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Computer simulations of the atmospheric composition climate of Bulgaria

机译:保加利亚大气成分气候的计算机模拟

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Some extensive numerical simulations of the atmospheric composition fields in Bulgaria have been recently performed. The US EPA Model-3 system was chosen as a modelling tool. As the NCEP Global Analysis Data with 1 degree resolution was used as meteorological background, the MM5 and CMAQ nesting capabilities were applied for downscaling the simulations to a 3 km resolution over Bulgaria. The TNO emission inventory was used as emission input. Special pre-processing procedures are created for introducing temporal profiles and speciation of the emissions. The biogenic emissions of VOC are estimated by the model SMOKE. The simulations were carried out for years 2000-2007. The numerical experiments have been carried out for different emission scenarios, which makes it possible the contribution of emissions from different source categories to be evaluated. The Models-3 "Integrated Process Rate Analysis" option is applied to discriminate the role of different dynamic and chemical processes for the air pollution formation. The obtained ensemble of numerical simulation results is extensive enough to allow statistical treatment -calculating not only the mean concentrations and different source categories contribution mean fields, but also standard deviations, skewness, etc. with their dominant temporal modes (seasonal and/or diurnal variations). Thus some basic facts about the atmospheric composition climate of Bulgaria can be retrieved from the simulation ensemble.
机译:最近对保加利亚的大气成分场进行了一些广泛的数值模拟。选择了美国EPA Model-3系统作为建模工具。由于使用1度分辨率的NCEP全球分析数据作为气象背景,因此应用了MM5和CMAQ嵌套功能将模拟缩小到保加利亚的3 km分辨率。 TNO排放清单被用作排放输入。创建了特殊的预处理程序以引入时间分布图和排放物的形态。 VOC的生物成因排放由模型SMOKE估算。模拟进行了2000-2007年。已经针对不同的排放情景进行了数值实验,这使得有可能评估来自不同源类别的排放的贡献。使用Models-3“集成过程速率分析”选项来区分不同动态过程和化学过程对空气污染形成的作用。所获得的数值模拟结果集合足够广泛,可以进行统计处理-不仅计算平均浓度和不同源类别对平均场的贡献,还计算标准偏差,偏度等及其主要时空模式(季节和/或日变化) )。因此,可以从模拟合奏中获得有关保加利亚大气成分气候的一些基本事实。

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