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Simulation of Atmospheric Dispersion of Elevated Releases from Point Sources in Mississippi Gulf Coast with Different Meteorological Data

机译:不同气象数据对密西西比州墨西哥湾沿岸点源高空释放的大气弥散模拟

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摘要

Atmospheric dispersion calculations are made using the HYSPLIT Particle Dispersion Model for studying the transport and dispersion of air-borne releases from point elevated sources in the Mississippi Gulf coastal region. Simulations are performed separately with three meteorological data sets having different spatial and temporal resolution for a typical summer period in 1–3 June 2006 representing a weak synoptic condition. The first two data are the NCEP global and regional analyses (FNL, EDAS) while the third is a meso-scale simulation generated using the Weather Research and Forecasting model with nested domains at a fine resolution of 4 km. The meso-scale model results show significant temporal and spatial variations in the meteorological fields as a result of the combined influences of the land-sea breeze circulation, the large scale flow field and diurnal alteration in the mixing depth across the coast. The model predicted SO2 concentrations showed that the trajectory and the concentration distribution varied in the three cases of input data. While calculations with FNL data show an overall higher correlation, there is a significant positive bias during daytime and negative bias during night time. Calculations with EDAS fields are significantly below the observations during both daytime and night time though plume behavior follows the coastal circulation. The diurnal plume behavior and its distribution are better simulated using the mesoscale WRF meteorological fields in the coastal environment suggesting its suitability for pollution dispersion impact assessment in the local scale. Results of different cases of simulation, comparison with observations, correlation and bias in each case are presented.
机译:使用HYSPLIT粒子扩散模型进行大气扩散计算,以研究密西西比海湾沿岸地区点升高源的空中传播的传输和扩散。在2006年6月1日至3日的典型夏季,天气条件较弱,三个具有不同时空分辨率的气象数据集分别进行了模拟。前两个数据是NCEP全局和区域分析(FNL,EDAS),而第三个数据是使用天气研究和预报模型生成的中尺度模拟,其中嵌套区域的分辨率为4 km。中尺度模式的结果表明,由于陆海风环流,大尺度流场和整个海岸混合深度的昼夜变化的综合影响,气象领域的时空发生了显着变化。该模型预测的SO2浓度表明,三种输入数据情况下的轨迹和浓度分布均发生变化。尽管使用FNL数据进行的计算显示出总体上较高的相关性,但白天存在明显的正偏差,而夜间则存在负偏差。尽管羽流行为遵循沿海环流,但在白天和晚上,用EDAS场进行的计算都大大低于观测值。利用沿海环境中尺度的WRF气象场可以更好地模拟昼间烟羽的行为及其分布,这表明它适合于当地尺度的污染扩散影响评估。介绍了不同情况下的仿真结果,与观察结果的比较,每种情况下的相关性和偏差。

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