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Analyzing highly uncertain source regions in the Ex-UTLS and their effects on small-scale atmospheric composition using probabilistic retroplume calculations

机译:使用概率反演计算分析Ex-UTLS中高度不确定的源区及其对小尺度大气成分的影响

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Forecasts of atmospheric composition in the Ex-UTLS (extratropical upper troposphere lower stratosphere) are highly sensitive to uncertainties in the source regions of air masses. This study investigates the reliability of calculated source regions and their effects on trace gas distributions in this region. For this purpose, an ensemble-based probabilistic retroplume approach is developed to track source regions of air masses. This approach provides the ability to account for both, (i) the contribution of different source regions to an air mass by adjoint diffusion and (ii) the uncertainty of theses source regions with respect to forecast dynamics. Probabilistic retroplume calculations are applied to an air mass in the vicinity of a weak saddle-point in the Ex-UTLS in order to investigate its effect on source regions. The results indicate high sensitivity of source regions to uncertainties in atmospheric transport revealed by perturbed meteorological forecasts. Additionally considering the sources of surrounding air masses leads to even larger spread of source regions. Spreading over large parts of Europe and altitudes between 8 and 14 km within two days, probable source regions comprise completely opposite transport-directions. This large uncertainty of source regions show significant effect on atmospheric composition in the vicinity of the saddle-point on a short timescale. Evaluating the effect of meteorological uncertainties on local distributions of trace gases, ozone concentrations range from 50 to 350 ppbv at the same location. Probabilistic retroplume calculations suggest a clear connection between these concentrations and related source regions.
机译:Ex-UTLS(对流层上平流层下平流层)中大气成分的预报对气团源区的不确定性高度敏感。本研究调查了计算出的气源区域的可靠性及其对该区域痕量气体分布的影响。为此目的,开发了一种基于整体的概率反演方法来跟踪气团的源区域。这种方法提供了考虑以下两种能力的能力:(i)不同的源区域通过伴随扩散对空气质量的贡献,以及(ii)这些源区域相对于预测动力学的不确定性。对Ex-UTLS中弱鞍点附近的空气质量进行概率回溯计算,以研究其对源区的影响。结果表明,扰动的气象预报显示出源区对大气传输不确定性的高度敏感性。另外,考虑周围空气质量的源会导致源区域更大的扩散。可能的源区在两天内分布于欧洲大部分地区,海拔在8至14 km之间,可能包含完全相反的运输方向。源区域的巨大不确定性在短时间内对鞍点附近的大气成分产生了重大影响。为了评估气象不确定性对痕量气体局部分布的影响,同一地点的臭氧浓度范围为50到350 ppbv。概率后遗症计算表明这些浓度与相关源区域之间存在明确的联系。

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