大西洋-欧洲地区阻塞天气状态动力学的相似性和变异性

F. Teubler, M. Riemer, Christopher Polster, C. Grams, S. Hauser, V. Wirth
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引用次数: 2

摘要

摘要天气状况是中纬度环流次季节变化的重要组成部分。由于它们在极端天气和大气可预测性中的作用,以阻塞反气旋为特征的制度特别令人感兴趣。本研究从全年的角度调查了北大西洋-欧洲地区这些“被封锁”的政权的动态。为了全面诊断,波浪活动概念和分段位涡(PV)趋势框架相结合。后者基本上量化了中纬度动力学中已确立的PV视角。考虑了1979-2021年ERA5再分析期间的四种阻塞状态(即大西洋海脊、欧洲阻塞、斯堪的纳维亚阻塞和格陵兰阻塞)。波活动特征在阻塞区表现出明显的差异。在状态开始后,格陵兰阻塞与波活动通量的抑制有关,而大西洋脊和欧洲阻塞与通量向北偏转有关,但没有明显的净变化。在开始期间,罗斯比波活动包络向上游收缩,造成格陵兰阻塞,而向下游延伸,造成大西洋脊和欧洲阻塞。斯堪的纳维亚阻塞具有中波活动特征。从分段PV趋势投射到各自的状态模式的角度来看,控制状态开始的动力学表现出很大程度的相似性:线性Rossby波动力学和非线性涡动PV通量占主导地位,它们的相对重要性大致相等,而斜压耦合和发散放大的贡献较小。最引人注目的是,所有阻断机制都表现出非常相似的(机制内)可变性:机制开始的逆行和上游途径。逆行路径以非线性PV涡旋通量为主,而上游路径以线性Rossby波动力学为主。重要的是,在发病前,对于某些机制,两种途径之间存在很大程度的取消。因此,发病前的政权平均观点的物理意义可能受到严重限制。讨论了我们的结果对理解阻塞制度的可预测性的影响。进一步讨论了预估趋势在捕捉湿斜压增长的重要性方面的局限性,这种增长往往发生在状态模式振幅较小的地区,因此对其的预估也较小。最后,需要强调的是,本研究调查了控制动力学的可变性,而没有事先按季节或按政权过渡类型对数据进行经验分层。然而,研究表明,我们以动力学为中心的方法并不仅仅反映与这些因素相关的可变性。因此,本文揭示的动力变异性的主要模式以及在显示这种变异性方面的阻塞状态的巨大相似性是重要的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Similarity and variability of blocked weather-regime dynamics in the Atlantic–European region
Abstract. Weather regimes govern an important part of the sub-seasonal variability of the mid-latitude circulation. Due to their role in weather extremes and atmospheric predictability, regimes that feature a blocking anticyclone are of particular interest. This study investigates the dynamics of these “blocked” regimes in the North Atlantic–European region from a year-round perspective. For a comprehensive diagnostic, wave activity concepts and a piecewise potential vorticity (PV) tendency framework are combined. The latter essentially quantifies the well-established PV perspective of mid-latitude dynamics. The four blocked regimes (namely Atlantic ridge, European blocking, Scandinavian blocking, and Greenland blocking) during the 1979–2021 period of ERA5 reanalysis are considered. Wave activity characteristics exhibit distinct differences between blocked regimes. After regime onset, Greenland blocking is associated with a suppression of wave activity flux, whereas Atlantic ridge and European blocking are associated with a northward deflection of the flux without a clear net change. During onset, the envelope of Rossby wave activity retracts upstream for Greenland blocking, whereas the envelope extends downstream for Atlantic ridge and European blocking. Scandinavian blocking exhibits intermediate wave activity characteristics. From the perspective of piecewise PV tendencies projected onto the respective regime pattern, the dynamics that govern regime onset exhibit a large degree of similarity: linear Rossby wave dynamics and nonlinear eddy PV fluxes dominate and are of approximately equal relative importance, whereas baroclinic coupling and divergent amplification make minor contributions. Most strikingly, all blocked regimes exhibit very similar (intra-regime) variability: a retrograde and an upstream pathway to regime onset. The retrograde pathway is dominated by nonlinear PV eddy fluxes, whereas the upstream pathway is dominated by linear Rossby wave dynamics. Importantly, there is a large degree of cancellation between the two pathways for some of the mechanisms before regime onset. The physical meaning of a regime-mean perspective before onset can thus be severely limited. Implications of our results for understanding predictability of blocked regimes are discussed. Further discussed are the limitations of projected tendencies in capturing the importance of moist-baroclinic growth, which tends to occur in regions where the amplitude of the regime pattern, and thus the projection onto it, is small. Finally, it is stressed that this study investigates the variability of the governing dynamics without prior empirical stratification of data by season or by type of regime transition. It is demonstrated, however, that our dynamics-centered approach does not merely reflect variability that is associated with these factors. The main modes of dynamical variability revealed herein and the large similarity of the blocked regimes in exhibiting this variability are thus significant results.
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