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Modification of the Baroclinic Instability Associated with Positive and Negative Arctic Oscillation Index: A Theoretical Proof of the Positive Feedback

机译:与正负北极涛动指数相关的斜压不稳定的修正:正反馈的理论证明

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摘要

The modification of the baroclinic instability associated with positive and negative Arctic Oscillation Index (AOI) is theoretically investigated using a linearized 3D spectral primitive equation model. The linear instability analysis shows that the most unstable Charney mode MC changes its structure to intensify (weaken) the polar jet by the eddy momentum flux associated with the positive (negative) AOI. More importantly, the meridionally dipole Charney mode M2 is modified into the monopole Charney mode M1 to transport eddy momentum flux northward under the positive AOI condition. It is found that this modification is essential to intensify the polar jet during the AOI positive phase. Hence, we have theoretically confirmed that there are positive feedbacks between the baroclinic instability waves and the Arctic Oscillation characterized by the intensity of the polar jet.
机译:理论上,使用线性3D光谱原始方程模型研究了与正负北极涛动指数(AOI)相关的斜压不稳定性的修正。线性不稳定性分析表明,最不稳定的Charney模式MC通过与正(负)AOI相关的涡动量通量改变其结构,以增强(减弱)极地射流。更重要的是,在正AOI条件下,子午偶极子Charney模式M2修改为单极子Charney模式M1,以将涡动量通量向北传输。发现该修饰对于在AOI正相期间增强极性射流是必不可少的。因此,我们从理论上证实,斜压不稳定波与以极地急流强度为特征的北极涛动之间存在正反馈。

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