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    AuthorLi, Erqiang (1)Sprittles, James E. (1)Thoroddsen, Sigurdur T (1)Vakarelski, Ivan Uriev (1)DepartmentClean Combustion Research Center (1)High-Speed Fluids Imaging Laboratory (1)Mechanical Engineering Program (1)Physical Sciences and Engineering (PSE) Division (1)JournalPowder Technology (1)KAUST Acknowledged Support Unit
    Competitive Research Funds (1)
    KAUST Grant Number7000000028 (1)
    KUK-C1-013-04 (1)
    PublisherElsevier BV (1)SubjectDrainage (1)Drop impact (1)High-speed imaging (1)Maximum deformation (1)View MoreTypeArticle (1)Year (Issue Date)
    2013 (1)
    Item AvailabilityMetadata Only (1)

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    Drop spreading and penetration into pre-wetted powders

    Marston, Jeremy; Sprittles, James E.; Zhu, Y.; Li, Erqiang; Vakarelski, Ivan Uriev; Thoroddsen, Sigurdur T (Powder Technology, Elsevier BV, 2013-05) [Article]
    We present results from an experimental study of the impact of liquid drops onto powder beds which are pre-wetted with the impacting liquid. Using high-speed video imaging, we study both the dynamics of the initial spreading regime and drainage times once the drop has reached its maximum spread on the surface. During the initial spreading stage, we compare our experimental data to a previously developed model which incorporates imbibition into the spreading dynamics and observe reasonable agreement. We find that the maximum spread is a strong function of the moisture content in the powder bed and that the total time from impact to complete drainage is always shorter than that for dry powder. Our results indicate that there is an optimum moisture content (or saturation) which leads to the fastest penetration. We use simple scaling arguments which also identify an optimum moisture content for fastest penetration, which agrees very well with the experimental result. © 2013 Elsevier B.V.
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