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Simulation of the Tropical Pacific Climate with a Coupled Ocean-Atmosphere General Circulation Model. Part I: The Seasonal Cycle

机译:利用海洋-大气环流耦合模型模拟热带太平洋气候。第一部分:季节性周期

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摘要

A multiyear simulation with a coupled ocean-atmosphere general circulation model (GCM) is presented. The model consists of the UCLA global atmospheric GCM coupled to the GFDL oceanic GCM; the latter is dynamically active over the tropical Pacific, while climatological time-varying sea surface temperatures (SST) are prescribed elsewhere. The model successfully simulates the main climatological features associated with the seasonal cycle, including the east-west gradient in SST across the equatorial Pacific. The most apparent deficiencies include a systematic cold bias (2 K) across most of the tropical Pacific and underestimated wind stress magnitudes in the equatorial band. Multichannel singular spectrum analysis is used to describe the multivariate structure of the seasonal cycle at the equator in both the model and observed data. The annual harmonic in equatorial SST is primarily wind driven, while air-sea interaction strongly affects the semiannual harmonic.
机译:提出了一个具有耦合的海洋-大气总环流模型(GCM)的多年模拟。该模型由UCLA全球大气GCM和GFDL海洋GCM组成;后者在热带太平洋上是活跃的,而其他地方规定了气候时变的海面温度(SST)。该模型成功地模拟了与季节周期相关的主要气候特征,包括整个赤道太平洋海温的东西向梯度。最明显的缺陷包括整个热带太平洋大部分地区的系统冷偏(2 K)和赤道带的风应力幅值低估。多通道奇异频谱分析用于描述模型和观测数据中赤道季节周期的多元结构。赤道SST的年谐波主要由风驱动,而海-气相互作用强烈影响半年度谐波。

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