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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >A Principal Oscillation Pattern Analysis of the Circulation Variability in the California Current System associated With the El Nino Southern Oscillation
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A Principal Oscillation Pattern Analysis of the Circulation Variability in the California Current System associated With the El Nino Southern Oscillation

机译:加州电流系统循环变异性的主要振荡模式分析与EL NINO Southern振荡相关的

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摘要

A linear inverse model of the circulation of the California Current System was constructed from a 31-year sequence of circulation estimates based on a data assimilative configuration of the Regional Ocean Modeling System. Principal oscillation pattern (POP) analysis of the linear inverse model has identified several distinct dynamical modes, one with an oscillation period of 3.6 years that describes much of the observed circulation variability of the California Current System associated with the El Nino Southern Oscillation (ENSO). This POP captures not only the circulation changes due to large amplitude ENSO events but also that associated with many of the weak-to-moderate events as well. The POP describes both nearshore and offshore variability and captures many of the previously identified phase relations between different circulation variables, unifying them as part of a coherent three-dimensional time-evolving mode of the circulation. The connection between the POP and the ocean surface forcing was also explored revealing their spatiotemporal connections to the ENSO circulation variability. Analysis of the dynamical balances of POP circulation anomalies reveals fundamentally different dynamical regimes in nearshore and offshore regions and sheds light on the possible role of wind-induced baroclinic instability in modulating eddy kinetic energy during large ENSO events.
机译:加州电流系统循环的线性逆模型由基于区域海洋建模系统的数据同化配置的31年的循环估计来构建。线性逆模型的主振荡模式(POP)分析已经确定了几种不同的动态模式,其中振荡周期为3.6岁,描述了与El Nino Southern振荡相关的加州电流系统的大部分循环变异性(ENSO) 。由于大幅度enso事件,此流行仅捕获流通变化,而且还与许多弱弱的事件相关联。 POP描述了近孔和海上变异性,并捕获了不同循环变量之间的许多先前识别的相位关系,统一它们作为循环的连贯的三维时间不断发展模式的一部分。 POP与海洋表面强制之间的连接也探讨了他们与ENSO循环变异性的时空连接。流行循环异常的动态余额分析在近岸和海上地区的大本上不同的动态制度,并在大enso事件期间调节涡流稳定性在调节涡流能量时的可能作用。

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