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Nonlinear Responses of Oceanic Temperature to Wind Stress Anomalies in Tropical Pacific and Indian Oceans:A Study Based on Numerical Experiments with an OGCM

机译:热带太平洋和印度洋海洋温度对风应力异常的非线性响应:基于OGCM数值实验的研究

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摘要

As a highly nonlinear dynamic system, oceanic general circulation models (OGCMs) usually exhibit nonlinear responses to prescribed wind stress forcing. To explore mechanisms for these nonlinear responses, we designed and conducted three idealized numerical experiments with an OGCM with modifi ed wind stress forcing. In the experiments, the climatological mean wind stress was identical, and the only diff erences in external forcing were wind stress anomalies. The wind anomalies were set to zero in a control run, and the observed wind stress anomalies with and without reversed signs were superimposed on the mean climatology in two sensitivity experiments. Forced by the prescribed wind stress anomalies in sensitivity runs, the OGCM well reproduced the El Ni˜no–Southern Oscillation (ENSO) and the Pacifi c and Indian Ocean Dipole (IOD) in the Indian Ocean, as well as the asymmetry between positive and negative phases of these modes. Relative to the control run, the two sensitivity runs exhibited almost identical changes in the mean climate state, although the wind stress anomalies were reversed in these two experiments. Thus, it was concluded that the asymmetry of wind stress anomalies contributes only slightly to the mean state changes and ocean internal dynamics was the main contributor. Further heat budget analysis suggested that nonlinear temperature advection terms, including both mean advection and perturbed advection, favor the ENSO/IOD rectifi ed eff ect on the mean state.
机译:作为高度非线性的动力系统,海洋一般环流模型(OGCM)通常表现出对规定风应力强迫的非线性响应。为了探索这些非线性响应的机理,我们设计并进行了OGCM修改风应力强迫的三个理想数值实验。在实验中,气候平均风应力是相同的,唯一的外在差异是风应力异常。在对照运行中,将风异常设置为零,并且在两个敏感性实验中,将观测到的有和没有反转迹象的风应力异常叠加在平均气候上。在灵敏度运行中,由于规定的风应力异常,OGCM很好地再现了印度洋的El Ni〜no-Southern Oscillation(ENSO)以及印度洋的太平洋和印度洋偶极子(IOD),以及正负之间的不对称性这些模式的负相。相对于对照运行,尽管在这两个实验中风应力异常被逆转,但两个敏感性运行在平均气候状态下表现出几乎相同的变化。因此,得出的结论是,风应力异常的不对称性仅对平均状态的变化贡献很小,而海洋内部动力学是主要的贡献者。进一步的热收支分析表明,包括平均对流和扰动对流在内的非线性温度对流项有利于ENSO / IOD对平均状态的校正效应。

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    《气象学报(英文版)》 |2015年第4期|608-626|共19页
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  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2024-03-26 01:08:14
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