A CSCM Approximation of Steady MHD Flow and Heat Transfer Between Parallel Plates with Hydrodynamic Slip and Convective Boundary Conditions

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Springer Science and Business Media Deutschland GmbH

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info:eu-repo/semantics/closedAccess

Özet

The steady magnetohydrodynamic (MHD) flow and heat transfer between parallel plates is considered in which the electrically conducting fluid has temperature dependent properties such as viscosity, thermal and electrical conductivity. The fluid is driven by a constant pressure gradient, and a uniform external transverse magnetic field is applied perpendicular to the plates. The effects of viscous and Joule dissipations are considered in the energy equation, and the fluid is assumed to be slipping in the vicinity of the plates. The effects of the magnetic field, the hydrodynamic slip, and convective thermal boundary conditions on the flow and heat transfer are investigated as well as the temperature dependent parameters. The Chebyshev spectral collocation method which is easy to implement is presented for the approximation of the solutions to the governing equations. The velocity and the temperature of the fluid are obtained with a cheap computational expense. © 2021 Elsevier B.V., All rights reserved.

Açıklama

European Conference on Numerical Mathematics and Advanced Applications, ENUMATH 2019 -- Egmond aan Zee -- 258549

Anahtar Kelimeler

Boundary conditions, Heat convection, Plates (structural components), Chebyshev spectral collocation method, Constant pressure gradient, Convective boundary conditions, Electrically conducting fluids, Temperature-dependent properties, Thermal and electrical conductivity, Thermal boundary conditions, Transverse magnetic field, Magnetohydrodynamics

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Lecture Notes in Computational Science and Engineering

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139

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