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首页> 外文期刊>Journal of Physical Oceanography >Low-Frequency Modulation of Turbulent Diapycnal Mixing by Anticyclonic Eddies Inferred from the HOT Time Series
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Low-Frequency Modulation of Turbulent Diapycnal Mixing by Anticyclonic Eddies Inferred from the HOT Time Series

机译:由HOT时间序列推断出的反气旋涡对湍流斜面混合的低频调制

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摘要

Profiles of potential density obtained from CTD measurements during the Hawaii Ocean Time series (HOT) program in the vicinity of the island of Oahu, Hawaii, are used to evaluate low-frequency variability of turbulent kinetic dissipation rates based on a finescale parameterization method. A distinct seasonal cycle, as well as an increasing trend of dissipation rates, is found in the upper 300-600 m. The trend is mainly due to the much weaker diapycnal mixing in the first four years of the record, that is, 1988-92. In the upper 300-600 m, enhanced diapycnal mixing is found under anticyclonic eddies with the mean dissipation rate about 53% larger than that under eddy-free conditions. The modulation of dissipation rates by anticyclonic eddies becomes more evident with increasing eddy strength. The role of cyclonic eddies in modulating diapycnal mixing is almost negligible compared with that of anticyclonic eddies. The mean dissipation rate under cyclonic eddies is comparable to that under eddy-free conditions with a difference of less than 10%. Seasonality of the dissipation rates is partly modulated by the seasonal variation of anticyclonic eddies.
机译:在夏威夷瓦胡岛附近的夏威夷海洋时间序列(HOT)程序中,通过CTD测量获得的电势密度分布图用于基于精细参数化方法评估湍流动力耗散率的低频变化。在300-600 m的上部发现了一个明显的季节周期以及耗散率的上升趋势。这种趋势主要是由于记录的前四年,即1988-92年,尿py混合较弱。在上部300-600 m,在反气旋涡流下发现增强了对苯二酚的混合,其平均耗散率比在无涡流条件下高约53%。随着旋涡强度的增加,反气旋涡对耗散率的调节变得更加明显。与抗旋风涡旋相比,旋风涡旋在调节辉比混合中的作用几乎可以忽略。旋风涡流下的平均耗散率与无涡流条件下的平均耗散率相当,相差小于10%。消散率的季节性部分受反气旋涡旋的季节变化的调节。

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  • 来源
    《Journal of Physical Oceanography》 |2013年第4期|824-836|共13页
  • 作者

    Zhao Jing; Lixin Wu;

  • 作者单位

    Physical Oceanography Laboratory, Ocean University of China, Qingdao, China,Physical Oceanography Laboratory, Ocean University of China, 238 Songling Road, Qingdao 266100, China;

    Physical Oceanography Laboratory, Ocean University of China, Qingdao, China;

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