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Characterising the relationship between weather extremes in Europe and synoptic circulation features

机译:描述欧洲极端天气与天气环流特征之间的关系

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Extreme weather events in Europe are closely linked to anomalies of the atmospheric circulation and in particular to circulation features like cyclones and atmospheric blocking. In this study, this linkage is systematically characterised with the help of conditional cyclone and blocking frequencies during precipitation, wind gust and temperature extremes at various locations in Europe. Such conditional frequency fields can serve as a dynamical fingerprint of the extreme events and yield insights into their most important physical driving mechanisms. Precipitation extremes over the ocean and over flat terrain are shown to be closely related to cyclones in the vicinity and the associated dynamical lifting. For extreme precipitation over complex terrain, cyclone anomalies are found at more remote locations, favouring the flow of moist air towards the topography.Wind gust extremes are associated with cyclone and blocking anomalies in opposite directions, with the cyclones occurring mostly over the North and Baltic seas for extreme events in central Europe. This setting is associated with pronounced surface pressure gradients and thus high near-surface wind velocities. Hot temperature extremes in northern and central Europe typically occur in the vicinity of a blocking anticyclone, where subsidence and radiative forcing are strong. Over southern Europe, blocking anomalies are shifted more to the north or northeast, indicating a more important role of warm air advection. Large-scale flow conditions for cold extremes are similar at many locations in Europe, with blocking anomalies over the North Atlantic and northern Europe and cyclone anomalies southeast of the cold extreme, both contributing to the advection of cold air masses. This characterisation of synoptic-scale forcing mechanisms can be helpful for better understanding and anticipating weather extremes and their long-term changes.
机译:欧洲的极端天气事件与大气环流异常密切相关,尤其是与旋风和大气阻隔等环流特征密切相关。在这项研究中,在欧洲不同地区,在降水,阵风和极端温度期间,有条件的气旋和阻塞频率帮助系统地表征了这种联系。这样的条件频率场可以用作极端事件的动态指纹,并可以洞悉它们最重要的物理驱动机制。事实证明,海洋和平坦地形上的极端降水与附近的气旋和相关的动力提升密切相关。对于复杂地形上的极端降水,在更偏远的地方发现了气旋异常,有利于潮湿的空气流向地形;大风极端与气旋有关,并在相反的方向阻塞了异常,气旋主要发生在北部和波罗的海在中欧发生极端事件的海洋。此设置与明显的表面压力梯度相关,因此与近地表风速较高有关。北欧和中欧的极端高温通常发生在封闭的反气旋附近,那里的沉降和辐射强迫很强。在南欧上空,阻塞异常更多地转移到北部或东北部,这表明暖空气对流的作用更为重要。在欧洲许多地方,极端寒冷的大规模流动条件是相似的,北大西洋和北欧的异常阻塞以及寒冷极端东南的气旋异常均被阻止,这两个因素均导致了冷空气团的平流。天气尺度强迫机制的这一特征有助于更好地了解和预测极端天气及其长期变化。

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