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Collection efficiency of round-nozzle impactors with horizontal annular inlet

Authors
Kim, Moon-KyungKim, Won-GeunLee, Kwan-SooYook, Se-Jin
Issue Date
Aug-2014
Publisher
Pergamon Press Ltd.
Keywords
Inertial impactor; Collection efficiency; Stokes number; Round nozzle; Horizontal annular inlet
Citation
Journal of Aerosol Science, v.74, pp 63 - 69
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
Journal of Aerosol Science
Volume
74
Start Page
63
End Page
69
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/159383
DOI
10.1016/j.jaerosci.2014.04.007
ISSN
0021-8502
1879-1964
Abstract
In this study, a horizontal annular inlet was applied to a round-nozzle impactor in an effort to reduce the cut-off diameter. The collection efficiencies of round-nozzle impactors with either a vertical inlet, which has conventionally been used, or a horizontal annular inlet were investigated both numerically and experimentally. For the comparison, the nozzle width, nozzle-to-plate distance, impaction plate diameter, and flow rate of the aerosol drawn into the impactor were set the same for both the vertical inlet impactor and horizontal annular inlet impactor. A parametric study was performed to analyze the effects of the width of the horizontal annular inlet and nozzle throat length on the collection efficiency of round-nozzle impactors with nozzle Reynolds numbers ranging from 500 to 2600. By replacing the vertical inlet with the horizontal annular inlet, the square root of the Stokes number corresponding to the cut-off diameter could be reduced by approximately 30%. In other words, the value of (Stk(50))(1/2) was decreased from 0.49 to 0.32 or 0.33 when considering the effect of gravity.
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