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Representing the Effects of Long-Range Transport and Lateral Boundary Conditions in Regional Air Pollution Models

机译:代表在区域空气污染模型中远程运输和横向边界条件的影响

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The Community Multiscale Air Quality (CMAQ) modeling system was applied to a domain covering the northern hemisphere; meteorological information was derived from the Weather Research and Forecasting (WRF) model run on identical grid and projection configuration, while the emission inputs were derived from global inventories. The ability of the model to represent long-range transport of pollutants is analyzed through comparisons with aircraft measurements from the 2006 INTEX-B field campaign, ozonesonde profiles, and remotely sensed observations of aerosol optical depth. Time varying lateral boundary conditions from these hemispheric scale calculations were used to drive regional-scale air quality simulations over a finer resolution domain covering the continental United States. Comparison of model predictions with surface O_3 and PM_(2.5) measurements indicate comparable or better performance relative to other approaches (e.g., other global models, static profiles). The successful expansion of CMAQ to the hemispheric scales now provides a conceptual framework to examine interactions between atmospheric processes occurring at various spatial and temporal scales in a consistent manner.
机译:社区多尺度空气质量(CMAQ)建模系统应用于覆盖北半球的域;气象信息来自于在相同网格和投影配置上运行的天气研究和预测(WRF)模型,而排放输入源自全球库存。通过与2006 Intex-B场运动,臭氧型曲线的飞机测量和气溶胶光学深度的远程感测观察,通过比较来分析模型代表污染物远程运输的能力。从这些半球刻度计算的时间变化横向边界条件用于在覆盖美国大陆的更精细的分辨率域中推动区域级空气质量模拟。使用表面O_3和PM_(2.5)测量的模型预测的比较表明相对于其他方法(例如,其他全球模型,静态轮廓)的相当或更好的性能。 CMAQ对半球缩度的成功扩展现在提供了一种概念框架,以检查在各种空间和时间秤上发生的大气过程之间的相互作用。

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