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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Generation of regional climate ensembles using Atmospheric Forcing Shifting
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Generation of regional climate ensembles using Atmospheric Forcing Shifting

机译:利用大气强迫转移产生区域气候集合体

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Ensembles of high-resolution regional climate model (RCM) simulations are crucial for assessing regional climate change and the associated uncertainties. This article presents an RCM ensemble generation technique which explores uncertainties arising from the positioning of synoptic systems in the large-scale atmospheric forcing by shifting the atmospheric fields from global climate model (GCM) runs horizontally. Here, we discuss how the so-called Atmospheric Forcing Shifting (AFS) affects temperature and precipitation over Europe for the period 1980-1984. We use ERA-40 reanalysis data in which the atmospheric fields are shifted to each direction by 25 and 50 km, respectively, to run RCM simulations with COSMO-CLM at 50-km resolution. The analysis of the AFS ensemble includes comparisons with E-OBS observations and COSMO-CLM runs driven by different GCMs. AFS has an evident effect on the spatiotemporal distributions of temperature and particularly precipitation, which is most pronounced during hydrological summer (May to October) when spatial weather patterns are more variable. Furthermore, AFS produces realistic changes in the likelihood and intensity of extreme precipitation. The changes induced by AFS depend strongly on orography, i.e. precipitation increases are likely to occur where moist air masses are shifted towards the windward mountain side and vice versa. Thus, increasing the RCM ensemble spread by means of AFS is a simple and useful method for sampling observed climate statistics and assessing the variability and changes in mean and extreme climate.
机译:高分辨率区域气候模型(RCM)模拟的集合对于评估区域气候变化和相关的不确定性至关重要。本文介绍了一种RCM集合生成技术,该技术通过将大气场从全球气候模型(GCM)的水平方向移动到大尺度大气强迫中,探索了天气系统定位的不确定性。在这里,我们讨论所谓的大气强迫转换(AFS)如何影响1980-1984年欧洲的温度和降水。我们使用ERA-40再分析数据,其中大气场分别向每个方向偏移25 km和50 km,以COSMO-CLM在50 km分辨率下运行RCM模拟。 AFS集合的分析包括与E-OBS观测值的比较以及由不同GCM驱动的COSMO-CLM运行。 AFS对温度,尤其是降水的时空分布有明显影响,这在夏季的水文学夏季(5月至10月)最为明显,此时空间天气模式变化更大。此外,AFS在极端降水的可能性和强度方面产生了现实的变化。由AFS引起的变化在很大程度上取决于地形,即,当潮湿的空气团向迎风山一侧移动时,降水可能会增加,反之亦然。因此,通过AFS增加RCM集合传播是一种简单而有用的方法,可用于对观测到的气候统计数据进行采样并评估平均和极端气候的变化性和变化。

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