GSTDTAP  > 气候变化
DOI10.1029/2020GL091719
Complexity of Mesoscale Eddy Diffusivity in the Ocean
Igor Kamenkovich; Pavel Berloff; Michael Haigh; Luolin Sun; Yueyang Lu
2020-12-28
发表期刊Geophysical Research Letters
出版年2020
英文摘要

Stirring of water by mesoscale currents (“eddies”) leads to large‐scale transport of many important oceanic properties (“tracers”). These eddy‐induced transports can be related to the large‐scale tracer gradients, using the concept of turbulent diffusion. The concept is widely used to describe these transports in the real ocean and to represent them in climate models. This study focuses on the inherent complexity of the corresponding coefficient tensor (“K‐tensor”) and its components, defined here in all its spatio‐temporal complexity. Results demonstrate that this comprehensive K‐tensor is space‐, time‐, direction‐ and tracer‐dependent. Using numerical simulations with both idealized and comprehensive models of the Atlantic circulation, we show that these properties lead to upgradient eddy fluxes and the potential importance of all tensor components. The uncovered complexity of the eddy transports calls for reconsideration of how they are estimated in practice, included in the general circulation models and theoretically interpreted.

领域气候变化
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/311482
专题气候变化
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GB/T 7714
Igor Kamenkovich,Pavel Berloff,Michael Haigh,et al. Complexity of Mesoscale Eddy Diffusivity in the Ocean[J]. Geophysical Research Letters,2020.
APA Igor Kamenkovich,Pavel Berloff,Michael Haigh,Luolin Sun,&Yueyang Lu.(2020).Complexity of Mesoscale Eddy Diffusivity in the Ocean.Geophysical Research Letters.
MLA Igor Kamenkovich,et al."Complexity of Mesoscale Eddy Diffusivity in the Ocean".Geophysical Research Letters (2020).
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