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High resolution modelling of aerosol dispersion regimes during the CAPITOUL field experiment: from regional to local scale interactions

机译:高速公路田间试验期间气溶胶分散制度的高分辨率建模:从区域到地方规模相互作用

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High resolution simulation of complex aerosol particle evolution and gaseous chemistry over an atmospheric urban area is of great interest for understanding air quality and processes. In this context, the CAPITOUL (Canopy and Aerosol Particle Interactions in the Toulouse Urban Layer) field experiment aims at a better understanding of the interactions between the urban dynamics and the aerosol plumes. During a two-day Intensive Observational Period, a numerical model experiment was set up to reproduce the spatial distribution of specific particle pollutants, from the regional scales and the interactions between different cities, to the local scales with specific turbulent structures. Observations show that local dynamics depends on the day-regime, and may lead to different mesoscale dynamical structures. This study focuses on reproducing these fine scale dynamical structures, and investigate the impact on the aerosol plume dispersion. The 500-m resolution simulation manages to reproduce convective rolls at local scale, which concentrate most of the aerosol particles and can locally affect the pollutant dispersion and air quality.
机译:高分辨率模拟大气城市地区的复杂气溶胶粒子演化和气态化学对理解空气质量和流程非常令人兴趣。在这种情况下,Capitoul(图卢兹城市层的冠层和气溶胶粒子相互作用)现场实验旨在更好地了解城市动态与气溶胶羽毛之间的相互作用。在两天的深入观察期间,建立了数值模型实验,以再现特定粒度污染物的空间分布,从区域尺度和不同城市之间的相互作用,到具有特定湍流结构的本地鳞片。观察结果表明,局部动态取决于日间制度,并且可能导致不同的Mescreal动态结构。本研究侧重于再现这些精细的动态结构,并研究对气溶胶羽流分散的影响。 500米的分辨率模拟管理以在局部刻度上再现对流辊,其集中大多数气溶胶颗粒,并且可以在局部影响污染物分散和空气质量。

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