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Coherence Resonance in a Double-Gyre Model of the Kuroshio Extension

机译:黑潮扩展的双涡模型中的相干共振

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摘要

The effect of stochastic winds on the intrinsic low-frequency variability of the Kuroshio Extension (KE) is analyzed through a double-gyre (DG) model forced by a steady climatological wind plus an idealized Omstein-Uhlenbeck wind noise. A DG model of the KE bimodality. whose results compare well to altimeter data, is first shown to be an excitable system. In fact, the relaxation oscillation (forced by steady winds) with decadal time scale that describes the bimodality is recognized to be an internal mode of the system, which can be excited also in a dissipative parameter range (PR) in which it does not arise spontaneously, provided appropriate initial conditions are chosen. It is then shown that, if the additive wind noise is included in the forcing, the actual excitation of the relaxation oscillation in PR occurs if the noise is red with a decorrclation time greater than a minimum time scale ranging from 1 month to 1 year, depending on the dissipation. This behavior, known as "coherence resonance," is likely to be paradigmatic of the low-frequency variability of western boundary current extensions of intrinsic origin, when it is in the form of relaxation oscillations resulting from a homoclinic bifurcation. General considerations concerning the interpretation of model results obtained within different parameter ranges are applied to this study.
机译:通过由稳定的气候风和理想化的Omstein-Uhlenbeck风噪声强迫的双回转(DG)模型,分析了随机风对Kuroshio延伸(KE)的固有低频变化的影响。 KE双峰的DG模型。其结果与高度计数据相比很好,首先被证明是一个可激发的系统。实际上,描述双峰的具有十年代时标的弛豫振荡(由稳定风推动)被认为是系统的内部模式,也可以在不出现它的耗散参数范围(PR)中被激发。如果选择适当的初始条件,则可以自发地进行。然后表明,如果将附加风噪声包括在强制中,则当噪声为红色且去相关时间大于最小时间范围(从1个月到1年)时,PR中的弛豫振荡就会发生实际激发,取决于耗散量。这种行为,被称为“相干共振”,很可能是固有起源的西边界电流扩展的低频变化的典范,当它表现为由同斜分叉引起的弛豫振荡时。有关解释在不同参数范围内获得的模型结果的一般注意事项可用于本研究。

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  • 来源
    《Journal of Physical Oceanography》 |2010年第1期|238-248|共11页
  • 作者

    Stefano Pierini;

  • 作者单位

    Dipartimento di Scienze per l'Ambiente, Universita di Napoli 'Parthenope,' Centra Direzionale - Isola C4, 80143 Naples, Italy;

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