Energy Saving Potential From Daylighting Through External Multiple-Slat Shaded Window in the Tropics
Abstract
Keywords
Full Text:
PDFReferences
S. Chirarattananon, P. Chaiwiwatworakul, and S. Pattanasethanon, “Daylight availability and models for global and diffuse horizontal illuminance and irradiance for Bangkokâ€, Renewable Energy, vol. 26 (1), pp. 69-89, 2002.
S. Chirarattananon, P. Chaiwiwatworakul, V.D. Hien, P. Rakkwamsuk, K. Kubaha, K, “Assessment of energy savings from the revised building energy code of Thailandâ€, Energy, vol. 35 (4), 1741-1753, 2010.
H.H. Alzoubi, A.H. Al-Zoubi, “Assessment of building façade performance in terms of daylighting and associated energy consumption in architectural spaces: vertical and horizontal shading devices for southern exposure facadesâ€, Energy Conversion and Management, vol. 51 (8), pp. 1592-1599, 2010.
C.L. Cheng, C.L. Chen, C.P. Chou, C.Y. Chan, “A mini-scale modeling approach to natural daylight utilization in building designâ€, Building and Environment, vol. 42 (1), pp. 372-384, 2007.
P. Chaiwiwatworakul, S. Chirarattananon, P. Rakkwamsuk, “Application of automated blind for daylighting in tropical regionâ€, Energy Conversion and Management, vol. 50 (12), pp. 2927-2943, 2009.
P. Greenup, J.M. Bell, I. Moore, “The importance of interior daylight distribution in buildings in overall energy performanceâ€, Renewable Energy, vol. 22 (1), pp. 45-52, 2001.
M. Bodart, A.D. Herde, “Global energy savings in offices buildings by the use of daylightingâ€, Energy and Buildings, vol. 34 (5), pp. 421-429, 2002.
A. Tzempelikos, A.K. Athienitis, “The impact of shading design and control on building cooling and lighting demandâ€, Solar Energy, vol. 81 (3), pp. 369-382, 2007.
A.C. Hviid, T.R. Nielsen, S. Svendsen, “Simple tool to evaluate the impact of daylight on building energy consumptionâ€, Solar Energy, vol. 82 (9), pp. 787-798, 2008.
V. Ferraro, N. Igawa, V. Marinelli, “INLUX-DBR - a calculation code to calculate indoor natural illuminance inside buildings under various sky conditionsâ€, Energy, vol. 35 (9), pp. 3722-3730, 2010.
A. Nabil, J. Mardaljevic, “Useful daylight illuminance: a new paradigm for assessing daylight in buildingsâ€, Lighting Research and Technology, vol. 37 (1), pp. 41-57, 2005.
A. Nabil, J. Mardaljevic, “Useful daylight illuminances: a replacement for daylight factorsâ€, Energy and Buildings, vol. 38 (7), pp. 905-913, 2006.
V.D. Hien, S. Chirarattananon, “An experimental study of a façade mounted light pipeâ€, Lighting Research and Technology, vol. 41 (2), pp. 123-142, 2009.
S. Chirarattananon, V.D. Hien, “Thermal performance and cost effectiveness of massive walls under Thai climateâ€, Energy and Buildings, vol. 43 (7), pp. 1655-1662, 2011.
V.D. Hien, S. Chirarattananon, “Triangular subdivision for the computation of form factorsâ€, Leukos, vol. 5 (2), pp. 41-59, 2005.
R. Perez, P. Ineichen, R. Seals, “Modeling daylight availability and irradiance components from direct and global irradianceâ€, Solar Energy, vol. 44 (5), pp. 271-289, 1990.
DOI (PDF): https://doi.org/10.20508/ijrer.v2i3.229.g6031
Refbacks
- There are currently no refbacks.
Online ISSN: 1309-0127
Publisher: Gazi University
IJRER is cited in SCOPUS, EBSCO, WEB of SCIENCE (Clarivate Analytics);
IJRER has been cited in Emerging Sources Citation Index from 2016 in web of science.
WEB of SCIENCE in 2025;
h=35,
Average citation per item=6.59
Last three Years Impact Factor=(1947+1753+1586)/(146+201+78)=5286/425=12.43
Category Quartile:Q4