首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Numerical Simulation of Atmospheric Flow and Stack Gas Diffusion under Building and Complex Terrain Conditions
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Numerical Simulation of Atmospheric Flow and Stack Gas Diffusion under Building and Complex Terrain Conditions

机译:建筑和复杂地形条件下大气流动和烟囱气体扩散的数值模拟

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摘要

A numerical simulation method has been developed to predict atmospheric flow and stack gas diffusion under a neutral stratification condition, considering the buildings and complex terrain located near and relatively far from a stack, respectively. The turbulence closure technique was used for flow calculation, some calculation grids dn the ground within a plant area were treated as buildings, and stack gas diffusion was predicted using the Lagrangian particle model. The calculated flow and stack gas diffusion results were compared with those obtained by wind tunnel experiments under a neutral stratification condition, and the features of surface concentration, such as the occurrence of downdraft phenomena behind the buildings, were reproduced by both calculations and wind tunnel experiments. Furthermore, effective stack heights were estimated by the comparison of the surface concentration along the plume axis with those under a flat-plate condition, and it was apparent that the effective stack heights estimated by calculations were almost the same as those obtained by wind tunnel experiments.
机译:已经开发了一种数值模拟方法来预测在中性分层条件下的大气流量和烟囱气体扩散,分别考虑了位于烟囱附近和相对远离烟囱的建筑物和复杂地形。使用湍流封闭技术进行流量计算,将植物区域内地面上的一些计算网格视为建筑物,并使用拉格朗日粒子模型预测烟囱气体扩散。将计算得到的流量和烟囱气体扩散结果与在中性分层条件下通过风洞实验获得的结果进行了比较,并且通过计算和风洞实验再现了表面集中的特征,例如建筑物背后的向下气流现象的发生。 。此外,通过比较沿羽流轴的表面浓度与平板条件下的有效烟囱高度,可以估算出有效烟囱高度,显然,通过计算得出的有效烟囱高度几乎与通过风洞实验获得的有效烟囱高度相同。 。

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