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Reanalysis comparisons of upper tropospheric-lower stratospheric jets and multiple tropopauses

机译:上层对流层较低的平流层喷射和多发性对流层的再分析比较

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The representation of upper tropospheric-lower stratospheric (UTLS) jet and tropopause characteristics is compared in five modern high-resolution reanalyses for 1980 through 2014. Climatologies of upper tropospheric jet, subvortex jet (the lowermost part of the stratospheric vortex), and multiple tropopause frequency distributions in MERRA (Modern-Era Retrospective analysis for Research and Applications), ERA-I (ERA-Interim; the European Centre for Medium-RangeWeather Forecasts, ECMWF, interim reanalysis), JRA-55 (the Japanese 55-year Reanalysis), and CFSR (the Climate Forecast System Reanalysis) are compared with those in MERRA-2. Differences between alternate products from individual reanalysis systems are assessed; in particular, a comparison of CFSR data on model and pressure levels highlights the importance of vertical grid spacing. Most of the differences in distributions of UTLS jets and multiple tropopauses are consistent with the differences in assimilation model grids and resolution - for example, ERA-I (with coarsest native horizontal resolution) typically shows a significant low bias in upper tropospheric jets with respect to MERRA-2, and JRA-55 (the Japanese 55-year Reanalysis) a more modest one, while CFSR (with finest native horizontal resolution) shows a high bias with respect to MERRA-2 in both upper tropospheric jets and multiple tropopauses. Vertical temperature structure and grid spacing are especially important for multiple tropopause characterizations. Substantial differences between MERRA and MERRA-2 are seen in mid- to high-latitude Southern Hemisphere (SH) winter upper tropospheric jets and multiple tropopauses as well as in the upper tropospheric jets associated with tropical circulations during the solstice seasons; some of the largest differences from the other reanalyses are seen in the same times and places. Very good qualitative agreement among the reanalyses is seen between the large-scale climatological features in UTLS jet and multi
机译:上层流石(UTLS)射流和对流孔特性的表示在1980年至2014年的五个现代高分辨率Reanalyses中比较。上部对流层喷射的气候射流(涡旋涡流的最下部)和多层对象Merra的频率分布(研究和应用的现代追溯分析),ERA-I(ERA-Interim;欧洲中等地天气预报中心,ECMWF,临时再分析),JRA-55(日本55年的Reanysis)和CFSR(气候预测系统重新分析)与Merra-2中的CFSR(气候预测系统再分析)。评估单个再分析系统的替代产品之间的差异;特别地,CFSR数据对模型和压力水平的比较突出了垂直网格间距的重要性。大多数UTLS喷射器和多个对流发射的分布的差异与同化模型网格和分辨率的差异一致 - 例如,ERA-I(具有粗原植水平分辨率)通常在上部对流层喷射中显示出显着的低偏差Merra-2和JRA-55(日本55年的Reanalysis)更为温和的,而CFSR(具有最好的本机水平分辨率)显示出相对于上层喷射器和多个对流层中Merra-2的高偏差。垂直温度结构和网格间距对于多个对流性特征尤为重要。 Merra和Merra-2之间的大量差异在中度高纬度南半球(SH)冬季上部对流层喷射器和多个对流层以及在Solstice Seasons期间与热带循环相关的上部对流层喷射器;与其他Reanalyses的一些最大的差异在同一时期和地点看到。在UTLS Jet和Multi的大规模气候功能之间看到Reanalyses之间的非常好的定性协议。

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