NUMERICAL COMPUTATION OF HIGH RAYLEIGH NUMBER NATURAL-CONVECTION AND PREDICTION OF HOT RADIATOR INDUCED ROOM AIR MOTION

被引:14
作者
LANKHORST, AM
HOOGENDOORN, CJ
机构
[1] Faculty of Applied Physics, Heat Transfer Section, Delft University of Technology, Delft, 2600 GA
来源
APPLIED SCIENTIFIC RESEARCH | 1990年 / 47卷 / 04期
关键词
D O I
10.1007/BF00386241
中图分类号
O414.1 [热力学];
学科分类号
摘要
The two-dimensional stationary turbulent buoyant flow and heat transfer in a cavity at high Rayleigh numbers was computed numerically. The k-ε turbulence model was used. The time-averaged equations for momentum, energy and continuity, which are coupled to the turbulence equations, were solved using a finite difference formulation. In order to validate the computer code, a comparison exercise was carried out. The test results are in good agreement with the internationally accepted benchmark solution. Grid-refinement shows the necessity of a very fine grid at high Rayleigh numbers with especially small grid-distances in the near-wall region. The computed boundary layer velocity profiles are in excellent agreement with available experimental data. The local heat transfer in the turbulent part of the boundary layers is predicted 20% too high. Computations were carried out for the natural convective flow in a room induced by a hot radiator and a cold window. Various radiator configurations and types of thermal boundary conditions were applied including thermal radiation interaction between surfaces. © 1990 Kluwer Academic Publishers.
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页码:301 / 322
页数:22
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