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Hailfalls in southwest Europe: EOF analysis for identifying synoptic pattern and their trends

机译:欧洲西南部的雹灾:EOF分析,用于识别天气模式及其趋势

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One of the main challenges in studies of hail precipitation is the estimation of its trends in the context of global warming. The strong spatiotemporal variability of hailfalls, together with their small scale, makes it difficult to record all such events and build long and homogeneous databases. For this reason, obtaining direct observation trends yields large uncertainties. The study of atmospheric parameters at various scales that influence deep convection and its temporal change has been used to estimate possible trends in the frequency of hailfalls. In this article, we analyze atmospheric variability at synoptic scale during the warm season in Southwest Europe, using empirical orthogonal function analysis and hailfall records from dense hailpad networks in northeastern Spain and southern France. These networks have uninterrupted operation during the warm season and reliable data. This method allowed us to obtain spatial modes of variability and temporal changes, facilitating estimation of changes in hail frequencies. The results show that the main modes of variability of 500-hPa geopotential height facilitate the definition of patterns that favor hailfalls throughout the warm season, whereas lapse-rate patterns between 850 and 500 hPa are shown to be important in the central months of the hail season. In addition, temporal changes in patterns related to hailfall variability suggest changes in the hailfall distribution during the warm season, with a decrease in hail frequency during June and increase during July.
机译:冰雹降水研究的主要挑战之一是在全球变暖背景下估计其趋势。冰雹的时空变化很大,而且规模小,因此很难记录所有此类事件并建立冗长而同质的数据库。因此,获得直接的观察趋势会产生很大的不确定性。对影响深对流及其时间变化的各种尺度的大气参数的研究已被用来估计雹降频率的可能趋势。在本文中,我们使用经验正交函数分析和西班牙东北部和法国南部密集的冰雹网络的降雪记录,分析了西南欧暖季天气尺度下的大气变化。这些网络在暖季期间运行不中断,数据可靠。这种方法使我们能够获得变化和时空变化的空间模式,有助于估算冰雹频率的变化。结果表明,500-hPa地势高度的主要变化模式有助于确定在整个暖季有利于降雪的模式,而在850-500 hPa的降速模式在冰雹的中心月份显示出重要作用季节。此外,与冰雹变化有关的模式的时间变化表明,在暖季期间冰雹分布发生变化,六月的冰雹频率减少而七月的冰雹频率增加。

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