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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Multiscale modeling of air pollutants dynamics in the northwestern Mediterranean basin during a typical summertime episode
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Multiscale modeling of air pollutants dynamics in the northwestern Mediterranean basin during a typical summertime episode

机译:多尺度的空气污染物动力学建模在地中海盆地西北部典型的夏季集

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摘要

The complex behavior of photochemical pollutants in the northwestern Mediterranean basin (NWMB) is conditioned by the superposition of circulations of different scale and the pattern of emissions. Therefore a new approach to the modeling of air quality in the NWMB has been adopted by combining the global climate-chemistry model ECHAM5/MESSy and the regional modeling system MM5-EMICAT2000-CMAQ to analyze the high levels of photochemical air pollution during a typical summertime episode. We show that this combination of models is well suited to address the range of scales involved. The complexity of the area requires the application of high spatial and temporal resolution (2 km and 1 hour) modeling to cover local to regional interactions. We address the local and large-scale processes controlling tropospheric ozone in the NWMB, notably emissions and photochemistry, convective and advective transport, deposition processes, and stratosphere-troposphere exchange. The simulation results indicate that the ozone buildup largely results from local photochemical production, which strongly exceeds the removal rates through transport and deposition. The contribution by advective transport is limited, associated with the stagnant meteorological conditions. In the lower troposphere, local recirculation systems are of key importance. The strength of the land-sea breeze circulation and thermally or mechanically driven convection over the complex orography of the eastern Iberian coast can induce vertical transport and the layering of air pollution.
机译:光化学污染物的复杂行为在地中海盆地西北部(NWMB)受制于发行量的叠加不同的规模和排放的模式。因此空气的建模新方法质量NWMB一直采用结合全球climate-chemistry模型ECHAM5 /混乱和区域建模系统MM5-EMICAT2000-CMAQ分析的高水平在一个典型的光化学污染的空气夏季集。的模型非常适合解决的范围尺度有关。要求高的应用空间时间分辨率(2公里,1小时)建模覆盖本地区域的交互。当地的和大规模的过程控制对流层中的臭氧NWMB,尤其是排放光化学、对流和对流运输、沉积过程和stratosphere-troposphere交换。结果表明,臭氧形成很大程度上结果从当地光化生产,除强烈超过利率运输和沉积。对流运输有限,联系在一起停滞不前的气象条件。低对流层,当地再循环系统至关重要。陆海风循环和热复杂的机械驱动的对流冷锋伊比利亚东部海岸可以诱导垂直交通和空气的分层污染。

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