Driven by the thermal management demands of light emitting diodes (LEDs), the use of Computational Fluid Dynamics (CFD) by the lighting industry is growing. Establishing guidelines to ensure that these tools can be applied efficiently, i.e. sufficiently accurately without unnecessary complexity, would be very valuable to the industry. In this study a representative LED luminaire is assessed using a series of physical tests to determine its operating parameters. These are then used to define appropriate boundary conditions for, and evaluate the results from a CFD simulation. Numerous configurations are analysed to explore the effects of different simplifications. From this it was found that the simulation could be considerably streamlined with no consequence for the reported thermal behaviour of the system. In particular the results have shown that modelling of the individual heat sources as discrete loads offered very little benefit except when the sources occupy a region considerably smaller than that of a single distributed load and the systems thermal resistance is also relatively large.
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Facultad de Ciencias Técnicas, Escuela de Ingeniería Automotriz, UIDE, Casilla, QuitoFacultad de Ciencias Técnicas, Escuela de Ingeniería Automotriz, UIDE, Casilla, Quito
Samaniego G.F.
Guerrero B.
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School of Mechanical Engineering, Faculty of Engineering Mathematics and Computer Science, The University of Adelaide, Adelaide, 5000, SAFacultad de Ciencias Técnicas, Escuela de Ingeniería Automotriz, UIDE, Casilla, Quito
Guerrero B.
Antamba J.F.
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Facultad de Ciencias Técnicas, Escuela de Ingeniería Automotriz, UIDE, Casilla, QuitoFacultad de Ciencias Técnicas, Escuela de Ingeniería Automotriz, UIDE, Casilla, Quito
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W Virginia Univ, Dept Mech & Aerosp Engn, Morgantown, WV 26506 USA
ANSYS Inc, Morgantown, WV 26505 USANatl Energy Technol Lab, Morgantown, WV 26507 USA
Mahalatkar, Kartikeya
Kuhlman, John
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Natl Energy Technol Lab, Morgantown, WV 26507 USA
W Virginia Univ, Dept Mech & Aerosp Engn, Morgantown, WV 26506 USANatl Energy Technol Lab, Morgantown, WV 26507 USA
Kuhlman, John
Huckaby, E. David
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Natl Energy Technol Lab, Morgantown, WV 26507 USANatl Energy Technol Lab, Morgantown, WV 26507 USA
Huckaby, E. David
O'Brien, Thomas
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Natl Energy Technol Lab, Morgantown, WV 26507 USANatl Energy Technol Lab, Morgantown, WV 26507 USA
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Univ Utah, Dept Chem Engn, 50 S Cent Campus Dr Rm 3290, Salt Lake City, UT 84112 USAUniv Utah, Dept Chem Engn, 50 S Cent Campus Dr Rm 3290, Salt Lake City, UT 84112 USA
Hamilton, Matthew A.
Whitty, Kevin J.
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Univ Utah, Dept Chem Engn, 50 S Cent Campus Dr Rm 3290, Salt Lake City, UT 84112 USAUniv Utah, Dept Chem Engn, 50 S Cent Campus Dr Rm 3290, Salt Lake City, UT 84112 USA
Whitty, Kevin J.
Lighty, JoAnn S.
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Univ Utah, Dept Chem Engn, 50 S Cent Campus Dr Rm 3290, Salt Lake City, UT 84112 USAUniv Utah, Dept Chem Engn, 50 S Cent Campus Dr Rm 3290, Salt Lake City, UT 84112 USA