Low-Prandtl-number convection in a layer heated from below

Author:

Clever R. M.,Busse F. H.

Abstract

Steady solutions in the form of two-dimensional rolls are obtained numerically for convection in a horizontal layer of a low-Prandtl-number fluid heated from below. Prandtl numbers in the range 0·001 [les ] P [les ] 0·71 are investigated for Rayleigh numbers between the critical value, R = 1708, and R = 20,000 in the case of rigid boundaries. The calculations reveal that the convective heat transport is relatively independent of the Prandtl number at Rayleigh numbers greater than a finite critical value R2 of the order of 5 × 103. At R = 10,000 the convective heat transport varies by only about 30% for Prandtl numbers in the range investigated. As the Rayleigh number is increased above the critical value R2, the streamlines of the convection flow become circular, independent of the horizontal wavelength as long as the latter is larger than or about equal to twice the height of the layer.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference9 articles.

1. Busse, F. H. & Clever, R. M. 1980 An asymptotic model of two-dimensional convection in the limit of low Prandtl number.J. Fluid Mech. 102,75–83.

2. Rossby, H. T. 1969 A study of Bénard convection with and without rotation.J. Fluid Mech. 36,309–335.

3. Proctor, M. R. E. 1977 Inertial convection at low Prandtl number.J. Fluid Mech. 82,97–114.

4. Willis, G. E. , Deardorff, J. W. & Somerville, R. C. J. 1972 Roll-diameter dependence in Rayleigh convection and its effect upon the heat flux.J. Fluid Mech. 54,351–367.

5. Schlüter, A. , Lortz, D. & Busse, F. 1965 On the stability of steady finite amplitude convection.J. Fluid Mech. 23,129–144.

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