首页> 外文期刊>Water, Air, and Soil Pollution >SIMULATION OF THE DISPERSION OF POLLUTANTS USING TWO APPROACHES FOR THE CASE OF A LOW SOURCE IN THE SBL: EVALUATION OF TURBULENCE PARAMETERISATIONS
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SIMULATION OF THE DISPERSION OF POLLUTANTS USING TWO APPROACHES FOR THE CASE OF A LOW SOURCE IN THE SBL: EVALUATION OF TURBULENCE PARAMETERISATIONS

机译:在SBL中采用低污染源的两种方法来模拟污染物的扩散:湍流参数的评估

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摘要

An Eulerian model and a Lagrangian particle model are used to study the dispersion of a contaminant released from a low source in the Stable Boundary Layer (SBL) using two different turbulence parameterisations. The Eulerian model is based on the solution of the advection-diffusion equation by the Laplace transform technique. The Lagrangian model is based on a generalized form of the Langevin equation. The first parameterisation, Degrazia et al. (2000), is based on Taylor's statistical diffusion theory and the observed spectral properties, supposes a linear combination between shear and buoyancy turbulence. The second, Hanna (1982), is based on observed spectral properties from Minnesota Planetary Boundary Layer (PBL) observations and is widely used in pollutant dispersion models. Considering that these simulations are in the SBL, the analysis of the results shows a reasonably good agreement between the values computed by the models against the experimental ones for the two turbulence parameterisations.
机译:使用欧拉模型和拉格朗日粒子模型来研究使用两种不同的湍流参数化方法从稳定边界层(SBL)中的低污染源释放的污染物的扩散。欧拉模型基于拉普拉斯变换技术对流扩散方程的求解。拉格朗日模型基于Langevin方程的广义形式。第一个参数化是Degrazia等。 (2000年),基于泰勒的统计扩散理论和观察到的光谱特性,假设剪切和浮力湍流之间的线性组合。第二种是Hanna(1982),它基于明尼苏达州行星边界层(PBL)观测值的光谱特性,并广泛用于污染物扩散模型中。考虑到这些模拟在SBL中,对结果的分析表明,对于两种湍流参数化,模型所计算的值与实验值之间具有合理的良好一致性。

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