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A quasi-experimental coastal region eddy diffusivity applied in the APUGRID model

机译:APUGRID模型应用了准实验沿海区域涡流扩散率

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In this study, Taylor statistical diffusion theory and sonic anemometer measurements collected at 11 levels on a 140 m high tower located in a coastal region in southeastern Brazil have been employed to obtain quasi-empirical convective eddy diffusivity parameterizations in a planetary boundary layer (PBL). The derived algebraic formulations expressing the eddy diffusivities were introduced into an Eulerian dispersion model and validated with Copenhagen tracer experiments. The employed Eulerian model is based on the numerical solution of the diffusion–advection equation by the fractional step/locally one-dimensional (LOD) methods. Moreover, the semi-Lagrangian cubic-spline technique and Crank–Nicolson implicit scheme are considered to solve the advection and diffusive terms. The numerical simulation results indicate that the new approach, based on these quasi-experimental eddy diffusivities, is able to reproduce the Copenhagen concentration data. Therefore, the new turbulent dispersion parameterization can be applied in air pollution models.
机译:在这项研究中,在位于东南巴西沿海地区的140米高塔上收集了11个水平的泰勒统计扩散理论和声风计测量,以获得行星边界层(PBL)中的准经验对流涡衍射参数化。将表达涡流扩散性的衍生代数制剂引入欧拉分散模型中,并用培蛋白HAGEN示踪实验验证。所使用的欧拉模型基于分数步进/局部一维(LOD)方法的扩散 - 平面方程的数值解。此外,考虑了半拉格朗日立方样条技术和曲柄 - 尼古尔森隐性方案来解决平流和扩散术语。数值模拟结果表明,基于这些准实验涡流的新方法能够再现蛋白质浓度数据。因此,新的湍流分散参数化可以应用于空气污染模型。

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