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dc.contributor.authorHaider, Q.en
dc.contributor.authorSabir, Z.en
dc.contributor.authorHendy, A. S.en
dc.contributor.authorSadat, R.en
dc.contributor.authorR. , Ali, M.en
dc.date.accessioned2024-04-05T16:36:55Z-
dc.date.available2024-04-05T16:36:55Z-
dc.date.issued2023-
dc.identifier.citationHaider, Q, Sabir, Z, Hendy, AS, Sadat, R & R. Ali, M 2023, 'Viscosity and thermal conductivity on magneto-hydrodynamic chemically reacting nanofluid over a vertical cone embedded in porous medium', Case Studies in Thermal Engineering, Том. 52, 103766. https://doi.org/10.1016/j.csite.2023.103766harvard_pure
dc.identifier.citationHaider, Q., Sabir, Z., Hendy, A. S., Sadat, R., & R. Ali, M. (2023). Viscosity and thermal conductivity on magneto-hydrodynamic chemically reacting nanofluid over a vertical cone embedded in porous medium. Case Studies in Thermal Engineering, 52, [103766]. https://doi.org/10.1016/j.csite.2023.103766apa_pure
dc.identifier.issn2214-157X-
dc.identifier.otherFinal2
dc.identifier.otherAll Open Access, Gold3
dc.identifier.otherhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85178070820&doi=10.1016%2fj.csite.2023.103766&partnerID=40&md5=8a707229a59e1e96493c21747074abe71
dc.identifier.otherhttps://doi.org/10.1016/j.csite.2023.103766pdf
dc.identifier.urihttp://elar.urfu.ru/handle/10995/130996-
dc.description.abstractThe purpose of current investigations is to explore the impacts of variable fluid properties on the vertical cone embedded in a porous medium for reduced skin friction rates and enhanced mass transfer rates. The flow governing systems of highly nonlinear partial differential equations is obtained by using the Rivilin Erickson tensor along with the theory of boundary layer approximation. Buongiorno model is analyzed using the impacts of variable properties of the fluid based on the nanofluids characteristics. The present model has been numerically tackled using the boundary value problem technique in MATLAB and the criterion for convergence or tolerance is taken as 10−6. The outcome of present study shows the variable thermal conductivity, which is improved by using the heat transfer coefficient and reduces the skin friction based on the nanofluid. The Sherwood number is also increased under the Thermophoresis diffusion and the Brownian motion. Momentum boundary layer has expanded under the adjustable thermal conductivity along with the viscidity parameter. It is stated that these investigations have not been found by using the boundary value algorithm to solve the utilizing Buongiorno nanofluid model over the vertical cone based on the permeable medium. © 2023 The Author(s)en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherElsevier Ltden
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.rightscc-by-nc-ndother
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/unpaywall
dc.sourceCase Studies in Thermal Engineering2
dc.sourceCase Studies in Thermal Engineeringen
dc.subjectBUONGIORNO NANOFLUID MODELen
dc.subjectMAGNETO-HYDRODYNAMIC AND RADIATIONen
dc.subjectPOROUS MEDIUMen
dc.subjectVARIABLE THERMAL CONDUCTIVITY AND VISCOSITYen
dc.subjectVERTICAL CONEen
dc.subjectBOUNDARY LAYER FLOWen
dc.subjectBOUNDARY LAYERSen
dc.subjectBOUNDARY VALUE PROBLEMSen
dc.subjectBROWNIAN MOVEMENTen
dc.subjectDIFFUSION IN LIQUIDSen
dc.subjectFRICTIONen
dc.subjectHEAT TRANSFERen
dc.subjectMAGNETOHYDRODYNAMICSen
dc.subjectNANOFLUIDICSen
dc.subjectNONLINEAR EQUATIONSen
dc.subjectPARTIAL DIFFERENTIAL EQUATIONSen
dc.subjectSKIN FRICTIONen
dc.subjectVISCOSITYen
dc.subject'CURRENTen
dc.subjectBUONGIORNO NANOFLUID MODELen
dc.subjectMAGNETO HYDRODYNAMICSen
dc.subjectMAGNETO-HYDRODYNAMIC AND RADIATIONen
dc.subjectMASS TRANSFER RATEen
dc.subjectNANOFLUIDSen
dc.subjectPOROUS MEDIUMen
dc.subjectVARIABLE FLUID PROPERTIESen
dc.subjectVARIABLE THERMAL CONDUCTIVITY AND VISCOSITIESen
dc.subjectVERTICAL CONESen
dc.subjectPOROUS MATERIALSen
dc.titleViscosity and thermal conductivity on magneto-hydrodynamic chemically reacting nanofluid over a vertical cone embedded in porous mediumen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.type|info:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.1016/j.csite.2023.103766-
dc.identifier.scopus85178070820-
local.contributor.employeeHaider, Q., Department of Mathematics, University of Gujrat, Gujrat, 50700, Pakistanen
local.contributor.employeeSabir, Z., Department of Computer Science and Mathematics, Lebanese American University, Beirut, Lebanonen
local.contributor.employeeHendy, A.S., Department of Computational Mathematics and Computer Science, Institute of Natural Sciences and Mathematics, Ural Federal University, 19 Mira St., Yekaterinburg, 620002, Russian Federationen
local.contributor.employeeSadat, R., Department of Mathematics, Faculty of Engineering, Zagazig University, Zagazig, Egypten
local.contributor.employeeR. Ali, M., Basic Engineering Science Department, Benha Faculty of Engineering, Benha University, Banha, Egypt, Faculty of Engineering and Technology, Future University in Egypt, New Cairo, 11835, Egypten
local.volume52-
dc.identifier.wos001126071000001-
local.contributor.departmentDepartment of Mathematics, University of Gujrat, Gujrat, 50700, Pakistanen
local.contributor.departmentDepartment of Computer Science and Mathematics, Lebanese American University, Beirut, Lebanonen
local.contributor.departmentDepartment of Computational Mathematics and Computer Science, Institute of Natural Sciences and Mathematics, Ural Federal University, 19 Mira St., Yekaterinburg, 620002, Russian Federationen
local.contributor.departmentDepartment of Mathematics, Faculty of Engineering, Zagazig University, Zagazig, Egypten
local.contributor.departmentBasic Engineering Science Department, Benha Faculty of Engineering, Benha University, Banha, Egypten
local.contributor.departmentFaculty of Engineering and Technology, Future University in Egypt, New Cairo, 11835, Egypten
local.identifier.pure49272357-
local.description.order103766-
local.identifier.eid2-s2.0-85178070820-
local.identifier.wosWOS:001126071000001-
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