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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 66, 2014 - Issue 9
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Original Articles

Lattice-Boltzmann Modeling of Natural Convection Between a Square Outer Cylinder and an Inner Isosceles Triangular Heating Body

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Pages 1076-1096 | Received 04 Dec 2013, Accepted 25 Jan 2014, Published online: 16 Jul 2014
 

Abstract

The present study confirms the robustness and the computational effectiveness of the lattice-Boltzmann method in simulating natural convection between a triangular isosceles heating body and a square outer cylinder isothermally cooled/(insulated) from its vertical/(horizontal) walls. The heated body is symmetrically placed on the vertical centerline of the cavity with the summit opposite to its horizontal base pointing upwards. A detailed parametric study is conducted to investigate the effect of three positions (MB, MM, and MT) of the heating body on fluid flow and heat transfer characteristics for a wide range of Rayleigh number (103 ≤ Ra ≤ 107) and Pr = 7 (water). The method used is validated against previous works using classical numerical methods to solve Navier–Stokes and energy equations in similar geometries with a circular heating body. In the conductive and convective regimes, useful correlations for the total Nusselt number are deduced as for the three positions of the heating block.

Notes

Color versions of one or more of the figures in the article can be found online at www.tandfonline.com/unht.

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