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首页> 外文期刊>Journal of the air & waste management association >Simulation of the evolution of particle size distributions in a vehicle exhaust plume with unconfined dilution by ambient air
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Simulation of the evolution of particle size distributions in a vehicle exhaust plume with unconfined dilution by ambient air

机译:模拟汽车尾气中粒径分布的演变,环境空气无限稀释

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摘要

Over the past several years, numerous studies have linked ambient concentrations of particulate matter (PM) to adverse health effects, and more recent studies have identified PM size and surface area as important factors in determining the health effects of PM. This study contributes to a better understanding of the evolution of particle size distributions in exhaust plumes with unconfined dilution by ambient air. It combines computational fluid dynamics (CFD) with an aerosol dynamics model to examine the effects of different streamlines in an exhaust plume, ambient particle size distributions, and vehicle and wind speed on the particle size distribution in an exhaust plume. CFD was used to calculate the flow field and gas mixing for unconfined dilution of a vehicle exhaust plume, and the calculated dilution ratios were then used as input to the aerosol dynamics simulation. The results of the study show that vehicle speed affected the particle size distribution of an exhaust plume because increasing vehicle speed caused more rapid dilution and inhibited coagulation. Ambient particle size distributions had an effect on the smaller sized particles (similar to 10 nm range under some conditions) and larger sized particles (> 2 mu m) of the particle size distribution. The ambient air particle size distribution affects the larger sizes of the exhaust plume because vehicle exhaust typically contains few particles larger than 2 mu m. Finally, the location of a streamline in the exhaust plume had little effect on the particle size distribution; the particle size distribution along any streamline at a distance x differed by less than 5 % from the particle size distributions along any other streamline at distance x.
机译:在过去的几年中,许多研究已将颗粒物(PM)的环境浓度与不良健康影响联系起来,最近的研究已将PM大小和表面积确定为决定PM健康影响的重要因素。这项研究有助于更好地理解排气羽流中粒径分布的演变,并不受环境空气的无限稀释。它将计算流体动力学(CFD)与气溶胶动力学模型相结合,以检查排气羽流中不同流线,环境粒径分布以及车辆和风速对排气羽流中粒径分布的影响。 CFD用于计算车辆排气羽流的无限制稀释的流场和气体混合,然后将计算出的稀释比用作气溶胶动力学模拟的输入。研究结果表明,车速影响排气羽流的粒径分布,因为提高车速会导致更快的稀释并抑制凝结。环境粒度分布对较小粒度的颗粒(在某些条件下类似于10 nm范围)和较大粒度的颗粒(> 2μm)具有影响。环境空气颗粒尺寸分布会影响较大的排气羽流,因为汽车排气中通常很少有大于2微米的颗粒。最后,流线在排气羽流中的位置对粒度分布影响不大。沿距离x的任何流线的粒度分布与沿距离x的任何其他流线的粒度分布的差异小于5%。

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