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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Is our dynamical understanding of the circulation changes associated with the Antarctic ozone hole sensitive to the choice of reanalysis dataset?
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Is our dynamical understanding of the circulation changes associated with the Antarctic ozone hole sensitive to the choice of reanalysis dataset?

机译:我们对与南极臭氧孔相关的循环变化的动态理解是对Reanalysic DataSet的选择敏感的吗?

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This study quantifies differences among four widely used atmospheric reanalysis datasets (ERA5, JRA-55, MERRA-2, and CFSR) in their representation of the dynamical changes induced by springtime polar stratospheric ozone depletion in the Southern Hemisphere from 1980 to 2001. The intercomparison is undertaken as part of the SPARC (Stratosphere–troposphere Processes and their Role in Climate) Reanalysis Intercomparison Project (S-RIP). The reanalyses are generally in good agreement in their representation of the strengthening of the lower stratospheric polar vortex during the austral spring–summer season, associated with reduced radiative heating due to ozone loss, as well as the descent of anomalously strong westerly winds into the troposphere during summer and the subsequent poleward displacement and intensification of the polar front jet. Differences in the trends in zonal wind between the reanalyses are generally small compared to the mean trends. The exception is CFSR, which exhibits greater disagreement compared to the other three reanalysis datasets, with stronger westerly winds in the lower stratosphere in spring and a larger poleward displacement of the tropospheric westerly jet in summer. The dynamical changes associated with the ozone hole are examined by investigating the momentum budget and then the eddy heat and momentum fluxes in terms of planetary- and synoptic-scale Rossby wave contributions. The dynamical changes are consistently represented across the reanalyses and support our dynamical understanding of the response of the coupled stratosphere–troposphere system to the ozone hole. Although our results suggest a high degree of consistency across the four reanalysis datasets in the representation of these dynamical changes, there are larger differences in the wave forcing, residual circulation, and eddy propagation changes compared to the zonal wind trends. In particular, there is a noticeable disparity in these trends in CFSR compared to the other three reanalyses, while the best agreement is found between ERA5 and JRA-55. Greater uncertainty in the components of the momentum budget, as opposed to mean circulation, suggests that the zonal wind is better constrained by the assimilation of observations compared to the wave forcing, residual circulation, and eddy momentum and heat fluxes, which are more dependent on the model-based forecasts that can differ between reanalyses. Looking forward, however, these findings give us confidence that reanalysis datasets can be used to assess changes associated with the ongoing recovery of stratospheric ozone.
机译:本研究量化了四种广泛使用的大气再分析数据集(ERA5,JRA-55,MERRA-2和CFSR)的差异,从1980年到2001年从南半球春季极性平流层臭氧耗尽引起的动态变化表示。互相作为SPARC的一部分(平流层 - 对流层流程及其在气候中的作用)进行再分析互相组(S-RIP)。在澳春季夏季的欧洲春季较低的地段极性漩涡的表现中,Reanalyses一般都很吻合,这与臭氧损失引起的辐射加热减少,以及异常强大的风吹进入对流层的下降在夏季和随后的极端前射流的侧向位移和强化。与平均趋势相比,Reanalyses之间的区域风趋势的差异通常很小。除了与其他三个再分析数据集相比,除了CFSR的例外是CFSR,夏季较低的平流层中较强的西风,夏季,夏季较大的春季较大的向外排水。通过调查动量预算,然后在行星和概要规模的罗斯比波贡献方面进行涡流和动量通量,检查与臭氧孔相关的动态变化。动态变化始终如一地在Reanalyses上表示,并支持我们对耦合的平衡层 - 对流层系统对臭氧孔的响应的动态理解。虽然我们的结果表明,在这些动态变化的表示中,在四个再分析数据集中的高度一致性,但与Zonal风趋势相比,波迫使波迫使,残留循环和涡流变化存在较大差异。特别是,与其他三个Reanalyses相比,CFSR中的这些趋势存在明显的差异,而在ERA5和JRA-55之间存在最佳协议。由于平均流动,势头预算的组成部分中的更大不确定性表明,与波浪强迫,残留循环和涡动度和热量相比,分区风更好地受到观察的影响,这更依赖于Reanalyses之间可以不同的基于模型的预测。然而,期待这些发现让我们信心可用于评估与持续回收流层臭氧的恢复相关的变化。

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