Hydromagnetic free convection flow with induced magnetic field effects

被引:0
|
作者
S. K. Ghosh
O. Anwar Bég
J. Zueco
机构
[1] Narajole Raj College,Department of Mathematics
[2] Sheffield Hallam University,Magnetohydrodynamics and Heat Transfer Group, Mechanical Engineering Department, Sheaf Building
[3] Universidad Politécnica de Cartagena,ETS Ingenieros Industriales Campus Muralla del Mar, Departamento de Ingeniería Térmica y Fluidos
来源
Meccanica | 2010年 / 45卷
关键词
MHD free convection; Magnetic induction; Boundary layer control; Bulk temperature; Frictional drag; Hyperbolic functions; Rayleigh flow;
D O I
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学科分类号
摘要
An exact solution is presented for the hydromagnetic natural convection boundary layer flow past an infinite vertical flat plate under the influence of a transverse magnetic field with magnetic induction effects included. The transformed ordinary differential equations are solved exactly, under physically appropriate boundary conditions. Closed-form expressions are obtained for the non-dimensional velocity (u), non-dimensional induced magnetic field component (Bx) and wall frictional shearing stress i.e. skin friction function (τx) as functions of dimensionless transverse coordinate (η), Grashof free convection number (Gr) and the Hartmann number (M). The bulk temperature in the boundary layer (Θ) is also evaluated and shown to be purely a function of M. The Rayleigh flow distribution (R) is derived and found to be a function of both Hartmann number (M) and the buoyant diffusivity parameter (ϑ*). The influence of Grashof number on velocity, induced magnetic field and wall shear stress profiles is computed. The response of Rayleigh flow distribution to Grashof numbers ranging from 2 to 200 is also discussed as is the influence of Hartmann number on the bulk temperature. Rayleigh flow is demonstrated to become stable with respect to the width of the boundary layer region and intensifies with greater magnetic field i.e. larger Hartman number M, for constant buoyant diffusivity parameter ϑ*. The induced magnetic field (Bx), is elevated in the vicinity of the plate surface with a rise in free convection (buoyancy) parameter Gr, but is reduced over the central zone of the boundary layer regime. Applications of the study include laminar magneto-aerodynamics, materials processing and MHD propulsion thermo-fluid dynamics.
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页码:175 / 185
页数:10
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