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Size resolved ultrafine particles emission model - A continues size distribution approach

机译:尺寸解析超细颗粒发射模型-连续尺寸分布方法

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摘要

A new parameterization for size resolved ultrafine particles (UFP) traffic emissions is proposed based on the results of PARTICULATES project (Samaras et al., 2005). It includes the emission factors from the Emission Inventory Guidebook (2006) (total number of particles, #/km/veh), the shape of the corresponding particle size distribution given in PARTICULATES and data for the traffic activity. The output of the model UFPEM (UltraFine Particle Emission Model) is a sum of continuous distributions of ultrafine particles emissions per vehicle type (passenger cars and heavy duty vehicles), fuel (petrol and diesel) and average speed representative for urban, rural and highway driving. The results from the parameterization are compared with measured total number of ultrafine particles and size distributions in a tunnel in Antwerp (Belgium). The measured UFP concentration over the entire campaign shows a close relation to the traffic activity. The modelled concentration is found to be lower than the measured in the campaign. The average emission factor from the measurement is 4.29E +14 #/km/veh whereas the calculated is around 30% lower. A comparison of emission factors with literature is done as well and in overall a good agreement is found. For the size distributions it is found that the measured distributions consist of three modes - Nucleation, Aitken and accumulation and most of the ultrafine particles belong to the Nucleation and the Aitken modes. The modelled Aitken mode (peak around 0.04-0.05 urn) is found in a good agreement both as amplitude of the peak and the number of particles whereas the modelled Nucleation mode is shifted to smaller diameters and the peak is much lower that the observed. Time scale analysis shows that at 300 m in the tunnel coagulation and deposition are slow and therefore neglected. The UFPEM emission model can be used as a source term in dispersion models.
机译:基于PARTICULATES项目的结果(Samaras等人,2005),提出了一种用于尺寸分辨超细颗粒(UFP)交通排放的新参数化方法。它包括《排放清单指南》(2006)中的排放因子(颗粒总数,#/ km / veh),“颗粒”中给出的相应颗粒尺寸分布的形状以及交通活动数据。 UFPEM(超细颗粒物排放模型)模型的输出是每种类型(客车和重型车辆),燃料(汽油和柴油)以及代表城市,农村和高速公路的平均速度的超细颗粒物排放量连续分布的总和驾驶。将参数化的结果与在比利时安特卫普的隧道中测得的超细颗粒总数和尺寸分布进行比较。在整个活动中测得的UFP浓度与交通活动密切相关。发现建模浓度低于活动中测得的浓度。测量的平均排放因子为4.29E +14#/ km / veh,而计算得出的平均排放因子要低30%左右。还完成了排放因子与文献的比较,总体上发现了很好的一致性。对于尺寸分布,发现测量的分布由三种模式组成:成核,艾特肯和累积,并且大多数超细颗粒属于成核和艾特肯模式。发现模拟的Aitken模式(峰值约0.04-0.05 um)在峰的振幅和颗粒数方面都很好地吻合,而模拟的成核模式则转移到较小的直径,并且峰远低于观测值。时标分析表明,在300 m的隧道中,凝结和沉积很慢,因此被忽略了。 UFPEM排放模型可以用作色散模型中的源项。

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  • 来源
    《The Science of the Total Environment》 |2011年第18期|p.3492-3499|共8页
  • 作者单位

    Flemish Institute for Technological Research VITO. Boeretang 200, 2400 Mol, Belgium,University of Antwerp, Bio-engineering department, Groenenborgerlaan 171, Antwerp, Belgium;

    Flemish Institute for Technological Research VITO. Boeretang 200, 2400 Mol, Belgium;

    Flemish Institute for Technological Research VITO. Boeretang 200, 2400 Mol, Belgium,University of Antwerp, Bio-engineering department, Groenenborgerlaan 171, Antwerp, Belgium;

    Flemish Institute for Technological Research VITO. Boeretang 200, 2400 Mol, Belgium,University of Antwerp, Bio-engineering department, Groenenborgerlaan 171, Antwerp, Belgium;

    Flemish Institute for Technological Research VITO. Boeretang 200, 2400 Mol, Belgium,University of Antwerp, Bio-engineering department, Groenenborgerlaan 171, Antwerp, Belgium;

    Flemish Institute for Technological Research VITO. Boeretang 200, 2400 Mol, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    emission model; ultrafine particles (UFP); size distribution; PARTICULATES; tunnel;

    机译:排放模型超细颗粒(UFP);尺寸分布;微粒;隧道;
  • 入库时间 2022-08-17 13:55:27

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