海洋模式中涡旋畸变引起的垂直速度型:垂直速度和涡旋畸变

Q1 Earth and Planetary Sciences Journal of Geophysical Research Pub Date : 2018-03-01 DOI:10.1002/2017jc013298
G. Pilo, P. Oke, R. Coleman, T. Rykova, K. Ridgway
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引用次数: 20

摘要

涡流内的垂直运动在上层海洋和海洋内部之间的性质和能量交换中发挥着重要作用。在这里,我们使用全球涡旋解析模型分析了东澳大利亚洋流区域反气旋涡旋中交替的向上和向下单元。这些细胞解释了这些涡流中超过50%的垂直速度变化。我们发现,向上和向下的单元与涡流畸变有关,涡流畸变被定义为涡流形状随时间的变化。在南半球的反气旋涡旋中,向内的畸变与向上运动有关,向外的畸变与向下运动有关。我们讨论了将涡流畸变与垂直速度联系起来的两种机制。一种机制与涡流内部的分层和相对涡度的变化有关。另一种机制与涡流不同象限中水平流的发散有关。我们表明,海平面异常的中尺度变化可以用来推断涡旋内的垂直运动。
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Patterns of Vertical Velocity Induced by Eddy Distortion in an Ocean Model: VERTICAL VELOCITY AND EDDY DISTORTION
Vertical motions within eddies play an important role in the exchange of properties and energy between the upper ocean and the ocean interior. Here we analyze alternating upward and downward cells in anticyclonic eddies in the East Australian Current region using a global eddy‐resolving model. The cells explain over 50% of the variance of vertical velocity within these eddies. We show that the upward and downward cells relate to eddy distortion, defined as the change in eddy shape over time. In anticyclonic eddies in the Southern Hemisphere, an inward distortion is associated with upward motion and an outward distortion is associated with downward motion. We discuss two mechanisms that link eddy distortion to vertical velocity. One mechanism relates to changes in stratification and relative vorticity in the eddy interior. The other mechanism relates to divergence of the horizontal flow in different quadrants of the eddy. We show that mesoscale changes in sea level anomaly can be used to infer the vertical motion within eddies.
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来源期刊
Journal of Geophysical Research
Journal of Geophysical Research 地学-地球科学综合
CiteScore
5.80
自引率
0.00%
发文量
0
审稿时长
1 months
期刊介绍: Journal of Geophysical Research (JGR) publishes original scientific research on the physical, chemical, and biological processes that contribute to the understanding of the Earth, Sun, and solar system and all of their environments and components. JGR is currently organized into seven disciplinary sections (Atmospheres, Biogeosciences, Earth Surface, Oceans, Planets, Solid Earth, Space Physics). Sections may be added or combined in response to changes in the science.
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