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- W4289275056 abstract "Laminar, steady-state, natural convection of power-law fluids in trapezoidal enclosures with a heated bottom wall, adiabatic top wall and cooled inclined sidewalls has been analysed based on numerical simulations for a range of different values of nominal Rayleigh numbers (i.e. 103 ≤ Ra ≤ 105), power-law index (i.e. 0.6 ≤ n ≤ 1.8), nominal Prandtl number (i.e. Pr = 10, 102, 103) and inclination angles (i.e. 30° ≤ φ ≤ 60°). It has been found that the mean Nusselt number ̅Nu increases with increasing nominal Rayleigh number Ra and decreasing power-law index n due to the strengthening of advective transport. Moreover, an increase in the sidewall inclination angle φ leads to a decrease in ̅Nu due to an increase in the length of the cooled walls, leading to greater area for losing heat from the cavity. It has been found that ̅Nu does not vary significantly with the values of Pr considered in the current study. Furthermore, an expression for the mean Nusselt number ̅Nu in a trapezoidal enclosure with heated bottom wall, cooled inclined sidewalls, and an adiabatic top wall accounting for the considered range of Ra, n, Pr and φ has been identified which provides adequate approximation of the corresponding values obtained from the simulations." @default.
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- W4289275056 date "2022-01-01" @default.
- W4289275056 modified "2023-09-27" @default.
- W4289275056 title "LAMINAR NATURAL CONVECTION OF POWER-LAW FLUIDS IN A TRAPEZOIDAL ENCLOSURE HEATED FROM THE BOTTOM" @default.
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- W4289275056 doi "https://doi.org/10.1615/ichmt.2022.conv22.260" @default.
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