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Dynamical downscaling of ERA40 reanalysis data over southern Africa: added value in the simulation of the seasonal rainfall characteristics

机译:南部非洲ERa40再分析资料的动态降尺度:季节性降雨特征模拟的附加值

摘要

We investigate the capability of the regional climate model REMO to adequately simulate the mesoscale climate patterns of southern Africa, thereby focusing on South-West Africa (SWA). The simulations are conducted at a horizontal resolution of about 18 km for the period from 1958 to 2007. Boundary forcing is taken from ERA40 reanalysis and subsequent operational analyses data. This study is the first long-term dynamical downscaling study for southern Africa on a very high horizontal resolution. To evaluate the model results, we use a set of different observations to compare with model output data. This analysis indicates that the model results agree rather well with observations for both spatial as well as temporal patterns. Especially along the focus region in SWA, REMO results are very close to observations. For this region we show that dynamical downscaling of the ERA40 reanalysis data with the REMO model leads to an improved description of the seasonal precipitation characteristics. Remaining deficits, which mainly occur in the simulation of the 2-m air temperature, can be explained with the setup of the model's soil routine and will be investigated further. On the basis of the findings of this study we conclude that the model is well suited for the simulation of the regional climate over the southern African region. High-resolution model output implies more detailed climate information and can lead to a significant improvement in the representation of spatial patterns. It is therefore beneficial to use regional climate model data when assessing climate change-induced impacts on a regional scale. Copyright (c) 2010 Royal Meteorological Society
机译:我们研究了区域气候模型REMO充分模拟南部非洲中尺度气候模式的能力,从而重点研究了西南非洲(SWA)。在1958年至2007年期间,以约18 km的水平分辨率进行了模拟。边界强迫来自ERA40再分析和后续的运行分析数据。这项研究是南部非洲首次在非常高的水平分辨率下进行的动态降尺度研究。为了评估模型结果,我们使用一组不同的观察结果与模型输出数据进行比较。该分析表明,模型结果与空间和时间模式的观察结果非常吻合。特别是在SWA的重点区域,REMO的结果非常接近观测结果。对于此区域,我们显示了使用REMO模型对ERA40再分析数据进行动态降尺度处理后,可以更好地描述季节性降水特征。剩余的赤字主要发生在2 m气温模拟中,可以通过建立模型的土壤程序进行解释,并将进一步进行研究。根据这项研究的结果,我们得出结论,该模型非常适合模拟南部非洲地区的区域气候。高分辨率的模型输出意味着更详细的气候信息,并且可以显着改善空间模式的表示形式。因此,在评估气候变化对区域规模的影响时,使用区域气候模型数据是有益的。版权所有(c)2010皇家气象学会

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