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首页> 外文期刊>Journal of the Atmospheric Sciences >Dynamically consistent formulations in meteorological and air quality models for multiscale atmospheric studies. Part II: Mass conservation issues
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Dynamically consistent formulations in meteorological and air quality models for multiscale atmospheric studies. Part II: Mass conservation issues

机译:用于多尺度大气研究的气象和空气质量模型中的动态一致公式。第二部分:群众保护问题

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摘要

Eulerian air quality models that require gridded meteorological inputs have to adapt to recent advances in meteorological models for fully compressible atmosphere. When the input meteorological data are recast with a robust fully compressible governing set of equations, chemistry-transport models can follow the dynamic and thermodynamic descriptions of the meteorological data closely. For evaluating mass consistency in meteorological data, one may take advantage of the characteristics of the governing set of equations applicable for a specific vertical coordinate system, This paper discusses how the data from meteorological models should be used in air quality simulations. It proposes a general methodology to conserve mass of trace species in air quality models by maintaining consistency in the wind and air density fields. Limitations of several simplifying assumptions on atmospheric dynamics are also discussed. In summary, it attempts to bridge the information gap between dynamic meteorologists and air quality modelers by highlighting the implication of using different meteorological coordinates and dynamic assumptions for air quality simulations.
机译:需要网格化的气象输入的欧拉空气质量模型必须适应于完全可压缩大气的气象模型的最新进展。当使用健壮的完全可压缩控制方程组对输入的气象数据进行重铸时,化学物质运输模型可以紧随其后地对气象数据进行动态和热力学描述。为了评估气象数据的质量一致性,可以利用适用于特定垂直坐标系的控制方程组的特征。本文讨论了在空气质量模拟中应如何使用气象模型的数据。它提出了一种通用方法,通过保持风场和空气密度场的一致性来节省空气质量模型中的痕量物质。还讨论了关于大气动力学的几种简化假设的局限性。总之,它通过强调使用不同的气象坐标和动态假设进行空气质量模拟的含义,试图弥合动态气象学家和空气质量建模者之间的信息鸿沟。

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