Conjugated effect of joule heating and magneto-hydrodynamic on double-diffusive mixed convection in a horizontal channel with an open cavity
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Publication:550700
DOI10.1016/j.ijheatmasstransfer.2011.04.010zbMath1218.80009OpenAlexW2055274274MaRDI QIDQ550700
Publication date: 13 July 2011
Published in: International Journal of Heat and Mass Transfer (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijheatmasstransfer.2011.04.010
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Related Items (5)
Heat transfer and entropy generation analysis of nanofluids flow in an open cavity ⋮ Effect of buoyancy ratio on unsteady thermosolutal combined convection in a lid driven trapezoidal enclosure in the presence of magnetic field ⋮ Finite element solution of MHD mixed convection in a channel with a fully or partially heated cavity ⋮ Magnetic effect on instability and nonlinear stability of double-diffusive convection in a reacting fluid ⋮ Heat transfer enhancement of pulsating flow in an open cavity subjected to uniform magnetic field
Cites Work
- Finite element analysis of natural convection flows in a square cavity with non-uniformly heated wall(s)
- Numerical simulation of magnetohydrodynamic buoyancy-induced flow in a non-isothermally heated square enclosure
- A numerical study of mixed convection in a horizontal channel with a discrete heat source in an open cavity
- MHD natural convection in a laterally and volumetrically heated square cavity
- MHD free convection in a liquid-metal filled cubic enclosure. I: Differential heating. II: Internal heating
- Hydromagnetic double-diffusive convection in a rectangular enclosure with opposing temperature and concentration gradients
- Mixed convection heat transfer in two-dimensional open-ended enclosures
- Double-diffusive natural convection in parallelogrammic enclosures
- Fluid, heat and contaminant transport structures of laminar double-diffusive mixed convection in a two-dimensional ventilated enclosure
- Finite element analysis of viscous incompressible flows using primitive variables
- Reduced integration technique in general analysis of plates and shells
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