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首页> 外文期刊>Climate dynamics >Diagnosing GCM errors over West Africa using relaxation experiments. Part I: summer monsoon climatology and interannual variability
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Diagnosing GCM errors over West Africa using relaxation experiments. Part I: summer monsoon climatology and interannual variability

机译:使用松弛实验诊断西非的GCM错误。第一部分:夏季季风气候与年际变化

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The CNRM atmospheric general circulation model Arpege-Climat is relaxed towards atmospheric reanalyses outside the 10°S-32°N 30°W-50°E domain in order to disentangle the regional versus large-scale sources of climatological biases and interannual variability of the West African monsoon (WAM). On the one hand, the main climatological features of the monsoon, including the spatial distribution of summer precipitation, are only weakly improved by the nudging, thereby suggesting the regional origin of the Arpege-Climat biases. On the other hand, the nudging technique is relatively efficient to control the interannual variability of the WAM dynamics, though the impact on rainfall variability is less clear. Additional sensitivity experiments focusing on the strong 1994 summer monsoon suggest that the weak sensitivity of the model biases is not an artifact of the nudging design, but the evidence that regional physical processes are the main limiting factors for a realistic simulation of monsoon circulation and precipitation in the Arpege-Climat model. Sensitivity experiments to soil moisture boundary conditions are also conducted and highlight the relevance of land-atmosphere coupling for the amplification of precipitation biases. Nevertheless, the land surface hydrology is not the main explanation for the model errors that are rather due to deficiencies in the atmospheric physics. The intraseasonal timescale and the model internal variability are discussed in a companion paper.
机译:CNRM大气总环流模型Arpege-Climat趋向于在10°S-32°N 30°W-50°E域外进行大气再分析,以消除区域性或大规模的气候偏差和年际变化的来源。西非季风(WAM)。一方面,季风的主要气候特征(包括夏季降水的空间分布)仅通过微调得以改善,从而暗示了Arpege-Climat偏差的区域起源。另一方面,尽管对降雨变化的影响尚不清楚,但微调技术相对有效地控制了WAM动态的年际变化。针对1994年夏季强季风的其他敏感性实验表明,该模型偏差的敏感性较弱不是微动设计的产物,而是证据表明区域物理过程是实际模拟季风环流和降水的主要限制因素。 Arpege-Climat模型。还进行了对土壤水分边界条件的敏感性试验,并突出了土地-大气耦合对降水偏向放大的相关性。尽管如此,地表水文学并不是模型误差的主要解释,而模型误差是由于大气物理学的缺陷造成的。随附论文中讨论了季节内时间尺度和模型内部变异性。

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