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Transitions of natural convection flows in a square enclosure with a heated circular cylinder
Journal article   Peer reviewed

Transitions of natural convection flows in a square enclosure with a heated circular cylinder

Chuan-Chieh Liao and Chao-An Lin
Applied Thermal Engineering, Vol.72(1), pp.41-47
05/11/2014

Abstract

Flow transitions Heated cylinder Immersed boundary method Natural convection
Numerical investigations are carried out for natural convection within domains with curved geometry by using an immersed-boundary method. Influence of the Prandtl number (0.71-0.07) on the flow structure are investigated through the flow structure map in the Ra-Pr plane. By reducing the Prandtl number, the flow experiences transition from steady single thermal-plume state, steady double thermal-plume state and then to unsteady state for Ra ≤2 × 10<sup>6</sup>. However at elevated Rayleigh number (Ra > 2 × 10<sup>6</sup>), the transition is directly from steady single-plume state to unsteady state without going through double-plume regime. The variations of the threshold Pr during transition from single-plume to double-plume or to unsteady regime at different Rayleigh numbers are also addressed.

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