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首页> 外文期刊>Oceanographic Literature Review >Coupled ocean-atmosphere covariances in global ensemble simulations: Impact of an eddy-resolving ocean
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Coupled ocean-atmosphere covariances in global ensemble simulations: Impact of an eddy-resolving ocean

机译:加上全球集合模拟的海洋气氛:涡流拆定海洋的影响

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摘要

Patterns of correlations between the ocean and the atmosphere are examined using a high-resolution (1/12° ocean and ice, 1/3° atmosphere) ensemble of data assimilative, coupled, global, ocean-atmosphere forecasts. This provides a unique perspective into atmosphere-ocean interactions constrained by assimilated observations, allowing for the contrast of patterns of coupled processes across regions and the examination of processes affected by ocean mesoscale eddies. Correlations during the first 24 h of the coupled forecast between the ocean surface temperature and atmospheric variables, and between the ocean mixed layer depth and surface winds are examined as a function of region and season. Three distinct coupling regimes emerge: 1) regions characterized by strong sea surface temperature fronts, where uncertainty in the ocean mesoscale influences ocean-atmosphere exchanges; 2) regions with intense atmospheric convection over the tropical oceans, where uncertainty in the modeled atmospheric convection impacts the upper ocean; and 3) regions where the depth of the seasonal mixed layer (MLD) determines the magnitude of the coupling, which is stronger when the MLDis shallow and weaker when theMLDis deep.Acomparison with models at lower horizontal (1/12° vs 1° and 1/4°) and vertical (1- vs 10-m depth of the first layer) ocean resolution reveals that coupling in the boundary currents, the tropical Indian Ocean, and the warm pool regions requires high levels of horizontal and vertical resolution. Implications for coupled data assimilation and short-term forecasting are discussed.
机译:使用高分辨率(1/12°海洋和冰,1/3°大气)进行数据同化,加耦合,全球海洋气氛预测,检查海洋与大气之间的相关模式。这提供了通过同化观察约束的大气 - 海洋相互作用的独特视角,允许跨越地区的耦合过程的模式和受海洋Messcale Eddies影响的过程的模式形成对比。作为区域和季节的函数,检查海洋表面温度和大气变量之间的前24小时的相关预测和海洋混合层深度和表面风。三个不同的耦合制度出现:1)由强海表面温度前锋为特征的区域,海洋中尺度的不确定性影响海洋气氛交换; 2)热带海洋中强烈大气对流的区域,建模大气对流中的不确定性会影响上海; 3)季节性混合层(MLD)的深度决定了耦合的大小,当HONGLDIS DEADLISLDISLICLISIND DROWSTLOWS(1/12°Vs 1°和1°和1°)的模型(1/12°Vs 1°和1°和1°) 1/4°)和垂直(第一层10-M深度)海洋分辨率显示,在边界电流,热带印度洋和温暖的泳池区域中的耦合需要高水平的水平和​​垂直分辨率。讨论了对耦合数据同化和短期预测的影响。

著录项

  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1437-1438|共2页
  • 作者单位

    Cooperative Institute for Research in Environmental Sciences University of Colorado Boulder CO United States;

    Cooperative Institute for Research in Environmental Sciences University of Colorado Boulder CO United States;

    Cooperative Institute for Research in Environmental Sciences University of Colorado Boulder CO United States;

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  • 正文语种 eng
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