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dc.contributor.authorZubarev, A. Y.en
dc.contributor.authorRaboisson-Michel, M.en
dc.contributor.authorVerger-Dubois, G.en
dc.contributor.authorKuzhir, P.en
dc.date.accessioned2022-05-12T08:23:34Z-
dc.date.available2022-05-12T08:23:34Z-
dc.date.issued2020-
dc.identifier.citationTo the Theory of Ferrohydrodynamic Circulating Flow Induced by Running Magnetic Field / A. Y. Zubarev, M. Raboisson-Michel, G. Verger-Dubois et al. // European Physical Journal: Special Topics. — 2020. — Vol. 229. — Iss. 19-20. — P. 2961-2966.en
dc.identifier.issn1951-6355-
dc.identifier.otherAll Open Access, Green3
dc.identifier.urihttp://elar.urfu.ru/handle/10995/111813-
dc.description.abstractWe present results of theoretical modeling of macroscopic circulating flow induced in a drop of ferrofluid by oscillating running magnetic field. The drop is placed in a narrow flat channel filled by a nonmagnetic liquid. The aim of this work is development of a scientific basis for a progressive method of address drug delivery to thrombus clots in blood vessels with the help of the magnetically induced circulation flow. Our results show that the oscillating running field allows inducing the carrier fluid flow with velocity amplitude 1–10 cm/s. This is the range of values, presenting interest from the point of view of the drug delivery. © 2020, EDP Sciences, Springer-Verlag GmbH Germany, part of Springer Nature.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherSpringer Science and Business Media Deutschland GmbHen1
dc.publisherSpringer Science and Business Media LLCen
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourceEur. Phys. J.: Spec. Top.2
dc.sourceEuropean Physical Journal: Special Topicsen
dc.titleTo the Theory of Ferrohydrodynamic Circulating Flow Induced by Running Magnetic Fielden
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/submittedVersionen
dc.identifier.doi10.1140/epjst/e2020-000119-3-
dc.identifier.scopus85096179687-
local.contributor.employeeZubarev, A.Y., Theoretical and Mathematical Physics Department, Institute of Natural Sciences and Mathematics, Ural Federal University, Lenin Avenue 51, Ekaterinburg, 620083, Russian Federation, M.N. Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences, Ekaterinburg, 620108, Russian Federation; Raboisson-Michel, M., Université Côte d’Azur, CNRS UMR 7010, Institute of Physics of Nice, Parc Valrose, 06108 Nice, France, Axlepios Biomedical – 1ere Avenue 5e rue, Carros, 06510, France; Verger-Dubois, G., Axlepios Biomedical – 1ere Avenue 5e rue, Carros, 06510, France; Kuzhir, P., Université Côte d’Azur, CNRS UMR 7010, Institute of Physics of Nice, Parc Valrose, 06108 Nice, Franceen
local.description.firstpage2961-
local.description.lastpage2966-
local.issue19-20-
local.volume229-
dc.identifier.wos000590491000009-
local.contributor.departmentTheoretical and Mathematical Physics Department, Institute of Natural Sciences and Mathematics, Ural Federal University, Lenin Avenue 51, Ekaterinburg, 620083, Russian Federation; M.N. Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences, Ekaterinburg, 620108, Russian Federation; Université Côte d’Azur, CNRS UMR 7010, Institute of Physics of Nice, Parc Valrose, 06108 Nice, France; Axlepios Biomedical – 1ere Avenue 5e rue, Carros, 06510, Franceen
local.identifier.pure20134702-
local.identifier.eid2-s2.0-85096179687-
local.identifier.wosWOS:000590491000009-
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