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dc.contributor.authorAlexandrov, D. V.en
dc.contributor.authorBashkirtseva, I. A.en
dc.contributor.authorRyashko, L. B.en
dc.date.accessioned2020-09-29T09:48:08Z-
dc.date.available2020-09-29T09:48:08Z-
dc.date.issued2018-
dc.identifier.citationAlexandrov, D. V. Nonlinear dynamics of mushy layers induced by external stochastic fluctuations / D. V. Alexandrov, I. A. Bashkirtseva, L. B. Ryashko. — DOI 10.1098/rsta.2017.0216 // Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences. — 2018. — Vol. 2113. — Iss. 376. — 20170216.en
dc.identifier.issn1364-503X-
dc.identifier.otherhttps://royalsocietypublishing.org/doi/pdf/10.1098/rsta.2017.0216pdf
dc.identifier.other1good_DOI
dc.identifier.other87c09c32-1752-4ed0-a446-e158fd031beepure_uuid
dc.identifier.otherhttp://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85040628131m
dc.identifier.urihttp://elar.urfu.ru/handle/10995/90623-
dc.description.abstractThe time-dependent process of directional crystallization in the presence of a mushy layer is considered with allowance for arbitrary fluctuations in the atmospheric temperature and friction velocity. A nonlinear set of mushy layer equations and boundary conditions is solved analytically when the heat and mass fluxes at the boundary between the mushy layer and liquid phase are induced by turbulent motion in the liquid and, as a result, have the corresponding convective form. Namely, the ‘solid phase–mushy layer’ and ‘mushy layer–liquid phase’ phase transition boundaries as well as the solid fraction, temperature and concentration (salinity) distributions are found. If the atmospheric temperature and friction velocity are constant, the analytical solution takes a parametric form. In the more common case when they represent arbitrary functions of time, the analytical solution is given by means of the standard Cauchy problem. The deterministic and stochastic behaviour of the phase transition process is analysed on the basis of the obtained analytical solutions. In the case of stochastic fluctuations in the atmospheric temperature and friction velocity, the phase transition interfaces (mushy layer boundaries) move faster than in the deterministic case. A cumulative effect of these noise contributions is revealed as well. In other words, when the atmospheric temperature and friction velocity fluctuate simultaneously due to the influence of different external processes and phenomena, the phase transition boundaries move even faster. This article is part of the theme issue ‘From atomistic interfaces to dendritic patterns’. 10.1098/rsta.2017.0216en
dc.description.sponsorshipMinistry of Education and Science of the Russian Federation, Minobrnauka: 1.9527.2017/8.9en
dc.description.sponsorshipData accessibility. This article has no additional data. Authors’ contributions. All authors contributed equally to the present research article. Competing interests. We declare we have no competing interests. Funding. This work was supported by the Ministry of Education and Science of the Russian Federation (project no. 1.9527.2017/8.9).en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherRoyal Society Publishingen
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourcePhilosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciencesen
dc.subjectMUSHY LAYERen
dc.subjectNOISEen
dc.subjectNONLINEAR DYNAMICSen
dc.subjectPHASE TRANSITIONSen
dc.subjectSTOCHASTIC FLUCTUATIONSen
dc.subjectATMOSPHERIC TEMPERATUREen
dc.subjectATMOSPHERIC THERMODYNAMICSen
dc.subjectDYNAMICSen
dc.subjectFRICTIONen
dc.subjectLIQUIDSen
dc.subjectNONLINEAR EQUATIONSen
dc.subjectPHASE TRANSITIONSen
dc.subjectSTOCHASTIC SYSTEMSen
dc.subjectTRIBOLOGYen
dc.subjectVELOCITYen
dc.subjectDIRECTIONAL CRYSTALLIZATIONen
dc.subjectMUSHY LAYERen
dc.subjectNOISEen
dc.subjectNOISE CONTRIBUTIONSen
dc.subjectPHASE TRANSITION INTERFACEen
dc.subjectPHASE-TRANSITION BOUNDARYen
dc.subjectSTOCHASTIC FLUCTUATIONen
dc.subjectTIME-DEPENDENT PROCESSen
dc.subjectATMOSPHERIC BOUNDARY LAYERen
dc.titleNonlinear dynamics of mushy layers induced by external stochastic fluctuationsen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.1098/rsta.2017.0216-
dc.identifier.scopus85040628131-
local.affiliationDepartment of Theoretical and Mathematical Physics, Laboratory of Multi-Scale Mathematical Modelling, Ural Federal University, Ekaterinburg, 620000, Russian Federationen
local.contributor.employeeAlexandrov, D.V., Department of Theoretical and Mathematical Physics, Laboratory of Multi-Scale Mathematical Modelling, Ural Federal University, Ekaterinburg, 620000, Russian Federationru
local.contributor.employeeBashkirtseva, I.A., Department of Theoretical and Mathematical Physics, Laboratory of Multi-Scale Mathematical Modelling, Ural Federal University, Ekaterinburg, 620000, Russian Federationru
local.contributor.employeeRyashko, L.B., Department of Theoretical and Mathematical Physics, Laboratory of Multi-Scale Mathematical Modelling, Ural Federal University, Ekaterinburg, 620000, Russian Federationru
local.issue376-
local.volume2113-
dc.identifier.wos000419529400013-
local.identifier.pure6432428-
local.description.order20170216-
local.identifier.eid2-s2.0-85040628131-
local.identifier.wosWOS:000419529400013-
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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