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Hybrid Modeling Approaches Applied to AERMOD Modeling Analyses(PPT)

机译:应用于Aermod建模分析的混合建模方法(PPT)

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AERMOD (American Meteorological Society (AMS)/EPA Regulatory Model) is the USEPA’s preferred near-field dispersion modeling system for regulatory applications. While the initial plume characteristics of emissions sources can often be appropriately characterized by available guidance and the source types provided in AERMOD (e.g., point, area, volume, etc.), some situations are more difficult to characterize such as unconfined buoyant releases. We explore the use of techniques to characterize AERMOD volume source parameters for such unconfined buoyant releases. The first step uses the plume rise calculations of a model (such as BLP or OBODM) that is specifically developed for the unique release type. The initial plume characteristics calculated by the model are then input to AERMOD as a volume source, thereby using the most current dispersion algorithms to predict downwind ambient air quality concentrations. This two-step hybrid approach provides the modeler with a method to best parameterize a non-routine emissions source, while utilizing a preferred state-of-the-science dispersion model.
机译:Aermod(美国气象学会(AMS)/ EPA监管模式)是USEPA的监管应用近场分散建模系统。虽然排放源的初始羽流特性通常可以通过可用的指导和Aermod(例如,点,面积,体积等)提供的可用指导和源类型来表征,但是一些情况更难以表征,例如无束的浮力释放。我们探索使用技术来表征Aermod体积源参数,用于这种无限制的浮力释放。第一步使用专门为独特释放类型专门开发的模型(例如BLP或OBODM)的羽流量计算。然后将模型计算的初始羽流特性作为体积源输入到Aremod,从而使用最电流的色散算法来预测向下风环境空气质量浓度。这种两步混合方法提供了利用优选的 - 科学散发模型的最佳参数化的方法来实现最佳参数化的方法。

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