Investigation of the effect of MHD slip flow on heat transfer between parallel plates with second-order slip boundary conditions
Küçük Resim Yok
Tarih
2021
Yazarlar
Dergi Başlığı
Dergi ISSN
Cilt Başlığı
Yayıncı
Begell House Inc.
Erişim Hakkı
info:eu-repo/semantics/closedAccess
Özet
In this study, the effect of the second-order slip boundary condition flow model on the flow and heat transfer characteristics in the presence of a magnetic field acting normal to the plate surface in the magnetohydrodynamic (MHD) flow between the parallel microplates with constant heat flux is analytically investigated. The flow of incompressible viscous fluid between the fixed parallel microplates with electrical conductivity was assumed to be steady, laminar, hydrodynamic, and thermally fully developed. The energy equation with the viscous dissipation is solved analytically using the second-order slip velocity and temperature jump boundary conditions in the slip flow regime. Theoretical results obtained from the momentum and energy equations show that the magnetic field parameter, Knudsen number, Brinkman number, and the second-order slip flow boundary condition model parameters affect the velocity and temperature distributions considerably. Furthermore, it was found that the second-order slip flow boundary condition is needed to predict the flow characteristics more accurately. © 2021 by Begell House, Inc.
Açıklama
Anahtar Kelimeler
MHD, Second-order slip velocity boundary condition, Second-order temperature jump boundary condition, Viscous dissipation, Boundary conditions, Heat flux, Heat transfer, Incompressible flow, Plates (structural components), Viscous flow, Electrical conductivity, Flow and heat transfer, Flow charac-teristics, Incompressible viscous fluids, Magnetic field parameter, Magnetohydrodynamic flows, Parallel microplates, Viscous dissipation, Magnetohydrodynamics
Kaynak
Heat Transfer Research
WoS Q Değeri
Scopus Q Değeri
Q3
Cilt
52
Sayı
11