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A Hindcast Approach to Diagnosing the Equatorial Pacific Cold Tongue SST Bias in CESM1

机译:一种诊断CESM1中赤道太平洋冷舌SST偏差的一种环化方法

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摘要

An ensemble seasonal hindcast approach is used to investigate the development of the equatorial Pacific Ocean cold sea surface temperature (SST) bias and its characteristic annual cycle in the Community Earth System Model, version 1 (CESM1). In observations, eastern equatorial Pacific SSTs exhibit a warm phase during boreal spring and a cold phase during late boreal summer-autumn. The CESM1 climatology shows a cold bias during both warm and cold phases. In our hindcasts, the cold bias during the cold phase develops in less than 6 months, whereas the cold bias during the warm phase takes longer to emerge. The fast-developing cold-phase cold bias is associated with too-strong vertical advection and easterly wind stress over the eastern equatorial region. The antecedent boreal summer easterly wind anomalies also appear in atmosphere-only simulations, indicating that the errors are intrinsic to the atmosphere component. For the slower-developing warm-phase cold bias, we find that the too-cold SSTs over the equatorial region are associated with a slowly evolving upward displacement of subsurface ocean zonal currents and isotherms that can be traced to the ocean component.
机译:一项集合季节性环球化方法用于调查赤道太平洋冷海表面温度(SST)偏差的发展及其在社区地球系统模型中的特征年度周期,版本1(CESM1)。在观察中,东部赤道太平洋SST在北部北部北部北部北部春季和冷相期间表现出温暖的阶段。 CESM1气候学在温热和冷阶段显示出冷偏压。在我们的HindCasts中,冷阶段的冷偏差在不到6个月的时间内发育,而温暖阶段的冷偏差需要更长时间才能出现。快速发展的冷相冷偏压与东部赤道地区的垂直平流和东风压力过于强烈的垂直进展相关。传记北夏季东风异常也出现在唯一的大气模拟中,表明误差是大气组件的内在型。对于较慢的温度冷偏差,我们发现赤道区域上的太冷SSTS与可以追溯到海洋部件的地下海洋区域电流和等温的慢慢发展。

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