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Numerical simulation for nucleated vehicle exhaust particulate matters via the temom/les method

机译:用Temp / les方法对有核车辆尾气颗粒物进行数值模拟

摘要

The combination of large eddy simulation (LES) and newly proposed Taylor-series expansion method of moments (TEMOM) is performed for simulating particulate matters emitted from vehicle engine tailpipe. The momentum, heat and mass transfer, binary homogeneous nucleation, Brownian coagulation, Brownian and turbulent diffusion, condensation and thermophoresis are simultaneously taken into account. Good agreements between the experimental and simulated results with respect to the pollutant dispersion are obtained. Compared to other published methods, the present TEMOM requires the least computational time with much accuracy for predicting nanoparticle dynamics. The instantaneous results show that large eddies dominate the evolution of particulate dynamics as exhaust develops, while binary homogeneous sulfuric-water nucleation mainly appears at the interface between the exhaust and ambient cool gases. The increasing of fuel sulfur content and relative humidity or the decreasing of environment temperature leads to an increase in particulate product rate, while volume-averaged particle diameter increases with increasing fuel sulfur content and environment temperature. The variation of geometric standard deviation suggests the nucleated particles eventually approach the asymptotic distribution in the dilution atmosphere, and this distribution is independent of the fuel sulfur content. The variance of upstream turbulence intensity significantly affects the evolution of particulate matters inside the plume.
机译:将大涡模拟(LES)与新提出的泰勒矩矩展开方法(TEMOM)结合起来,以模拟从车辆发动机排气管排放的颗粒物。同时考虑了动量,传热和传质,二元均相成核,布朗尼凝聚,布朗尼和湍流扩散,冷凝和热泳。实验和模拟结果在污染物扩散方面取得了良好的一致性。与其他已发布的方法相比,当前的TEMOM需要最少的计算时间,并且可以非常准确地预测纳米粒子的动力学。瞬时结果表明,随着排气的发展,大涡旋主导着颗粒动力学的发展,而二元均相的硫-水成核作用主要出现在排气与周围冷气之间的界面处。燃料硫含量和相对湿度的增加或环境温度的降低导致颗粒产物速率的增加,而体积平均粒径随燃料硫含量和环境温度的增加而增加。几何标准偏差的变化表明,成核颗粒最终在稀释气氛中接近渐近分布,并且该分布与燃料硫含量无关。上游湍流强度的变化显着影响羽流内部颗粒物的演变。

著录项

  • 作者

    Yu M; Lin J; Chan T;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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