Publication:
Impact and spreading of a microdroplet on a solid wall

dc.contributor.coauthorN/A
dc.contributor.departmentDepartment of Mechanical Engineering
dc.contributor.kuauthorMuradoğlu, Metin
dc.contributor.kuauthorTaşoğlu, Savaş
dc.contributor.schoolcollegeinstituteCollege of Engineering
dc.date.accessioned2024-11-09T23:28:50Z
dc.date.issued2009
dc.description.abstractImpact and spreading of a viscous micro droplet on dry solid surfaces are studied computationally using a finite-difference/front-tracking method. The problem is motivated by single cell epitaxy developed for printing biological cells on a solid substrate using ink-jet printer technology. In this study, we consider impact and spreading of a simple droplet on a partially wetting substrate as a first step in developing a complete compound droplet model for the single cell epitaxi. The numerical method is general and can treat non-wetting, partially wetting and fully wetting cases but the focus here is placed on partially wetting substrates. The contact angle is specified dynamically using the empirical correlation given by Kistler (1993). In addition, a precursive film model is also used especially for the highly wettable cases, i.e., the static contact angle is smaller than 30° due to numerical difficulty of resolving thin liquid later penetrating into surrounding gas near the solid surface. The numerical method is first applied to simple droplet spreading and the results are compared with experimental data of Sikalo et al. (2005). Then the effects of governing non-dimensional numbers on the spreading rate, apparent contact angle and deformation of the droplet are investigated. Finally a few preliminary results are presented for the impact and spreading of a compound microdroplet on a partially wetting surface.
dc.description.indexedbyWOS
dc.description.indexedbyScopus
dc.description.issuePART B
dc.description.openaccessYES
dc.description.publisherscopeInternational
dc.description.sponsoredbyTubitakEuN/A
dc.description.sponsorshipASME
dc.identifier.doi10.1115/ICNMM2009-82172
dc.identifier.isbn9780-7918-4349-9
dc.identifier.quartileN/A
dc.identifier.scopus2-s2.0-77952842205
dc.identifier.urihttps://doi.org/10.1115/ICNMM2009-82172
dc.identifier.urihttps://hdl.handle.net/20.500.14288/11957
dc.keywordsApparent contact angle
dc.keywordsBiological cells
dc.keywordsCompound droplet
dc.keywordsDroplet spreading
dc.keywordsDry solids
dc.keywordsEmpirical correlations
dc.keywordsExperimental data
dc.keywordsFilm model
dc.keywordsInk-jet printer
dc.keywordsKistler
dc.keywordsMicro droplets
dc.keywordsNon-wetting
dc.keywordsSingle cells
dc.keywordsSolid substrates
dc.keywordsSolid surface
dc.keywordsSolid wall
dc.keywordsSpreading rate
dc.keywordsStatic contact angle
dc.keywordsThin liquids
dc.keywordsTracking method
dc.keywordsContact angle
dc.keywordsCrystal growth
dc.keywordsDrop breakup
dc.keywordsDrop formation
dc.keywordsInk jet printers
dc.keywordsInk jet printing
dc.keywordsMicrochannels
dc.keywordsNumber theory
dc.keywordsNumerical methods
dc.keywordsSubstrates
dc.keywordsWetting
dc.language.isoeng
dc.publisherEurographics Association
dc.relation.ispartofProceedings of the 7th International Conference on Nanochannels, Microchannels, and Minichannels 2009, ICNMM2009
dc.subjectMechanical engineering
dc.titleImpact and spreading of a microdroplet on a solid wall
dc.typeConference Proceeding
dspace.entity.typePublication
local.contributor.kuauthorMuradoğlu, Metin
local.contributor.kuauthorTaşoğlu, Savaş
local.publication.orgunit1College of Engineering
local.publication.orgunit2Department of Mechanical Engineering
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relation.isOrgUnitOfPublication.latestForDiscoveryba2836f3-206d-4724-918c-f598f0086a36
relation.isParentOrgUnitOfPublication8e756b23-2d4a-4ce8-b1b3-62c794a8c164
relation.isParentOrgUnitOfPublication.latestForDiscovery8e756b23-2d4a-4ce8-b1b3-62c794a8c164

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