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AIR QUALITY STUDY OVER THE ATLANTIC COAST OF IBERIAN PENINSULA

机译:伊比利亚半岛大西洋海岸的空气质量研究

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The west coast of Iberian Peninsula, surrounded by the Atlantic Ocean, is characterized by complex topography and some favourable synoptical situations, which imply the appearance of mesoscale circulations strongly influencing the transport of pollutants. On the other hand, the regions of Galicia (NW Spain), and the North of Portugal, have important air pollutants sources (power plants, chemical industries, traffic and biogenic emissions), all of them contributing to the air quality along the Atlantic coast and even affecting the centre of the Iberian Peninsula. In order to achieve the proposed objectives, a hierarchy of models was applied: the results of a global numerical weather prediction model (GCM), namely the AVN (Aviation model from the National Centres for Environmental Prediction of USA) were used as initial and boundary conditions into the regional meteorological model of the Pennsylvania State University/ National Center for Atmospheric Research Mesoscale Meteorology Model (MM5) over an area that includes a large part of the Iberian Peninsula, using its nesting capabilities. To analyse the photochemical production over the fine grid domains an interface between the MM5 and a photochemical model (MARS) was built up, constituting an innovative approach and a first attempt to integrate these two models. The achieved results must be considered as preliminary, since the application of this particular prognostic numerical system indicates that more refinement on the boundary layer parameterisations as well on the initial and boundary conditions applied to the MARS model is needed, although the systems represents quite well the ozone measured concentrations.
机译:由大西洋包围的伊比利亚半岛西海岸,其特点是复杂的地形和一些有利的概要情况,这意味着迈占循环的出现强烈影响污染物的运输。另一方面,加利西亚(西班牙北部)和葡萄牙北部的地区都有重要的空气污染物来源(发电厂,化学工业,交通和生物排放),所有这些都有助于沿着大西洋海岸的空气质量甚至影响伊伯利亚半岛的中心。为了实现拟议的目标,应用了模型的层次:全球数值天气预报模型(GCM)的结果,即AVN(来自美国环境预测中心的航空模型)被用作初始和边界宾夕法尼亚州立大学/国家大气研究中学硕士气象模型(MM5)区域气象模型的条件,包括嵌套能力,包括伊比利亚半岛的大部分地区。为了分析优质网格域上的光化学生产,建立了MM5和光化学模型(MARS)之间的接口,构成了创新的方法,并首先尝试整合这两个模型。所达到的结果必须被视为初步,因为该特定预后数值系统的应用表明,需要在边界层参数上的应用以及应用于MARS模型的初始和边界条件的更多细化,但是该系统相当好臭氧测定浓度。

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