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Air Quality Modeling for the Urban Jackson Mississippi Region Using a High Resolution WRF/Chem Model

机译:使用高分辨率WRF / Chem模型对密西西比州杰克逊市区的空气质量进行建模

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摘要

In this study, an attempt was made to simulate the air quality with reference to ozone over the Jackson (Mississippi) region using an online WRF/Chem (Weather Research and Forecasting–Chemistry) model. The WRF/Chem model has the advantages of the integration of the meteorological and chemistry modules with the same computational grid and same physical parameterizations and includes the feedback between the atmospheric chemistry and physical processes. The model was designed to have three nested domains with the inner-most domain covering the study region with a resolution of 1 km. The model was integrated for 48 hours continuously starting from 0000 UTC of 6 June 2006 and the evolution of surface ozone and other precursor pollutants were analyzed. The model simulated atmospheric flow fields and distributions of NO2 and O3 were evaluated for each of the three different time periods. The GIS based spatial distribution maps for ozone, its precursors NO, NO2, CO and HONO and the back trajectories indicate that all the mobile sources in Jackson, Ridgeland and Madison contributing significantly for their formation. The present study demonstrates the applicability of WRF/Chem model to generate quantitative information at high spatial and temporal resolution for the development of decision support systems for air quality regulatory agencies and health administrators.
机译:在这项研究中,我们尝试使用在线WRF / Chem(天气研究和预报-化学)模型来模拟杰克逊(密西西比州)地区的臭氧质量。 WRF / Chem模型的优点是将气象和化学模块与相同的计算网格和相同的物理参数化集成在一起,并且包括大气化学和物理过程之间的反馈。该模型设计为具有三个嵌套域,最内层域覆盖研究区域,分辨率为1 km。从2006年6月6日的0000 UTC开始,该模型连续48小时被集成,并分析了表面臭氧和其他前​​体污染物的演变。针对三个不同时间段中的每个时间段,评估了模型模拟的大气流场以及NO2和O3的分布。基于GIS的臭氧,其前体NO,NO2,CO和HONO的空间分布图以及向后的轨迹表明,杰克逊,里奇兰德和麦迪逊的所有移动源均对其形成做出了重要贡献。本研究证明了WRF / Chem模型在高时空分辨率下生成定量信息的适用性,从而为空气质量监管机构和卫生管理人员开发决策支持系统。

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