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首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >A comparison of the regional Arctic System Reanalysis and the global ERA-Interim Reanalysis for the Arctic
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A comparison of the regional Arctic System Reanalysis and the global ERA-Interim Reanalysis for the Arctic

机译:北极地区北极系统再分析与全球ERA临时再分析的比较

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The Arctic System Reanalysis version 1 (ASRv1), a high-resolution regional assimilation of model output, observations and satellite data across the mid- and high latitudes of the Northern Hemisphere, and the global European Centre for Medium Range Forecasting Interim Reanalysis (ERAI) are compared with atmospheric observations for the period December 2006 to November 2007. Results throughout the troposphere show observations to be well assimilated in the ASRv1, as monthly and annual near-surface (upper-level) temperature, dew-point (relative humidity), pressure (geopotential height) and wind-speed biases compared with surface stations and radiosondes are very small. These results are similar to the ERAI, although wind-speed biases are significantly smaller in the ASRv1. Despite the ASRv1's use of a 3D-variational (Var) assimilation compared with the ERAI's 4D-Var, similar results suggest that a regional approach with higher-resolution terrain and a detailed land-surface description forced by a global reanalysis may improve the assimilation of observations and help offset temporal information lost by the 3D-Var compared with the 4D-Var. However, the ASRv1 forecast field results compared with the ERAI are mixed. The ASRv1 and ERAI show negative precipitation biases during cool months compared with gauge observations, and too much precipitation falls in the ASRv1 during summer in the midlatitudes. Stations north of 60 degrees N demonstrate smaller precipitation biases in the ASRv1 than the ERAI except during the summer, when the ASRv1 is very dry. Short-wave radiation compared with observations is much too large in the ASRv1, and both reanalyses show long-wave radiation deficits during most months. These results point to inadequacies in model physics in the ASRv1 (e.g. convective and radiation schemes) that will continue to be refined in subsequent versions of the ASR.
机译:北极系统再分析版本1(ASRv1),是北半球中高纬度地区的模型输出,观测值和卫星数据的高分辨率区域同化,以及全球欧洲中期预报中期再分析中心(ERAI)并与2006年12月至2007年11月的大气观测值进行了比较。整个对流层的结果表明,在ASRv1中,观测值与月和年的近地表(上层)温度,露点(相对湿度),与地面站和无线电探空仪相比,气压(地势高度)和风速偏差非常小。这些结果与ERAI相似,尽管ASRv1中的风速偏差明显较小。尽管与ERAI的4D-Var相比,ASRv1使用了3D变异(Var)同化,但相似的结果表明,采用更高分辨率的地形和通过全球重新分析强制进行详细的地表描述的区域性方法可能会改善对ASRv1的同化。观察结果,并有助于抵消3D-Var与4D-Var相比丢失的时间信息。但是,与ERAI相比,ASRv1预测领域的结果好坏参半。与标准观测相比,ASRv1和ERAI在凉爽的月份表现出负的降水偏向,而在夏季,中纬度地区的ASRv1出现了过多的降水。在北纬60度以北的站点中,除夏季ASRv1非常干燥外,ASRv1中的降水偏差比ERAI小。在ASRv1中,短波辐射与观测值相比太大了,并且两次重新分析都显示了大多数月份中的长波辐射缺陷。这些结果表明ASRv1中的模型物理学方面的不足(例如对流和辐射方案)将在后续版本的ASR中继续完善。

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