Double stratification effects on unsteady electrical MHD mixed convection flow of nanofluid with viscous dissipation and Joule heating



Título del documento: Double stratification effects on unsteady electrical MHD mixed convection flow of nanofluid with viscous dissipation and Joule heating
Revue: Journal of applied research and technology
Base de datos: PERIÓDICA
Número de sistema: 000427848
ISSN: 1665-6423
Autores: 1
1
1
3
Instituciones: 1Universiti Teknologi Malaysia, Faculty of Sciences, Johor Bahru, Johor. Malasia
2Universiti Teknologi Malaysia, UTM Centre for Industrial and Applied Mathematics, Johor Bahru, Johor. Malasia
3University of Kordofan, Faculty of Science, El Obeid, Kordofan. Sudán
Año:
Periodo: Oct
Volumen: 15
Número: 5
País: México
Idioma: Inglés
Tipo de documento: Artículo
Enfoque: Experimental, aplicado
Resumen en inglés The problem of unsteady mixed convection electrical magnetohydrodynamic (MHD) flow and heat transfer induced due to nanofluid over apermeable stretching sheet using Buongiorno model is investigated. The transverse electric and magnetic fields are considered in the flow field,while in the heat convection is associated with the thermal radiation, heat generation/absorption, viscous and Ohmic dissipations, and chemicalreaction is incorporated in the mass diffusion. A similarity transformation is used to reduce the boundary layer governing equations which arepartial differential equations to nonlinear differential equations and then solved numerically using implicit finite difference scheme. The nanofluidvelocity and temperature are sensitive to an increase in the electric field, which resolved the problem of sticky effects due to the magnetic field.Destructive chemical reaction increases the level nanoparticles concentration while reversed behave happened in the case of the generative chemicalreaction. Heat source boosts the fluid temperature while as opposite occurred with the heat sink. Thermal and concentration stratifications decreasedthe fluid temperature and the nanoparticles concentration profiles. Buoyancy ratio parameter reduced the Nusselt and Sherwood numbers whereasmixed convection parameter increases for higher values. A comparison with the previous study available in literature has been done and found anexcellent agreement with the published data
Disciplinas: Física y astronomía
Palabras clave: Electromagnetismo,
Nanofluidos magnéticos,
Flujo biestratificado,
Convección mixta,
Radiación térmica,
Campo eléctrico,
Disipación viscosa
Keyword: Electromagnetism,
Magnetic nanofluid,
Doubly stratified flow,
Mixed convection,
Thermal radiation,
Electric field,
Viscous dissipation
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