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Simulation of Wind Circulation and Pollutant Diffusion Over the Pearl River Delta Region

机译:珠江三角洲风环流和污染物扩散的模拟

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摘要

Changes in urban surface areas and population growth have significantly affected the weather and environment. Emissions of nitrogen oxides are increasing in the Pearl River Delta region. Nitrogen compounds emitted by factories and motor vehicles are the major sources of nitric pollution. To study the impacts of urbanization and the relationship between pollutant diffusion and the atmospheric environment, the nonhydrostatic mesoscale forecast model MM5 (v3.73), which was developed by Penn State University and the National Center of Atmospheric Research, and a mass continuity equation for air pollutants, were used in this study. Two experiments were designed. One experiment (BE) applied horizontal grid resolutions of 27, 9, 3, and 1 km in four nested domains. The other experiment adopted new land-use data (in domain 4) directly retrieved from Landsat Thematic Mapper imagery to replace the 1980s data of the United States Geological Survey in BE. A 48-h simulation (from 0000 UTC on 21 October to 0000 UTC on 23 October 2008) was conducted, with the first 12 h being the spin-up time and the remaining 36 h being the effective simulation, so as to capture the diurnal features of the thermally induced winds associated with the land-sea breeze and urban heat island circulations. The different results obtained from the two tests for wind circulation and air pollution dispersion and transportation in the Pearl River Delta region were analyzed. The simulated results show that the both experiments can well simulate land-sea breeze circulation and remarkable land-sea breeze evolution, comparing with observation data. The height of the PBL had a significant diurnal cycle. The structure of the wind field can obviously impact the dispersion of the NO_x in three dimensions. Nitrogen oxides mainly diffused along the dominant wind direction (east or southeast wind), therefore the majority of the pollutants accumulated in the northwest region of the fine domain in both simulation experiments. However, it induced the pollutants concentration in an irregular pattern due to the fine-resolution grid spaces and complicated inland wind field in the northwest area of the inner domain. Moreover, increasing the proportion of urban surface caused sensible heat flux increase, latent heat flux decrease and humility reducing relatively in the region of urban surface characteristics apparently. Urbanization will cause pollution accumulated severely over the urban surface.
机译:城市表面积和人口增长的变化已极大地影响了天气和环境。珠江三角洲地区氮氧化物的排放正在增加。工厂和机动车排放的氮化合物是一氧化氮污染的主要来源。为了研究城市化的影响以及污染物扩散与大气环境之间的关系,宾州州立大学和美国国家大气研究中心开发了非静水中尺度预报模型MM5(v3.73),并建立了质量连续性方程在这项研究中使用了空气污染物。设计了两个实验。一项实验(BE)在四个嵌套域中应用了27、9、3和1 km的水平网格分辨率。另一项实验采用了直接从Landsat Thematic Mapper影像中检索到的新的土地利用数据(在域4中)来代替BE的美国地质调查局的1980年代数据。进行了48小时的模拟(从10月21日的0000 UTC到2008年10月23日的0000 UTC),前12 h是加速时间,其余36 h是有效模拟,以捕获昼夜与陆海风和城市热岛环流相关的热诱导风的特征。分析了两次测试对珠江三角洲地区的风循环,空气污染扩散和运输的不同结果。仿真结果表明,与观测数据相比,两个实验都能较好地模拟海陆风环流和明显的海陆风演化。 PBL的高度具有明显的昼夜周期。风场的结构显然可以在三个维度上影响NO_x的扩散。氮氧化物主要沿主导风向(东风或东南风)扩散,因此在两个模拟实验中,大部分污染物都聚集在精细域的西北区域。然而,由于精细分辨率的网格空间和内域西北地区内陆风场的复杂性,它以不规则的方式诱导了污染物的浓度。而且,城市表面比例的增加导致明显的热通量增加,潜热通量减少,谦卑性在城市表面特征区域明显降低。城市化将导致严重污染在城市表面累积。

著录项

  • 来源
    《Environmental Modeling & Assessment》 |2012年第5期|p.539-553|共15页
  • 作者单位

    School of Environmental Science and Engineering, Sun Yat-sen University, 510275, Guangzhou, People's Republic of China,Guizhou Meteorological Bureau, Guiyang 550002, People's Republic of China;

    School of Environmental Science and Engineering, Sun Yat-sen University, 510275, Guangzhou, People's Republic of China;

    School of Environmental Science and Engineering, Sun Yat-sen University, 510275, Guangzhou, People's Republic of China;

    Guangzhou Central Meteorological Observatory, Guangzhou 510080, People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    NO_x; MM5; land-use; numerical simulation;

    机译:NO_x;MM5;土地利用;数值模拟;

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