonal evolution of the eddy kinetic energy in a very large part of this ocean, with an amplitude varying by a factor almost equal to 2. Perspectives in terms of the impacts on climate dynamics and future satellite observational systems are briefly discussed.
机译:在卫星观测中普遍存在的海洋涡流(大小为100-300 km)已知占海洋总动能的80%。最近的研究指出,较小的海洋结构(尺度为1–50 km)在产生和维持这些涡流中具有意想不到的作用。迄今为止,提出的解释引起了上层和内层海洋层之间大规模相互作用导致的内部不稳定性。在这里,我们使用现实北太平洋的新高分辨率模拟显示,海洋涡流是通过不同的过程维持的,该过程涉及由冬季大规模大气强迫引起的小规模混合层不稳定性。这导致了该海洋很大一部分中涡动能的季节性演变,其幅度变化几乎等于2。简要讨论了对气候动力学和未来卫星观测系统的影响。

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