Please use this identifier to cite or link to this item: http://repositorio.unitau.br/jspui/handle/20.500.11874/2864
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dc.contributor.authorChaves, Carlos Albertopt_BR
dc.contributor.authorLamas, Wendell de Queirozpt_BR
dc.contributor.authorNunes, Luiz Eduardo Nicolini do Patrociniopt_BR
dc.contributor.authorCamargo, Jose Ruipt_BR
dc.contributor.authorGrandinetti, Francisco Josépt_BR
dc.date.accessioned2019-09-12T16:56:47Z-
dc.date.available2019-09-12T16:56:47Z-
dc.date.issued2015-
dc.citation.volume137pt_BR
dc.citation.issue7pt_BR
dc.identifier.doi10.1115/1.4029878pt_BR
dc.identifier.issn0022-1481-
dc.identifier.issn1528-8943-
dc.identifier.urihttp://repositorio.unitau.br/jspui/handle/20.500.11874/2864-
dc.description.abstractThis paper aims to present numerical solutions for the problem of steady natural convection heat transfer by double diffusion from a heated cylinder buried in a saturated porous media exposed to constant uniform temperature and concentration in the cylinder and in the media surface. A square finite domain 3 x 3 and acceptance criterion converged solution with an absolute error under 1 x 10(-3) were considered to obtain results presented. The Patankar's power law for approaching of variables calculated T, C, and phi also was adopted. In order of method validation, an investigation of mesh points number as function of Ra, Le, and N was done. A finite volume scheme has been used to predict the flow, temperature, and concentration distributions at any space from a heat cylinder buried into a fluid-saturated porous medium for a bipolar coordinates system. Examples presented show that the differences in the flow distribution caused not only when Rayleigh number range is considered but also when Lewis number range is considered. Further, increase in the Rayleigh number has a significant influence in the flow distribution when the concentration distribution is considered. Steady natural convection heat transfer by double diffusion from a heated cylinder buried in a saturated porous medium is studied numerically using the finite volume method. To model fluid flow inside the porous medium, the Darcy equation is used. Numerical results are obtained in the form of streamlines, isotherms, and isoconcentrations. The Rayleigh number values range from 0 to 1000, the Lewis number values range from 0 to 100, and the buoyancy ratio number is equal to zero. Calculated values of average heat transfer rates agree reasonably well with values reported in the literature.en
dc.description.provenanceMade available in DSpace on 2019-09-12T16:56:47Z (GMT). No. of bitstreams: 0 Previous issue date: 2015en
dc.description.sponsorshipConselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)pt_BR
dc.languageInglêspt_BR
dc.publisherAsme-
dc.publisher.countryEstados Unidospt_BR
dc.relation.ispartofJournal of Heat Transfer-Transactions of the Asme-
dc.rightsEm verificaçãopt_BR
dc.sourceWeb of Sciencept_BR
dc.subject.otherCylinder Burieden
dc.subject.otherHeat Transferen
dc.subject.otherNatural Convectionen
dc.subject.otherSteady Solutionen
dc.titleNotes on Steady Natural Convection Heat Transfer by Double Diffusion From a Heated Cylinder Buried in a Saturated Porous Mediaen
dc.typeArtigo de Periódicopt_BR
dc.contributor.orcidde Queiroz Lamas, Wendell https://orcid.org/0000-0002-7588-0335pt_BR
dc.contributor.researcheridde Queiroz Lamas, Wendell/J-7540-2012pt_BR
dc.identifier.wosWOS:000357585200014-
dc.description.affiliation[Chaves, Carlos Alberto; Nicolini do Patrocinio Nunes, Luiz Eduardo; Camargo, Jose Rui; Grandinetti, Francisco José] Universidade de Taubaté (Unitau), Dept Mech Engn, BR-12060440 Taubate, SP, Brazil-
dc.description.affiliation[Lamas, Wendell de Queiroz] Univ Sao Paulo, Sch Engn Lorena, Dept Basic Sci & Environm, BR-12602810 Lorena, SP, Brazil-
dc.subject.wosareaThermodynamicsen
dc.subject.wosareaEngineering, Mechanicalen
dc.subject.researchareaThermodynamicsen
dc.subject.researchareaEngineeringen
Appears in Collections:Artigos de Periódicos

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