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Linear interference and the initiation of extratropical stratosphere-troposphere interactions

机译:线性干扰和温带平流层-对流层相互作用的开始

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Vertical fluxes of wave activity from the troposphere to the stratosphere correlate negatively with the Northern Annular Mode (NAM) index in the stratosphere and subsequently in the troposphere. Recent studies have shown that stratospheric NAM variability is also negatively correlated with the amplitude of the wave pattern coherent with the large-scale climatological stationary wavefield; when the climatological stationary wavefield is amplified or attenuated, the stratospheric jet correspondingly weakens or strengthens. Here we quantify the importance of this linear interference effect in initiating stratosphere-troposphere interactions by performing a decomposition of the vertical wave activity flux using reanalysis data. The interannual variability in vertical wave activity flux in both the Northern and Southern Hemisphere extratropics is dominated by linear interference of quasi-stationary waves during the season of strongest stratosphere-troposphere coupling. Composite analysis of anomalous vertical wave activity flux events reveals the significant role of linear interference and shows that "linear" and "nonlinear" events are essentially independent. Linear interference is the dominant contribution to the vertical wave activity flux anomalies preceding displacement stratospheric sudden warmings (SSWs) while split SSWs are preceded by nonlinear wave activity flux anomalies. Wave activity variability controls the timing of stratospheric final warmings, and this variability is shown to be dominated by linear interference, particularly in the Southern Hemisphere. The persistence of the linear interference component of the vertical wave activity flux, corresponding to persistent constructive or destructive interference between the wave-1 component of climatological stationary wave and the wave anomaly, may help improve wintertime extratropical predictability.
机译:从对流层到平流层的波活动的垂直通量与平流层以及随后在对流层中的北环形模态(NAM)指数呈负相关。最近的研究表明,平流层NAM的变化性也与与大尺度气候平稳波场相干的波型幅度负相关。当气候平稳波场被放大或衰减时,平流层射流相应地减弱或增强。在这里,我们通过使用重新分析数据对垂直波活动通量进行分解,来量化这种线性干扰效应在引发平流层-对流层相互作用中的重要性。平流层-对流层耦合最强的季节,北半球和南半球偏热带的垂直波活动通量的年际变化主要由准平稳波的线性干扰决定。异常垂直波活动通量事件的综合分析揭示了线性干扰的重要作用,并表明“线性”和“非线性”事件本质上是独立的。线性干扰是位移平流层突然变暖(SSW)之前对垂直波活动通量异常的主要贡献,而分裂SSW之前是非线性波活动通量异常。波浪活动的可变性控制了平流层最终变暖的时间,而且这种可变性受线性干扰的支配,特别是在南半球。垂直波活动通量的线性干扰分量的持续存在,对应于气候平稳波的wave-1分量与异常波之间的持续相长或相消,可能有助于改善冬季的温带可预报性。

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