共 46 条
Linear stability analysis of MHD mixed convection flow of a radiating nanofluid in porous channel in presence of viscous dissipation
被引:4
作者:
Ketchate, Cedric Gervais Njingang
[1
]
Makinde, Oluwole Daniel
[2
]
Kapen, Pascalin Tiam
[3
]
Fokwa, Didier
[1
]
机构:
[1] Univ Douala, Adv Teachers Coll Tech Educ, Lab Mech, Douala, Cameroon
[2] Stellenbosch Univ, Fac Mil Sci, Saldanha, South Africa
[3] Univ Dschang, Univ Inst Technol Fotso Victor, Dept Renewable Energy, Bandjoun, Cameroon
关键词:
Nanofluid;
Mixed convection;
Viscous dissipation;
Radiating nanofluid;
Instability;
PLANE-POISEUILLE FLOW;
HYBRID NANOFLUID;
THERMAL-RADIATION;
HEAT-TRANSFER;
MAGNETOHYDRODYNAMIC STABILITY;
GYROTACTIC MICROORGANISMS;
TEMPORAL STABILITY;
SUCTION;
FLUID;
D O I:
10.1108/HFF-01-2024-0063
中图分类号:
O414.1 [热力学];
学科分类号:
摘要:
PurposeThis paper aims to investigate the hydrodynamic instability properties of a mixed convection flow of nanofluid in a porous channel. Design/methodology/approachThe treated single-phase nanofluid is a suspension consisting of water as the working fluid and alumina as a nanoparticle. The anisotropy of the porous medium and the effects of the inclination of the magnetic field are highlighted. The effects of viscous dissipation and thermal radiation are incorporated into the energy equation. The eigenvalue equation system resulting from the stability analysis is processed numerically by the spectral collocation method. FindingsAnalysis of the results in terms of growth rate reveals that increasing the volume fraction of nanoparticles increases the critical Reynolds number. Parameters such as the mechanical anisotropy parameter and Richardson number have a destabilizing effect. The Hartmann number, permeability parameter, magnetic field inclination, Prandtl number, wave number and thermal radiation parameter showed a stabilizing effect. The Eckert number has a negligible effect on the growth rate of the disturbances. Originality/valueLinear stability analysis of Magnetohydrodynamics (MHD) mixed convection flow of a radiating nanofluid in porous channel in presence of viscous dissipation.
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页码:2043 / 2064
页数:22
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