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Performance of the Rossby Centre regional atmospheric model in Southern Sweden: comparison of simulated and observed precipitation

机译:瑞典南部罗斯比中心区域大气模型的性能:模拟和观测降水的比较

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Two climate model simulations made with the Rossby Centre regional Atmospheric, model version 1 (RCA1) are evaluated for the precipitationlimate in Scania, southernmost Sweden. These simulations are driven by the HadCM2 and the ECHAM4/OPYC3 global circulation models (GCMs) for 10 years. Output from the global and the regional simulations are compared with an observational data set, constructed from a dense precipitation gauge network in Scania. Area-averaged time series corresponding to the size and location of the RCA1 grid points in Scania have been created (the Scanian Data Set). This data set was compared to a commonly used gridded surface climatology provided by the Climatic Research Unit (CRU). Relatively large differences were found, mainly due to the fact that the CRU-climatology uses fewer stations and lacks a correction for rain-gauge under-catch. This underlines the importance of the data set chosen for model evaluations. The validation is carried out at a large scale including the whole area of Scania and at the finest resolution of RCA1 (the grid point level). When integrated over the whole area of Scania, RCA1 improves the shape of the annual precipitation cycle and the inter-annual variability compared to output from the GCMs. The RCA1 control climate is generally too wet compared to the observations. At the grid point level, RCA1 improves the simulation of the variability compared to the GCMs. There is a strong positive correlation between precipitation and altitude in all seasons in the observations. This relationship is, however, much weaker and even reversed in the RCA1 simulations. Analysis of the dense rain gauge network reveals features of spatial variability at around 20-35 km in the area and indicates that a finer resolution is needed if the spatial variability in the area is to be better captured by RCA1.
机译:在瑞典最南端的斯堪尼亚,对罗斯伯中心区域大气模型1(RCA1)进行的两次气候模型模拟进行了评估。这些模拟是由HadCM2和ECHAM4 / OPYC3全球流通模型(GCM)驱动的,历时10年。将全球和区域模拟的输出与由斯堪尼亚的密集降水计网络构建的观测数据集进行比较。已经创建了与Scania中RCA1网格点的大小和位置相对应的区域平均时间序列(Scanian数据集)。将该数据集与气候研究单位(CRU)提供的常用的网格化表面气候进行了比较。发现相对较大的差异,主要是由于CRU气候学使用的台数较少,并且缺乏雨量计不足的校正。这突出了选择用于模型评估的数据集的重要性。验证是在包括Scania的整个区域以及RCA1(网格点级别)的最高分辨率下进行的。与整个GCM的输出相比,RCA1在整个Scania区域进行整合时,可改善年降水周期的形状和年际变化。与观测值相比,RCA1控制气候通常过于潮湿。在网格点级别,RCA1与GCM相比改进了可变性的仿真。在所有季节中,降水和海拔高度之间都存在很强的正相关。但是,这种关系在RCA1模拟中要弱得多,甚至相反。对密集雨量计网络的分析揭示了该地区20-35 km左右的空间变异性特征,并指出,如果要用RCA1更好地捕获该地区的空间变异性,则需要更高的分辨率。

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