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Impact of increasing resolution and a warmer climate on extreme weather from Northern Hemisphere extratropical cyclones

机译:分辨率提高和气候变暖对北半球温带气旋的极端天气的影响

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摘要

The effect of a warmer climate on the properties of extratropical cyclones is investigated using simulations of the ECHAM5 global climate model at resolutions of T213 (60 km) and T319 (40 km). Two periods representative of the end of the 20th and 21 st centuries are investigated using the IPCC A1B scenario. The focus of the paper is on precipitation for the NH summer and winter seasons, however results from vorticity and winds are also presented. Similar number of events are identified at both resolutions. There are, however, a greater number of extreme precipitation events in the higher resolution run. The difference between maximum intensity distributions is shown to be statistically significant using a Kolmogorov-Smirnov test. A generalized Pareto distribution is used to analyse changes in extreme precipitation and wind events. In both resolutions, there is an increase in the number of extreme precipitation events in a warmer climate for all seasons, together with a reduction in return period. This is not associated with any increased vertical velocity, or with any increase in wind intensity in the winter and spring. However, there is an increase in wind extremes in the summer and autumn associated with tropical cyclones migrating into the extratropics.
机译:使用ECHAM5全球气候模型在T213(60 km)和T319(40 km)分辨率下的模拟研究了气候变暖对温带气旋性质的影响。使用IPCC A1B情景研究了代表20世纪和21世纪末的两个时期。本文的重点是NH夏季和冬季的降水,但是也给出了涡度和风的结果。在两种分辨率下,事件数量均相似。但是,在较高分辨率的运行中,有更多的极端降水事件。使用Kolmogorov-Smirnov检验显示最大强度分布之间的差异具有统计学意义。广义帕累托分布用于分析极端降水和风事件的变化。在这两个决议中,在所有季节中,在气候变暖的情况下,极端降水事件的数量都增加了,同时返回期也减少了。这与垂直速度的增加或冬季和春季的风强度的增加无关。但是,夏季和秋季极端风的增加与热带气旋迁移到温带有关。

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  • 来源
    《Tellus》 |2011年第5期|p.893-906|共14页
  • 作者单位

    National Centre for Earth Observation, University of Reading, Reading, UK;

    National Centre for Earth Observation, University of Reading, Reading, UK;

    National Centre for Earth Observation, University of Reading, Reading, UK;

    Leibniz Institute of Marine Sciences, IFM-GEOMAR, West Shore Campus, Duesternbrooker Weg 20, D-24105 Kiel, Germany;

    Max Planck Institutfr Meteorologie, Bundesstr. 53, 20146 Hamburg, Germany;

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