Wave-induced mixing in the upper ocean: Distribution and application to a global ocean circulation model

From the Reynolds stress expression, the wave‐induced vertical viscosity (or diffusivity) Bv is defined, which can be used as a parameter to estimate the strength of wave‐induced mixing. In addition, a parameter D5 is introduced to represent a wave‐induced mixing penetration depth. The global distri...

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Veröffentlicht in:Geophysical research letters 2004-06, Vol.31 (11), p.L11303.1-n/a
Hauptverfasser: Qiao, Fangli, Yuan, Yeli, Yang, Yongzeng, Zheng, Quanan, Xia, Changshui, Ma, Jian
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Sprache:eng
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Zusammenfassung:From the Reynolds stress expression, the wave‐induced vertical viscosity (or diffusivity) Bv is defined, which can be used as a parameter to estimate the strength of wave‐induced mixing. In addition, a parameter D5 is introduced to represent a wave‐induced mixing penetration depth. The global distribution of Bv averaged over the upper 20 m is calculated and its latitudinal transects in boreal summer and winter is discussed. The results show that in summer the wave‐induced mixing is strong in the southern oceans south of 30°S, and in winter it is strong in the north Pacific and the north Atlantic north of 30°N, as well as in the southern oceans south of 40°S. Adding Bv to the vertical diffusivity in a global ocean circulation model yields a temperature structure in the upper 100 m that is closer to the observed climatology than a model without the wave‐induced mixing.
ISSN:0094-8276
1944-8007
DOI:10.1029/2004GL019824