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A Simulation Study on Particle Motion in Diesel Particulate Filter Based on Microcosmic Channel Model Tianjin University

SAE Technical Papers (1906-current) Available online

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Format:
Conference/Event
Author/Creator:
Wu, Wu, author.
Contributor:
Cao, Lijuan
Kong, Xiangjin
Li, Zhijun
shen, Boxi
Zhu, Lingya
Conference Name:
WCX World Congress Experience (2018-04-10 : Detroit, Michigan, United States)
Language:
English
Physical Description:
1 online resource
Place of Publication:
Warrendale, PA SAE International 2018
Summary:
AbstractAs the prime after-treatment device for diesel particulate matter (PM) emission control, Diesel Particulate Filter (DPF) has been widely used for its high particle capture efficiency. In order to study the particle motion and deposition distributions in the DPF inlet channel, a 2-D wall flow DPF microcosmic channel model is built in this paper. The motion trajectories of particles with different sizes are investigated considering the drag force, Brownian motion, gravity and Saffman lift. The effects of the space velocity on particle motion trajectories and deposition distributions inside the inlet channel are evaluated. These results demonstrate that the particle motion trajectories are highly dependent on particle sizes and influenced by the space velocity. The effect of the Brownian motion is obvious for fine particles and suppressed when the space velocity is raised. Moreover, various patterns of particle deposition distributions at the wall surface along the inlet channel are obtained under different particle sizes. The uniformity of particle deposition distributions is closely related to the particle size. With the increase of the particle size, more particles deposit at the rear-part of the inlet channel. Finally, in order to estimate the uniformity magnitude of particle deposition distributions, a uniformity index is proposed and discussed in this paper
Notes:
Vendor supplied data
Publisher Number:
2018-01-0964
Access Restriction:
Restricted for use by site license

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