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dc.contributor.advisorLemley, Evan
dc.contributor.authorDuffle, Willy
dc.date.accessioned2020-07-09T14:41:41Z
dc.date.available2020-07-09T14:41:41Z
dc.date.issued2017
dc.identifier.other(AlmaMMSId)9982542084802196
dc.identifier.urihttps://hdl.handle.net/11244/325136
dc.description.abstractWhile laminar flow heat transfer and mixing in microfluidic geometries has been investigated experimentally, as has the effect of geometry-induced turbulence in microfluidic flow (it is well documented that turbulence increases convective heat transfer in macrofluidic flow), little literature exists investigating the effect of electrokinetically-induced turbulence on heat transfer at the micro scale. Successful research in this area could be invaluable in creating more efficient heat exchangers for emerging microscale electronics as well as to fields requiring greater control of mixing in microfluidic devices.
dc.rightsAll rights reserved by the author, who has granted UCO Chambers Library the non-exclusive right to share this material in its online repositories. Contact UCO Chambers Library's Digital Initiatives Working Group at diwg@uco.edu for the permission policy on the use, reproduction or distribution of this material.
dc.subject.lcshElectrokinetics
dc.subject.lcshMicrofluidics
dc.subject.lcshFluid dynamics
dc.subject.lcshTurbulence
dc.subject.lcshHeat
dc.titleElectrokinetically forced turbulence in microfluidic flow.
dc.typeAcademic theses
dc.contributor.committeeMemberMiller, Ronald
dc.contributor.committeeMemberAbu-Abed, Alaeddin
dc.thesis.degreeM.S., Engineering Physics - Mechanical Engineering
dc.subject.keywordsCOMSOL
dc.subject.keywordsEntropy
dc.subject.keywordsHeat transfer
dc.subject.keywordsMicrofludic flow
dc.subject.keywordsMixing
dc.subject.keywordsTurbulence
dc.identifier.oclc(OCoLC)on1000301342
uco.groupUCO - Graduate Works and Theses::UCO - Theses
thesis.degree.grantorJackson College of Graduate Studies.


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