Using the fully developed concentration profile to determine particle penetration in a laminar flow tube

A previously found analytical expression for the fully developed concentration profile of aerosol particles flowing through a circular tube under laminar conditions has been used to derived a simple analytical expression to determine particle penetration. The resulting expression, P=0.846exp(−3.659β...

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Veröffentlicht in:Journal of aerosol science 2016-07, Vol.97, p.34-37
Hauptverfasser: Alonso, Manuel, Carsí, Manuel, Huang, Cheng-Hsiung
Format: Artikel
Sprache:eng
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Zusammenfassung:A previously found analytical expression for the fully developed concentration profile of aerosol particles flowing through a circular tube under laminar conditions has been used to derived a simple analytical expression to determine particle penetration. The resulting expression, P=0.846exp(−3.659β) where β is the dimensionless diffusion coefficient of the particle, has been compared satisfactorily with the well-known Gormley–Kennedy equation even for values of β as low as 0.04 in spite that, in principle, the approximate expression for the fully developed concentration profile is only valid for β>0.2. •New analytical expression for particle penetration through laminar flow tube.•Excellent agreement with Gormle–Kennedy series solution.•Valid for dimensionless diffusion coefficient greater than 0.04.
ISSN:0021-8502
1879-1964
DOI:10.1016/j.jaerosci.2016.04.002