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Aerosol cloud propagation in a closed space O. B. Kudryashova, N. V. Korovina, A. A. Pavlenko [et.al.]

Contributor(s): Pavlenko, Anatoliy A | Arkhipov, Vladimir A, 1944- | Goldin, V. D | Muravlev, E. V | Korovina, Nataliya VMaterial type: ArticleArticleSubject(s): аэрозоли | ударно-волновой метод | диффузия | математическое моделированиеGenre/Form: статьи в журналах Online resources: Click here to access online In: Journal of engineering physics and thermophysics Vol. 88, № 3. P. 568-574Abstract: This paper presents the results of an experimental–theoretical investigation of the evolution of a cloud of aerosol particles in a closed space obtained by the shock-wave method. It has been shown that the prevailing propagation mechanism of aerosol particles of diameter 1–7.5 μm is convective diffusion. For the considered class of aerosols, the effective value of the convective diffusion coeffi cient in a closed space has been determined.
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This paper presents the results of an experimental–theoretical investigation of the evolution of a cloud of aerosol particles in a closed space obtained by the shock-wave method. It has been shown that the prevailing propagation mechanism of aerosol particles of diameter 1–7.5 μm is convective diffusion. For the considered class of aerosols, the effective value of the convective diffusion coeffi cient in a closed space has been determined.

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