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首页> 外文期刊>Geoscientific Model Development Discussions >European daily precipitation according to EURO-CORDEX regional climate models (RCMs) and high-resolution global climate models (GCMs) from the High-Resolution Model Intercomparison Project (HighResMIP)
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European daily precipitation according to EURO-CORDEX regional climate models (RCMs) and high-resolution global climate models (GCMs) from the High-Resolution Model Intercomparison Project (HighResMIP)

机译:欧洲每日降水根据欧洲驯料区域气候模型(RCMS)和高分辨率全球气候模型(GCMS),来自高分辨率模型相互比较项目(HIGHRESMIP)

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In this study, we evaluate a set of high-resolution (25–50km horizontal grid spacing) global climate models (GCMs) from the High-Resolution Model Intercomparison Project (HighResMIP), developed as part of the EU-funded PRIMAVERA (Process-based climate simulation: Advances in high resolution modelling and European climate risk assessment) project, and from the EURO-CORDEX (Coordinated Regional Climate Downscaling Experiment) regional climate models (RCMs) (12–50km horizontal grid spacing) over a European domain. It is the first time that an assessment of regional climate information using ensembles of both GCMs and RCMs at similar horizontal resolutions has been possible. The focus of the evaluation is on the distribution of daily precipitation at a 50km scale under current climate conditions. Both the GCM and RCM ensembles are evaluated against high-quality gridded observations in terms of spatial resolution and station density. We show that both ensembles outperform GCMs from the 5th Coupled Model Intercomparison Project (CMIP5), which cannot capture the regional-scale precipitation distribution properly because of their coarse resolutions. PRIMAVERA GCMs generally simulate precipitation distributions within the range of EURO-CORDEX RCMs. Both ensembles perform better in summer and autumn in most European regions but tend to overestimate precipitation in winter and spring. PRIMAVERA shows improvements in the latter by reducing moderate-precipitation rate biases over central and western Europe. The spatial distribution of mean precipitation is also improved in PRIMAVERA. Finally, heavy precipitation simulated by PRIMAVERA agrees better with observations in most regions and seasons, while CORDEX overestimates precipitation extremes. However, uncertainty exists in the observations due to a potential undercatch error, especially during heavy-precipitation events. The analyses also confirm previous findings that, although the spatial representation of precipitation is improved, the effect of increasing resolution from 50 to 12km horizontal grid spacing in EURO-CORDEX daily precipitation distributions is, in comparison, small in most regions and seasons outside mountainous regions and coastal regions. Our results show that both high-resolution GCMs and CORDEX RCMs provide adequate information to end users at a 50km scale.
机译:在本研究中,我们从高分辨率模型互相熟项项目(HighResmip)评估了一组高分辨率(25-50km水平网格间距)全局气候模型(GCM),作为欧盟资助的Primavera的一部分开发(过程 - 基于气候模拟:高分辨率建模和欧洲气候风险评估的进步)项目,以及从欧洲德国(协调区域气候镇压实验)区域气候模型(RCMS)(12-50km水平网格间距)在欧洲领域。这是第一次使用在类似水平分辨率下使用GCM和RCMS的集合进行评估区域气候信息。评估的重点是在当前气候条件下以50km规模分配日降水量。在空间分辨率和站密度方面,GCM和RCM集合都针对高质量的网格观测评估。我们表明,两者都从第5次耦合型号互联项目(CMIP5)的合奏,这是由于其粗略分辨率正确地捕获区域尺度降水分布。 Primavera GCMS通常模拟欧洲Cordex RCMS范围内的降水分布。在大多数欧洲地区的夏季和秋季,这两个集合都在更好地表现更好,但在冬季和春季往往升高降水。 Primavera通过减少中欧和西欧的中等降水率偏差,改善了后者。 Primavera的平均沉淀的空间分布也得到改善。最后,Primavera模拟的重度降水在大多数地区和季节的观察中更好地同意,而Cordex过度估计极端降水。然而,由于潜在的undercation误差,观察结果存在不确定性,特别是在重度降水事件期间。分析还确认了先前的发现,尽管降水的空间表示得到改善,但在大多数地区和山区外部的季节中,增加了50至12km水平电网间距的效果。和沿海地区。我们的研究结果表明,高分辨率GCMS和CORDEX RCMS都提供了50公里规模的最终用户提供了足够的信息。
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