DocumentCode :
2256046
Title :
Predicting transmittance, absorptions and reflectance characteristics for the design of transparent dome passive daylight collector
Author :
Sulaiman, F. ; Ahmad, A. ; Ahmed, A. Zain
Author_Institution :
Fac. Electr. Eng., MARA Univ. of Technol., Selangor, Malaysia
fYear :
2002
fDate :
2002
Firstpage :
208
Lastpage :
212
Abstract :
Daylighting systems are a particular type of solar collector which may be used to provide illumination for the interior of a building by directing daylight into the building. Daylighting and thermal loads are very important design issues for passive daylight collector design. A mathematical model has been developed to predict the visible solar transmittance, absorptance and reflectance of a transparent domed passive daylight collector for both direct and diffuse radiation. The model is based on tracking the beam and diffuse radiation transmission through the dome surface. The shape of the daylight collector geometry, among other factors, has an effect on the amount of daylighting contribution and solar heat gains. The optimum design can only be accomplished by a careful understanding of light transmission process though the dome geometry. This paper describes the mathematical modelling for the design of a transparent domed passive daylight collector with a narrow solar light pipe penetrating the roof to provide a high transmission of light from the exterior to the interior of the building.
Keywords :
daylighting; light absorption; light reflection; light transmission; passive solar buildings; solar absorber-convertors; absorption characteristics; beam radiation transmission; daylight collector geometry shape; daylighting systems; design issues; diffuse radiation; direct radiation; light transmission; mathematical model; narrow solar light pipe; reflectance characteristics; solar collector; solar heat gains; thermal loads; transmittance characteristics; transparent dome passive daylight collector; Absorption; Buildings; Daylighting; Geometrical optics; Lighting; Mathematical model; Reflectivity; Shape; Solar heating; Thermal loading;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Research and Development, 2002. SCOReD 2002. Student Conference on
Print_ISBN :
0-7803-7565-3
Type :
conf
DOI :
10.1109/SCORED.2002.1033094
Filename :
1033094
Link To Document :
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