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Inertial focusing of microparticles in curvilinear microchannels with different curvature angles

dc.contributor.authorOzbey, Arzu
dc.contributor.authorKarimzadehkhouei, Mehrdad
dc.contributor.authorBayrak, Ozgecan
dc.contributor.authorKosar, Ali
dc.date.accessioned2026-06-27T14:12:07Z
dc.date.issued2018
dc.description.abstractInertial microfluidics has become one of the emerging topics due to potential applications such as particle separation, particle enrichment, rapid detection and diagnosis of circulating tumor cells. To realize its integration to such applications, underlying physics should be well understood. This study focuses on particle dynamics in curvilinear channels with different curvature angles (280A degrees, 230A degrees, and 180A degrees) and different channel heights (90, 75, and 60 A mu m) where the advantages of hydrodynamic forces were exploited. We presented the cruciality of the three-dimensional particle position with respect to inertial lift forces and Dean drag force by examining the focusing behavior of 20 A mu m (large), 15 A mu m (medium) and 10 A mu m (small) fluorescent polystyrene microparticles for a wide range of flow rates (400-2700 A mu L/min) and corresponding channel Reynolds numbers. Migration of the particles in lateral direction and their equilibrium positions were investigated in detail. In addition, in the light of our findings, we described two different regions: transition region, where the inner wall becomes the outer wall and vice versa, and the outlet region. The maximum distance between the tight particle stream of 20 and 15 A mu m particles was obtained in the 90 high channel with curvature angle of 280A degrees at Reynolds number of 144 in the transition region (intersection of the turns), which was the optimum condition/configuration for focusing.en
dc.description.sponsorshipSabanci University [IACF15-1444]
dc.description.sponsorshipScience Academy Outstanding Young Investigator Support Program (BAGEP)
dc.description.sponsorshipTurkish Academy of Science (TUBA)
dc.description.sponsorshipOutstanding Young Investigator Support Program (GEBIP)
dc.description.urihttps://doi.org/10.1007/s10404-018-2082-0
dc.identifier.doi10.1007/s10404-018-2082-0
dc.identifier.eissn1613-4990
dc.identifier.issn1613-4982
dc.identifier.issue6
dc.identifier.urihttps://hdl.handle.net/20.500.14981/57883
dc.identifier.volume22
dc.identifier.wos000434309800001
dc.language.isoeng
dc.publisherSPRINGER HEIDELBERG
dc.relation.ispartofMICROFLUIDICS AND NANOFLUIDICS
dc.subjectMicrofluidics
dc.subjectInertial microfluidics
dc.subjectFluorescent particle focusing
dc.subjectCurvilinear channel
dc.subjectSIZE-SELECTIVE SEPARATION
dc.subjectMACROSCOPIC RIGID SPHERES
dc.subjectCIRCULATING TUMOR-CELLS
dc.subjectPOISEUILLE FLOW
dc.subjectMICROFLUIDIC DEVICES
dc.subjectPARTICLE SEPARATION
dc.subjectCONTRACTION/EXPANSION MICROCHANNELS
dc.subjectMICROSPHERES
dc.subjectMIGRATION
dc.subjectFILTRATION
dc.subjectScience & Technology - Other Topics
dc.subjectInstruments & Instrumentation
dc.subjectPhysics
dc.titleInertial focusing of microparticles in curvilinear microchannels with different curvature angles
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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