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Diagnostic Case Studies of the Northern Annular Mode

机译:北环形模式的诊断案例研究

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摘要

Recent observational studies of the northern annular mode (NAM) indicate that significant case-to-case variability exists in the structural evolution of individual events. In particular, certain NAM events remain confined to stratospheric altitudes whereas others readily penetrate downward into the troposphere. We perform observational diagnostic analyses that are targeted at identifying the physical mechanisms behind this distinction. Our results thereby provide a test of the different existing theories regarding stratospheric influences upon tropospheric climate.We contrast robust stratospheric NAM events with differing tropospheric signals in order to identify the underlying dynamical reasons for the observed differences. Piecewise potential vorticity (PV) inversions and Eliassen-Palm flux analyses are performed to study the roles of different forcing mechanisms during NAM onset. Our results indicate that variations in the tropospheric response are readily explained on the basis of piecewise PV inversions. Specifically, during individual cases, preexisting tropospheric PV anomaly features can mask the downward penetration of an initial stratospheric NAM signal into the troposphere. Analyses of PV inversions further suggest that a minimum requirement for a direct downward stratospheric influence is that the stratospheric NAM signal be robust in the lower stratosphere. Thus, whether or not a tropospheric NAM signal emerges from a stratospheric NAM event is largely dependent upon (i) whether stratospheric PV anomalies descend to sufficiently low altitudes within the stratosphere and (ii) the detailed nature of preexisting annular modes in the troposphere. Parallel Eliassen-Palm flux analyses further indicate that anomalous Rossby wave forcing is important for initiating NAM events in the midstratosphere and facilitating their downward advance into the lower stratosphere.
机译:最近对北部环形模式(NAM)的观测研究表明,个别事件的结构演变中存在明显的个案差异。特别是,某些NAM事件仍然局限于平流层高度,而其他事件则容易向下渗透到对流层。我们执行观察性诊断分析,旨在确定这种区别背后的物理机制。因此,我们的结果提供了关于平流层对对流层气候影响的不同现有理论的检验。我们将平流层NAM事件与对流层不同信号进行对比,以找出观测到差异的潜在动力学原因。进行分段势涡(PV)反演和Eliassen-Palm通量分析以研究NAM发作期间不同强迫机制的作用。我们的结果表明,对流层响应的变化很容易根据分段PV反演来解释。具体而言,在个别情况下,对流层PV异常的预先存在可能掩盖了最初的平流层NAM信号向对流层的向下渗透。对PV反演的分析进一步表明,对平流层向下直接影响的最低要求是平流层NAM信号在较低的平流层中应具有鲁棒性。因此,对流层NAM信号是否产生了对流层NAM信号,在很大程度上取决于(i)平流层PV异常是否下降到平流层内足够低的高度,以及(ii)对流层中预先存在的环形模态的详细性质。平行的Eliassen-Palm通量分析进一步表明,异常的Rossby波强迫对于在平流层中层启动NAM事件并促进其向下进入平流层下部很重要。

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