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Diesel-exhaust aerosol dynamics from the tailpipe to the dilution tunnel

机译:从排气管到稀释通道的柴油机排气气溶胶动力学

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摘要

We study, experimentally and theoretically, the dynamics of non-volatile particles emitted from a diesel EURO 3 light-duty vehicle along the transfer tube that conducts exhaust fumes from the tailpipe to the dilution tunnel. Particle agglomeration, diffusional and thermophoretic transport are modeled. For turbulent, but moderate, Reynolds numbers and under steady-state conditions we map the combustion-generated nanoparticle dynamics onto a one-dimensional dynamics of aerosol particles in an ageing chamber. The aggregate fractal dimension, determined self-consistently by comparing mass distributions, varied from 2 to 2.3. The relative importance of aerosol processes is estimated by defining appropriate characteristic time scales. Agglomeration and convection by the bulk motion of the fluid are the dominant processes for inlet number concentrations of the order of 10~8 particles/cm~3 and transfer-tube lengths of 6-9 m. Thermophoretic losses are calculated to be non-negligible. For modern vehicles with particulate filters agglomeration is estimated to be negligible, whereas thermophoresis may be significant.
机译:我们在实验和理论上研究了柴油EURO 3轻型汽车沿传输管排放的非挥发性颗粒的动力学,该传输管将废气从尾管引导至稀释隧道。对颗粒的团聚,扩散和热泳运输进行了建模。对于湍流但适中的雷诺数,在稳态条件下,我们将燃烧生成的纳米粒子动力学映射到老化室内的气溶胶粒子的一维动力学。通过比较质量分布自洽确定的总分形维数从2到2.3不等。气溶胶过程的相对重要性通过定义适当的特征时间尺度来估算。流体整体运动引起的团聚和对流是入口数浓度为10〜8个粒子/ cm〜3数量级和传输管长度为6-9 m的主要过程。经计算,热泳损失不可忽略。对于带有微粒过滤器的现代车辆,聚结估计可以忽略不计,而热泳可能很重要。

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