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The Role of Planetary Boundary-Layer Parameterizations in the Air Quality of an Urban Area with Complex Topography

机译:行星边界层参数化在复杂地形市区空气质量中的作用

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摘要

The effect of different planetary boundary-layer (PBL) parameterization schemes on the spatial distribution of atmospheric pollution over the complex topography of the greater Athens area is investigated. Four PBL schemes originally implemented in a numerical meteorological model and a fifth one simulating the urban effect are examined. Two different atmospheric conditions are analyzed; a typical summer and a typical winter pollution episode. The relative importance of chemical and physical processes of the pollution predictions is discussed using process analysis. It is revealed that, for primary pollutants, a local scheme seems more adequate to represent the maximum observed concentrations while, completely different in structure, a non-local scheme reproduces the mean observed values in the basin. Concerning secondary pollutants, peak concentration differences, due to the different PBL schemes, are smoothed out. Nevertheless, the PBL scheme selection shapes the horizontal and the vertical extension of maximum values. The non-local and semi non-local schemes are superior to the others, favouring strong vertical mixing and transport towards the surface. The stronger turbulence accommodated effectively by the semi non-local urban scheme enhances ozone production along the sea-breeze axis and preserves the high ozone concentrations during the nighttime hours in the urban core.
机译:研究了大雅典地区复杂地形上不同行星边界层(PBL)参数化方案对大气污染空间分布的影响。考察了最初在数值气象模型中实施的四种PBL方案和模拟城市效应的第五种方案。分析了两种不同的大气条件;典型的夏季和典型的冬季污染事件。使用过程分析讨论了化学和物理过程对污染预测的相对重要性。结果表明,对于主要污染物,局部方案似乎更适合代表最大观测浓度,而在结构上完全不同,非局部方案再现了盆地中的平均观测值。关于二次污染物,由于不同的PBL方案而导致的峰浓度差异被消除。但是,PBL方案选择会影响最大值的水平和垂直扩展。非局部和半非局部方案优于其他方案,有利于强力的垂直混合和向地面的传输。半非本地城市计划有效地适应了更强的湍流,从而提高了海风轴上的臭氧产量,并在城市核心区域的夜间保持了较高的臭氧浓度。

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