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Upper-ocean heat budget and ocean eddy transport in the south-east Pacific in a high-resolution coupled model

机译:高分辨率耦合模型中东南太平洋上海洋热收支与海洋涡流的传递

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摘要

We present an analysis of the oceanic heat advection and its variability in the upper 500 m in the southeastern tropical Pacific (100W-75W, 25S-10S) as simulated by the global coupled model HiGEM, which has one of the highest resolutions currently used in long-term integrations. The simulated climatology represents a temperature advection field arising from transient small-scale (<450 km) features, with structures and transport that appear consistent with estimates based on available observational data for the mooring at 20S, 85W. The transient structures are very persistent (>4 months), and in specific locations they generate an important contribution to the local upper-ocean heat budget, characterised by scales of a few hundred kilometres, and periods of over a year. The contribution from such structures to the local, long-term oceanic heat budget however can be of either sign, or vanishing, depending on the location; and, although there appears some organisation in preferential areas of activity, the average over the entire region is small. While several different mechanisms may be responsible for the temperature advection by transients, we find that a significant, and possibly dominant, component is associated with vortices embedded in the large-scale, climato-logical salinity gradient associated with the fresh intrusion of mid-latitude intermediate water which penetrates north-westward beneath the tropical thermocline.
机译:通过全球耦合模型HiGEM,我们对东南热带太平洋(100W-75W,25S-10S)上部500 m的海洋热对流及其变化进行了分析,该模型具有目前在全球使用的最高分辨率之一长期整合。模拟的气候代表由短暂的小尺度(<450 km)特征引起的温度对流场,其结构和运输与根据20S,85W的系泊设备的可用观测数据得出的估计值一致。瞬态结构非常持久(> 4个月),在特定位置,它们对当地上层海洋的热预算产生了重要贡献,其特征是数百公里的规模和超过一年的时间。但是,根据位置的不同,这种结构对当地长期海洋热量收支的贡献可能是信号,也可能是消失。并且,尽管在优先活动领域中出现了一些组织,但整个区域的平均值很小。尽管几种不同的机制可能导致瞬变温度对流,但我们发现一个重要且可能占主导地位的分量与嵌入中纬度的大尺度气候气候盐度梯度中嵌入的涡旋有关,中间水,在热带温床下面向西北方向渗透。

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  • 来源
    《Climate dynamics》 |2010年第8期|p.1309-1329|共21页
  • 作者单位

    NCAS-Climate, Department of Meteorology,University of Reading, Reading RG6 6BB, UK;

    rnUCLA, California, USA;

    rnNCAS-Climate, Department of Meteorology,University of Reading, Reading RG6 6BB, UK;

    rnNCAS-Climate, Department of Meteorology,University of Reading, Reading RG6 6BB, UK;

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