Pages that link to "Item:Q6044003"
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The following pages link to Effect of the length and thickness of three constant temperature baffles on the natural convection heat transfer of nanofluid flow inside an enclosure affected by a magnetic field (Q6044003):
Displaying 7 items.
- Hybrid nanofluid mixed convection in a cavity under the impact of the magnetic field by lattice Boltzmann method: effects of barrier temperature on heat transfer and entropy (Q6042444) (← links)
- Examine the lattice Boltzmann method for the mixed convection simulation of water/\(\mathrm{Al}_2 \mathrm{O}_3\) nanofluid in a 2D rectangular cavity under radiation with isothermal semicircular obstacles (Q6043953) (← links)
- Entropy generation and mixed convection in an enclosure with five baffles exposed to a uniform magnetic field with volumetric radiation for the solar collectors via lattice Boltzmann method (Q6044035) (← links)
- Numerical study of entropy generation in the convection heat transfer of nanofluid inside a tilted closed compartment with five constant-temperature heat sources in the presence of a magnetic field (Q6044049) (← links)
- Study of heat transfer and the nanofluid flow inside a rectangular enclosure with five rectangular baffles in the middle affected by a magnetic field (Q6046371) (← links)
- Entropy generation of the laminar and mixed flow of alumina/water nanofluid flow in a two-dimensional rectangular enclosure affected by a magnetic field using the lattice Boltzmann method (Q6158671) (← links)
- Combination of Karhunen-Loève and intrusive polynomial chaos for uncertainty quantification of thermomagnetic convection problem with stochastic boundary condition (Q6545757) (← links)