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A hybrid CFD RANS/Lagrangian approach to model atmospheric dispersion of pollutants in complex urban geometries

机译:复杂城市几何形状模型污染物大气分散的混合CFD RAGRANGIAN方法

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Lagrangian atmospheric dispersion models consist of tracking the trajectories of particles of pollutant emitted into the atmosphere. In this paper, the objective is to compare the Lagrangian and Eulerian dispersion models in the same computational fluid dynamics code (Code_Saturne), therefore using the same wind and turbulence fields for both. The Lagrangian stochastic model used in this work is the simplified Langevin model (SLM) of Pope (1985, 2000) and pertains to the approaches referred to as probability density function methods. This model has been extensively used in turbulent combustion or multiphase flows, but to our knowledge, it has not been used in atmospheric dispersion applications. First, we show that the SLM respects the well-mixed criterion. Then, we validate the model in the case of a continuous point release with uniform mean wind speed and turbulent diffusivity. Finally, we validate the model with an experimental campaign involving a stably stratified surface layer.
机译:拉格朗日大气分散模型包括跟踪污染物颗粒的轨迹排放到大气中。 在本文中,该目的是将拉格朗日和欧拉分散模型与同一计算流体动力学代码(Code_saturne)进行比较,因此使用相同的风和湍流场。 这项工作中使用的拉格朗日随机模型是教皇(1985,2000)的简化Langevin模型(SLM),并涉及称为概率密度函数方法的方法。 该模型已广泛用于湍流燃烧或多相流,但对于我们的知识,它尚未用于大气分散应用。 首先,我们表明SLM尊重良好的混合标准。 然后,我们在具有均匀平均风速和湍流扩散率的连续点释放的情况下验证模型。 最后,我们用涉及稳定分层的表面层的实验活动验证模型。

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