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首页> 外文期刊>Journal of Climate >Kuroshio extension bimodality and the North Pacific Oscillation: a case of intrinsic variability paced by external forcing.
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Kuroshio extension bimodality and the North Pacific Oscillation: a case of intrinsic variability paced by external forcing.

机译:黑潮扩展双峰性与北太平洋涛动:一种由外部强迫导致的内在变化的案例。

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摘要

A previous North Pacific Ocean circulation model forced by climatological winds is extended here to include a time-dependent North Pacific Oscillation (NPO) forcing. The Kuroshio Extension (KE) decadal bimodal cycle (which is a self-sustained intrinsic relaxation oscillation in the climatologically forced case) is now excited by the NPO forcing. Both the timing of the cycles and the Rossby wave teleconnection mechanism that is found to govern the synchronization from 1993 to 2012 are in good agreement with altimeter observations. Sensitivity numerical experiments are carried out by varying the zonal location and amplitude of the NPO forcing, and the lateral eddy viscosity. The emergence of the KE bimodality with a correct timing is found to be extremely sensitive to changes in the dissipative parameterization; the implications of such sensitivity for deficiencies found in more realistic North Pacific Ocean general circulation models are discussed. The dynamical mechanism that emerges from this study is explained as a case of intrinsic variability in an excitable dynamical system triggered, and therefore paced, by an external forcing.
机译:在此之前,先前将由气候风强迫的北太平洋环流模型扩展为包括随时间变化的北太平洋涛动(NPO)强迫。现在,NPO强迫激发了黑潮扩展(KE)年代际双峰周期(在气候强迫情况下,这是一种自我维持的内在弛豫振荡)。周期的计时和用于控制1993年至2012年同步的Rossby波遥连接机制都与高度计的观测结果非常吻合。通过改变NPO强迫的区域位置和幅度以及横向涡流粘度来进行敏感性数值实验。发现具有正确时机的KE双峰现象对耗散参数化的变化极为敏感。讨论了这种敏感性对更现实的北太平洋大环流模型中发现的缺陷的影响。从这项研究中得出的动力学机制被解释为一种由外部强迫触发并因此加速的可激发动力学系统的内在变异性。

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