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Heat transfer in cavities: configurative systematic review
This study is a systematic review of research on heat transfer analysis in cavities and aims to
provide a comprehensive understanding of flow and heat transfer performance in various …
provide a comprehensive understanding of flow and heat transfer performance in various …
Magneto-hydrothermal triple-convection in a W-shaped porous cavity containing oxytactic bacteria
Bioconvective heat and mass transport phenomena have recently been the subject of
interest in diverse fields of applications pertaining to the motion of fluids and their …
interest in diverse fields of applications pertaining to the motion of fluids and their …
Effect of discrete heating-cooling on magneto-thermal-hybrid nanofluidic convection in cylindrical system
In search of efficient energy utilization and superior thermal performance, the present study
is aimed at understanding the positional effect of discrete heaters and coolers on a …
is aimed at understanding the positional effect of discrete heaters and coolers on a …
Magneto-nanofluid flow in cylinder-embedded discretely heated-cooled annular thermal systems: Conjugate heat transfer and thermodynamic irreversibility
The present work investigates magnetohydrodynamics-driven thermal-fluid flow
characterization in cylinder-embedded annular thermal systems subjected to peripheral …
characterization in cylinder-embedded annular thermal systems subjected to peripheral …
Role of surface undulation during mixed bioconvective nanofluid flow in porous media in presence of oxytactic bacteria and magnetic fields
Transport phenomena involving thermo-bioconvection have become an interesting field of
research due to their novel application in various fields of engineering, bio-energy systems …
research due to their novel application in various fields of engineering, bio-energy systems …
Hybridized nanofluidic convection in umbrella-shaped porous thermal systems with identical heating and cooling surfaces
Purpose This study aims to investigate the impact of different heater geometries (flat,
rectangular, semi-elliptical and triangular) on hybrid nanofluidic (Cu–Al2O3–H2O) …
rectangular, semi-elliptical and triangular) on hybrid nanofluidic (Cu–Al2O3–H2O) …
Convective heat transport and entropy generation in butterfly-shaped magneto-nanofluidic systems with bottom heating and top cooling
Purpose The purpose of this study is to carry out a comprehensive analysis of magneto-
hydrodynamics (MHD), nanofluidic flow dynamics and heat transfer as well as …
hydrodynamics (MHD), nanofluidic flow dynamics and heat transfer as well as …
Magneto-hydrodynamic thermal convection of Cu–Al2O3/water hybrid nanofluid saturated with porous media subjected to half-sinusoidal nonuniform heating
The present work aims to examine the thermal efficacy of half-sinusoidal nonuniform heating
at different spatial frequencies for a porous natural convection system using Cu–Al 2 O …
at different spatial frequencies for a porous natural convection system using Cu–Al 2 O …
Analysis of geometrical shape impact on thermal management of practical fluids using square and circular cavities
The heating or cooling performance of convective thermal systems is critically dependent
upon their geometrical shapes/configurations apart from other controlling aspects. Here, an …
upon their geometrical shapes/configurations apart from other controlling aspects. Here, an …
Effect of multibanded magnetic field on convective heat transport in linearly heated porous systems filled with hybrid nanofluid
The paper attempts to enhance the control of convective transport phenomena in
magnetothermal devices applying a technique of multibanded magnetic field. For this …
magnetothermal devices applying a technique of multibanded magnetic field. For this …