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Ocean mixed layer processes in the Pacific Decadal Oscillation in coupled general circulation models

机译:耦合的一般环流模型中太平洋年代际振荡中的海洋混合层过程

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It is investigated how the Pacific Decadal Oscillation (PDO) is simulated differently among various coupled general circulation models (CGCMs), and how it is related to the heat budget of the simulated ocean mixed layer, which includes the surface heat flux and ocean heat transport. For this purpose the dataset of the climate of the 20th Century experiment (20C3M) from nine CGCMs reported to IPCC's AR4 are used, while the MRI and MIROC models are examined in detail. Detailed analyses of these two CGCMs reveal that the PDO is mainly affected by ocean heat transport rather than surface heat flux, in particular in the MRI model which has a larger contribution of ocean heat transport to the heat budget. It is found that the ocean heat transport due to Ekman advection versus geostrophic advection contributes differently to the PDO in the western and central North Pacific. Specifically, the strength of PDO tends to be larger for CGCMs with a larger ocean heat transport in the region.
机译:研究了如何在各种耦合的一般环流模型(CGCM)之间模拟不同的太平洋年代际涛动(PDO),以及它与模拟海洋混合层的热收支如何相关,包括表面热通量和海洋热传输。为此,使用了向IPCC的AR4报告的来自九个CGCM的20世纪实验气候数据集(20C3M),同时详细检查了MRI和MIROC模型。对这两个CGCM的详细分析表明,PDO主要受海洋热传输的影响,而不是受表面热通量的影响,特别是在MRI模型中,MRI模型对海洋热传输对热量收支的贡献更大。发现在北太平洋西部和中部,由于埃克曼对流和地转对流引起的海洋热传输对PDO的贡献不同。具体而言,对于该地区海洋热传递较大的CGCM,PDO的强度往往会更大。

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