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Comparison of Lagrangian Process Analysis tools for Eulerian air quality models

机译:拉格朗日过程分析工具用于欧拉空气质量模型的比较

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摘要

Air quality models (AQM) are used to understand the complex relationships between sources of air pollutants and ambient concentrations. Two new AQM diagnostic tools, the Lagrangian Process Analysis (LPA) tool and the Python-based Process Analysis (pyPA), have recently been created that allow users to track a plume within the AQM, and then calculate the chemical and physical process rates that occur within it. These two new process analysis tools perform their functions differently. The LPA in-model algorithm operates at the computational timestep of the AQM, and pyPA is a post-processor tool dependent on the temporal resolution of the AQM output, typically 1 h. This work compares process rates calculated by these tools, using as a case study the simulation of a rapidly evolving plume that resulted from an industrial hydrocarbon release. Releases from industrial sources are of regulatory significance in Houston and their accurate simulation of great importance. Results show that the largest differences in the outputs of the tools occur early in the life of the plume when it is rapidly expanding. During this time, the plume encounters NOX sources that significantly impact chemical and physical process rates that are not seen in the pyPA post-processing of hourly AQM output.
机译:空气质量模型(AQM)用于了解空气污染物来源与环境浓度之间的复杂关系。最近创建了两个新的AQM诊断工具,即拉格朗日过程分析(LPA)工具和基于Python的过程分析(pyPA),这些工具可让用户跟踪AQM中的羽流,然后计算化学和物理过程速率,发生在其中。这两个新的过程分析工具执行不同的功能。 LPA模型内算法在AQM的计算时间步上运行,而pyPA是后处理器工具,取决于AQM输出的时间分辨率,通常为1小时。这项工作比较了这些工具计算出的过程速率,并以案例研究为基础,模拟了由工业碳氢化合物释放引起的快速演变的羽流。在休斯敦,工业排放源具有监管意义,对其进行精确的模拟非常重要。结果表明,工具输出的最大差异出现在羽流快速膨胀的早期。在这段时间内,羽流遇到的NOX来源会严重影响化学和物理处理速率,这在每小时AQM输出的pyPA后处理中看不到。

著录项

  • 来源
    《Atmospheric environment》 |2011年第29期|p.5200-5211|共12页
  • 作者单位

    Department of Environmental Science and Engineering, University of North Carolina at Chapel Hill, 163A Rosenau Hall CB#7431, Chapel Hill, NC 27599, USA;

    Center for Energy and Environmental Resources (R7WO), The University of Texas at Austin, 10100 Bumet Road, Austin, TX 78758, USA;

    Center for Energy and Environmental Resources (R7WO), The University of Texas at Austin, 10100 Bumet Road, Austin, TX 78758, USA;

    Center for Energy and Environmental Resources (R7WO), The University of Texas at Austin, 10100 Bumet Road, Austin, TX 78758, USA;

    Department of Environmental Science and Engineering, University of North Carolina at Chapel Hill, 163A Rosenau Hall CB#7431, Chapel Hill, NC 27599, USA;

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

    ozone; environmental chemistry; air quality model; process analysis; volatile organic carbon; industrial release;

    机译:臭氧;环境化学;空气质量模型;过程分析;挥发性有机碳;工业释放;

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