Modifying Courtyard Wall Geometries to Optimize the Daylight Performance of the Courtyard
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-17387-5_6.pdf
Reference16 articles.
1. Beltran, L.O., Lee, E.S., Selkowitz, S.E.: optical daylighting systems: light shelves and light pipes. Journal of the Illuminating Engineering Society 20, 91–106 (1997)
2. Calcagni, B., Paroncini, M.: Daylight factor prediction in atria building designs. Solar Energy 76, 669–682 (2004)
3. Freewan, A.A., Shao, L., Riffat, S.: Optimizing performance of the lightshelf by modifying ceiling geometry in highly luminous climates. Solar Energy 82, 343–353 (2008)
4. Freewan, A.A., Shao, L., Riffat, S.: Interactions between louvers and ceiling geometry for maximum daylighting performance. Renewable Energy 34, 223–232 (2009)
5. Greenup, P.J., Edmonds, I.R.: Test room measurements and computer simulations of the micro-light guiding shade daylight redirecting device. Solar Energy 76, 99–109 (2004)
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