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North American Supercell Environments in Atmospheric Reanalyses and RUC-2

机译:大气中的北美Supercell环境和RUC-2

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A suite of modern atmospheric reanalyses is analyzed to determine how they represent North American supercell environments. This analysis is performed by comparing a database of Rapid Update Cycle (RUC-2) proximity soundings with profiles derived from the nearest grid point in each reanalysis. Parameters are calculated using the Sounding and Hodograph Analysis and Research Program in Python (SHARPpy), an open-source Python sounding-analysis package. Representation of supercell environments varies across the reanalyses, and the results have ramifications for climatological studies that use these datasets. In particular, thermodynamic parameters such as the convective available potential energy (CAPE) show the widest range in biases, with reanalyses falling into two camps. The North American Regional Reanalysis (NARR) and the Japanese 55-year Reanalysis (JRA-55) are similar to RUC-2, but other reanalyses have a substantial negative bias. The reasons for these biases vary and range from thermodynamic biases at the surface to evidence of convective contamination. Overall, it is found that thermodynamic biases feed back to other convective parameters that incorporate CAPE directly or indirectly via the effective layer. As a result, significant negative biases are found for indices such as the supercell composite parameter. These biases are smallest for NARR and JRA-55. Kinematic parameters are more consistent across the reanalyses. Given the issues with thermodynamic properties, better segregation of soundings by storm type is found for fixed-layer parameters than for effective-layer shear parameters. Although no reanalysis can exactly reproduce the results of earlier RUC-2 studies, many of the reanalyses can broadly distinguish between environments that are significantly tornadic versus nontornadic.
机译:分析了一套现代大气排列,以确定它们如何代表北美超级环境。通过比较快速更新周期(RUC-2)接近探测数据库的数据库来执行此分析,其中具有从每个再分析中的最近的网格点导出的配置文件。使用Python(Sharppy)中的探测和计时仪分析和研究程序计算参数,是一个开源Python Sounding-Analysis包。 SuperCell环境的表示在Reanalyses上变化,结果具有用于使用这些数据集的气候学研究的后果。特别是,热力学参数,例如对流可用潜在能量(CAPE)显示偏差的最宽范围,Reanalyses落入两个阵营。北美区域重新分析(Narr)和日本55年的Reanalysis(JRA-55)类似于RUC-2,但其他Reanalyses具有实质性的负面偏见。这些偏差的原因不同,并且从表面的热力学偏差到对流污染的证据。总的来说,发现热力学偏差返回到其他对流参数,该参数直接或间接地通过有效层结合。结果,找到了显着的负偏差,用于诸如SuperCell复合参数的索引。对于Nar和JRA-55,这些偏差最小。在Reanalyses上的运动学参数更一致。鉴于热力学性质的问题,发现通过用于有效层剪切参数的固定层参数来获得风暴类型的更好的探测分离。虽然没有重新分析可以完全重现早期的RUC-2研究的结果,但是许多Reanalyses可以广泛区分显着裁员的环境与顿诺克舞。

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