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Investigation Of Electroosmosis Flow Of Copper Nanoparticles With Heat Transfer Due To Metachronal Rhythm

dc.authorid Zeb, Dr. Muhammad/0009-0009-2154-5361
dc.authorscopusid 56888518500
dc.authorscopusid 24176419000
dc.authorscopusid 15047920200
dc.authorscopusid 7005872966
dc.authorscopusid 55582691100
dc.authorscopusid 58724239000
dc.authorwosid Imran, Ali/Jqv-7760-2023
dc.authorwosid Baleanu, Dumitru/B-9936-2012
dc.authorwosid Zeb, Muhammad/Hhn-2463-2022
dc.contributor.author Imran, Ali
dc.contributor.author Waheed, Asif
dc.contributor.author Javeed, Shumaila
dc.contributor.author Baleanu, Dumitru
dc.contributor.author Zeb, Muhammad
dc.contributor.author Ahmad, Sohail
dc.contributor.authorID 56389 tr_TR
dc.contributor.other Matematik
dc.date.accessioned 2024-03-19T12:47:18Z
dc.date.available 2024-03-19T12:47:18Z
dc.date.issued 2021
dc.department Çankaya University en_US
dc.department-temp [Imran, Ali; Waheed, Asif; Zeb, Muhammad; Ahmad, Sohail] COMSATS Univ Islamabad, Dept Math, Attock Campus, Attock, Pakistan; [Javeed, Shumaila] COMSATS Univ Islamabad, Dept Math, Islamabad Campus, Islamabad, Pakistan; [Baleanu, Dumitru] Cankaya Univ, Dept Math, Ankara, Turkey; [Baleanu, Dumitru] Inst Space Sci, Magurele, Romania en_US
dc.description Zeb, Dr. Muhammad/0009-0009-2154-5361 en_US
dc.description.abstract A mathematical model is explored to establish the electroosmotic flow for Cu -water nanoliquids within a ciliated symmetric micro-channel, the flow is established with aid of ciliary motion and axial pressure gradient. Nanofluid comprise of Cu as a nanofluid particles and water as base fluid. Maxwell-Garnelt model is exploited for viscosity and thermal conductivity of nanoliquid. Magnetic field is applied in the transverse direction and external electric field is enforced in the axial direction. Equations of motion are simplified for nanofluid flow in the micro channel by employing low Reynolds number and long wavelength approximation theory. Crucial exact analytical expression are gathered for electric potential, temperature profile, axial velocity, volume flux, pressure gradient, stream function, and result for pressure rise per wavelength explored numerically. The influence of crucial flow parameters on, flow behaviour, pumping phenomena, and temperature profile are thoroughly investigated. en_US
dc.description.woscitationindex Science Citation Index Expanded
dc.identifier.citation Imran, Ali;...et.al. (2021). "Investigation Of Electroosmosis Flow Of Copper Nanoparticles With Heat Transfer Due To Metachronal Rhythm", Thermal Science, Vol.25, No.SI2, 193-198. en_US
dc.identifier.doi 10.2298/TSCI21S2193I
dc.identifier.endpage S198 en_US
dc.identifier.issn 0354-9836
dc.identifier.issn 2334-7163
dc.identifier.scopus 2-s2.0-85122238387
dc.identifier.scopusquality Q3
dc.identifier.startpage S193 en_US
dc.identifier.uri https://doi.org/10.2298/TSCI21S2193I
dc.identifier.volume 25 en_US
dc.identifier.wos WOS:000734996500009
dc.identifier.wosquality Q4
dc.institutionauthor Baleanu, Dumitru
dc.language.iso en en_US
dc.publisher Vinca inst Nuclear Sci en_US
dc.relation.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı en_US
dc.rights info:eu-repo/semantics/openAccess en_US
dc.scopus.citedbyCount 10
dc.subject Ciliated Micro-Channel en_US
dc.subject Electric Field en_US
dc.subject Magnetic Field en_US
dc.subject Cu-Water Nanofluids en_US
dc.title Investigation Of Electroosmosis Flow Of Copper Nanoparticles With Heat Transfer Due To Metachronal Rhythm tr_TR
dc.title Investigation of Electroosmosis Flow of Copper Nanoparticles With Heat Transfer Due To Metachronal Rhythm en_US
dc.type Article en_US
dc.wos.citedbyCount 11
dspace.entity.type Publication
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relation.isAuthorOfPublication.latestForDiscovery f4fffe56-21da-4879-94f9-c55e12e4ff62
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relation.isOrgUnitOfPublication.latestForDiscovery 26a93bcf-09b3-4631-937a-fe838199f6a5

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