Journal Article

·2009

CFD Analysis of Natural Convection in a Cubic Enclosure Heated From a Side Wall With Experimental Verification Using PIV

Nuri Alpay Ku ̈rekci YTU

Abstract

Natural convection of air in a cubical volume is investigated experimentally and numerically. A cubical volume of 20×20×20 cm dimensions was built for the experimental study. One of the vertical walls covering the volume is hot, the other one is cold and the rest are adiabatic. Three walls are made of aluminum and the others are made of heat-resistant glass. The hot wall temperature is kept constant during the experiments by means of an electrical heater. The cold wall is at the ambient temperature. Other adiabatic surfaces are insulated with polyurethane foam. Experiments are performed in an air-conditioned room at 21°C. PIV (Particle Image Velocimetry) is used for velocity measurements. The FLUENT CFD software package is used for the numerical study. A three-dimensional solution is obtained for the laminar flow case for a 61×61×61 grid. The numerical and experimental results are compared with each other for the validation of the numerical solution under the testing conditions of TH = 69°C, TC = 41°C and Ra = 1.3×107. Results obtained from the numerical and experimental studies are in a reasonably good agreement with each other.

Keywords

Natural convection Materials science Enclosure Laminar flow Mechanics Particle image velocimetry Computational fluid dynamics Adiabatic process Fluent Finite volume method Volume (thermodynamics) Convection Thermodynamics Physics Engineering Turbulence

Subject Areas

Heat and Mass Transfer in Porous Media ·Computational Mechanics ·Physical Sciences
Nanofluid Flow and Heat Transfer ·Biomedical Engineering ·Physical Sciences
Heat Transfer Mechanisms ·Mechanical Engineering ·Physical Sciences

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