Bifurcation in steady laminar mixed convection flow in uniformly heated inclined tubes
International Journal of Numerical Methods for Heat & Fluid Flow
ISSN: 0961-5539
Article publication date: 1 August 1999
Abstract
The fully developed laminar mixed convection flow in inclined tubes subject to axially and circumferentially uniform heat flux has been studied numerically for a Boussinesq fluid. Dual solutions characterized by a two‐ and a four‐vortex secondary flow structure in a cross‐section normal to the tube’s longitudinal axis have been found for different combinations of the Grashof number Gr and of the tube inclination α for all Prandtl numbers between 0.7 and 7. In the two‐parameter space defined by Gr and α dual solutions occur: at a given α, if the Grashof number exceeds a critical value Grℓ (for horizontal tubes Grℓ is approximately 5.5 × 105, 1.7 × 105 and 1.7 × 104 respectively for Pr = 0.7, 7 and 70); at a given Gr, if the tube inclination is below a critical value αc (for Gr = 106 this critical angle is approximately 62.5° and 83.5° respectively for Pr = 0.7 and 7). Numerical experiments carried out for developing flows indicate that the two‐vortex solution is the only stable flow structure.
Keywords
Citation
Orfi, J., Galanis, N. and Nguyen, C.T. (1999), "Bifurcation in steady laminar mixed convection flow in uniformly heated inclined tubes", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 9 No. 5, pp. 543-567. https://doi.org/10.1108/09615539910276845
Publisher
:MCB UP Ltd
Copyright © 1999, MCB UP Limited