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dc.contributor.authorZubarev, A. Y.en
dc.contributor.authorChirikov, D.en
dc.contributor.authorMusikhin, A.en
dc.contributor.authorRaboisson-Michel, M.en
dc.contributor.authorVerger-Dubois, G.en
dc.contributor.authorKuzhir, P.en
dc.date.accessioned2022-10-19T05:24:08Z-
dc.date.available2022-10-19T05:24:08Z-
dc.date.issued2021-
dc.identifier.citationNonlinear theory of macroscopic flow induced in a drop of ferrofluid / A. Y. Zubarev, D. Chirikov, A. Musikhin et al. // Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences. — 2021. — Vol. 379. — Iss. 2205. — 20200323.en
dc.identifier.issn1364503X-
dc.identifier.otherhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85111854030&doi=10.1098%2frsta.2020.0323&partnerID=40&md5=8a3e7e4c6f6e0f73d9c7f63e60d912c3link
dc.identifier.urihttp://elar.urfu.ru/handle/10995/118279-
dc.description.abstractWe present results of theoretical modelling of macroscopic circulating flow induced in a cloud of ferrofluid by an oscillating magnetic field. The cloud is placed in a cylindrical channel filled by a nonmagnetic liquid. The aim of this work is the development of a scientific basis for a progressive method of addressing drug delivery to thrombus clots in blood vessels with the help of the magnetically induced circulation flow. Our results show that the oscillating field can induce, inside and near the cloud, specific circulating flows with the velocity amplitude about several millimetres per second. These flows can significantly increase the rate of transport of the molecular non-magnetic impurity in the channel. This article is part of the theme issue 'Transport phenomena in complex systems (part 1)'. © 2021 The Author(s).en
dc.description.sponsorshipAgence Nationale de la Recherche, ANR: ANR-15-IDEX-01; Russian Science Foundation, RSF: 20-12-00031en
dc.description.sponsorshipData accessibility. Source code and numerical data has been provided as electronic supplementary material. Authors’ contributions. A.Y.Z. and P.K. were involved in problem statement and development of the mathematical model. D.C., M.R.M. and G.V.D. were involved in analytical and numerical calculations. Competing interests. We declare we have no competing interests Funding. A.Z. and D.C. thanks the Russian Science Foundation, project 20-12-00031, for the financial support. P.K. and M.R.M. thank the funding of French ‘Agence Nationale de la Recherche’, Project Future Investments UCA JEDI, No. ANR-15-IDEX-01 (projects ImmunoMag and MagFilter) and by the private company Axlepios Biomedical.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherRoyal Society Publishingen
dc.relationinfo:eu-repo/grantAgreement/RSF//20-12-00031en
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourcePhilosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciencesen
dc.subjectFIELD-INDUCED FLOWen
dc.subjectMAGNETIC FLUIDen
dc.subjectOSCILLATING MAGNETIC FIELDen
dc.subjectBLOOD VESSELSen
dc.subjectDRUG DELIVERYen
dc.subjectTRANSPORT PROPERTIESen
dc.subjectCYLINDRICAL CHANNELen
dc.subjectNON-LINEAR THEORYen
dc.subjectNON-MAGNETIC IMPURITIESen
dc.subjectOSCILLATING FIELDSen
dc.subjectOSCILLATING MAGNETIC FIELDSen
dc.subjectTHEORETICAL MODELLINGen
dc.subjectTRANSPORT PHENOMENAen
dc.subjectVELOCITY AMPLITUDESen
dc.subjectOSCILLATING FLOWen
dc.titleNonlinear theory of macroscopic flow induced in a drop of ferrofluiden
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.1098/rsta.2020.0323-
dc.identifier.scopus85111854030-
local.contributor.employeeZubarev, A.Y., Theoretical and Mathematical Physics Department, Institute of Natural Sciences and Mathematics, Ural Federal University, Lenin Ave. 51, Yekaterinburg, 620083, Russian Federation, M.N. Mikheev Institute of Metal Physics, Ural Branch, Russian Academy of Sciences, Yekaterinburg, 620108, Russian Federationen
local.contributor.employeeChirikov, D., Theoretical and Mathematical Physics Department, Institute of Natural Sciences and Mathematics, Ural Federal University, Lenin Ave. 51, Yekaterinburg, 620083, Russian Federationen
local.contributor.employeeMusikhin, A., Theoretical and Mathematical Physics Department, Institute of Natural Sciences and Mathematics, Ural Federal University, Lenin Ave. 51, Yekaterinburg, 620083, Russian Federationen
local.contributor.employeeRaboisson-Michel, M., University Cote d'Azur, Institute of Physics of Nice, CNRS UMR 7010, Parc Valrose, Nice, 06108, France, Axlepios Biomedical, 1 ere Avenue 5e rue, Carros, 06510, Franceen
local.contributor.employeeVerger-Dubois, G., Axlepios Biomedical, 1 ere Avenue 5e rue, Carros, 06510, Franceen
local.contributor.employeeKuzhir, P., University Cote d'Azur, Institute of Physics of Nice, CNRS UMR 7010, Parc Valrose, Nice, 06108, Franceen
local.issue2205-
local.volume379-
dc.identifier.wos000675372800007-
local.contributor.departmentTheoretical and Mathematical Physics Department, Institute of Natural Sciences and Mathematics, Ural Federal University, Lenin Ave. 51, Yekaterinburg, 620083, Russian Federationen
local.contributor.departmentM.N. Mikheev Institute of Metal Physics, Ural Branch, Russian Academy of Sciences, Yekaterinburg, 620108, Russian Federationen
local.contributor.departmentUniversity Cote d'Azur, Institute of Physics of Nice, CNRS UMR 7010, Parc Valrose, Nice, 06108, Franceen
local.contributor.departmentAxlepios Biomedical, 1 ere Avenue 5e rue, Carros, 06510, Franceen
local.identifier.pure22986813-
local.description.order20200323-
local.identifier.eid2-s2.0-85111854030-
local.fund.rsf20-12-00031-
local.identifier.wosWOS:000675372800007-
local.identifier.pmid34275362-
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