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Experimental and numerical study of the dispersion of motor vehicle pollutants under idle condition

机译:怠速条件下机动车污染物扩散的实验与数值研究

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The aim of the work presented here is to study experimentally and numerically the dispersion characteristics of vehicular exhaust plume at an idle condition in an idealized and simplified environment. The gaseous and particulate concentrations in the exhaust plume of three idling motor vehicles were measured in an isolated environment under calm weather conditions. Despite the difference in the initial concentrations, the pollutants decayed exponentially in all directions. The CFD code PHOENICS 3.3, with the k-ε eddy dissipation sub-model, was used for the numerical simulation. The simulated results match very well with the experimental results close to the source of emission but decay to the ambient concentrations much slower. The effects of the initial emission concentration, exit velocity, exit direction and crosswind intensity have been investigated parametrically. The initial pollutant concentration will increase the local concentrations but the pattern of dispersion remains the same. The exit velocity will increase the momentum of the jet, resulting in a deeper penetration downstream. The exit angle has a stronger influence on pollutant dispersion than both initial pollutant concentration and exit velocity. When the exit angle is 15°, the pollutants tend to spread on the ground region. Crosswind shows a significant effect on the dispersion of the exhaust plume also. It will divert the plume to disperse in the same direction of the wind with limited penetration in the downstream direction.
机译:这里提出的工作的目的是通过实验和数值研究在理想化和简化环境下的空转条件下车辆尾气羽流的扩散特性。在安静的天气条件下,在隔离的环境中测量了三辆空转汽车的尾气羽流中的气体和颗粒物浓度。尽管初始浓度有所不同,但污染物在所有方向上均呈指数衰减。带有k-ε涡流耗散子模型的CFD代码PHOENICS 3.3用于数值模拟。模拟结果与接近排放源的实验结果非常吻合,但衰减到环境浓度的速度要慢得多。参数化研究了初始排放浓度,出口速度,出口方向和侧风强度的影响。最初的污染物浓度将增加局部浓度,但分散模式保持不变。出口速度将增加射流的动量,从而导致更深的下游渗透。出口角对污染物扩散的影响要大于初始污染物浓度和出口速度。当出射角为15°时,污染物倾向于在地面区域扩散。侧风对排气羽流的扩散也显示出显着影响。它将使羽流转向并沿风的相同方向散布,并且在下游方向的渗透有限。

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