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Meteorological and Back Trajectory Modeling for the Rocky Mountain Atmospheric Nitrogen and Sulfur Study II

机译:落基山大气氮和硫研究的气象和后向轨迹模拟II

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The Rocky Mountain Atmospheric Nitrogen and Sulfur (RoMANS II) study with field operations during November 2008 through November 2009 was designed to evaluate the composition and sources of reactive nitrogen in Rocky Mountain National Park, Colorado, USA. As part of RoMANS II, a mesoscale meteorological model was utilized to provide input for back trajectory and chemical transport models. Evaluation of the model's ability to capture important transport patterns in this region of complex terrain is discussed. Previous source-receptor studies of nitrogen in this region are also reviewed. Finally, results of several back trajectory analyses for RoMANS II are presented. The trajectory mass balance (TrMB) model, a receptor-based linear regression technique, was used to estimate mean source attributions of airborne ammonia concentrations during RoMANS II. Though ammonia concentrations are usually higher when there is transport from the east, the TrMB model estimates that, on average, areas to the west contribute a larger mean fraction of the ammonia. Possible reasons for this are discussed and include the greater frequency of westerly versus easterly winds, the possibility that ammonia is transported long distances as ammonium nitrate, and the difficulty of correctly modeling the transport winds in this area.
机译:于2008年11月至2009年11月间进行的落基山大气氮和硫(RoMANS II)研究旨在评估美国科罗拉多州落基山国家公园中活性氮的组成和来源。作为RoMANS II的一部分,中尺度气象模型被用来为后向轨迹和化学传输模型提供输入。讨论了该模型在复杂地形区域捕获重要运输模式的能力的评估。还回顾了该地区以前的氮源-受体研究。最后,介绍了RoMANS II的几种后向轨迹分析结果。轨迹质量平衡(TrMB)模型(一种基于受体的线性回归技术)用于估算RoMANS II期间空气中氨浓度的平均来源归因。尽管从东部进行运输时氨的浓度通常较高,但TrMB模型估计,平均来说,西部的区域贡献了较大的平均氨含量。讨论了可能的原因,包括西风和东风的频率更高,氨以硝酸铵形式远距离运输的可能性以及在该区域正确模拟运输风的难度。

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