Empirical Evaluation of the Effect of Heat Gain from Fiber Optic Daylighting System on Tropical Building Interiors
A fiber optic daylighting system is an evolving technology for transporting illumination from sunlight into building interiors. This system is a solution developed by daylighting designers to reduce operational costs and enhance comfort. As an innovative technology, fiber optic daylighting systems can illuminate building interiors efficiently compared with other daylighting strategies. However, as a transmission medium in daylighting systems, optical fibers require uniform light distribution in sunlight concentration, which could generate heat. Therefore, this study aims to investigate the effect of heat buildup produced by end-emitting fiber optic daylighting systems in tropical buildings. The applied method adopts a new fiber optic daylighting system technology from Sweden called Parans SP3, with a 10 m cable to be tested in an actual room size under the Malaysian climatic environment, particularly within the vicinity of the main campus of the Universiti Sains Malaysia. Results show that the system generated a temperature of 1.3 °C under average conditions through fiber optic diffusers and increases indoor temperature by 0.8 °C in a 60 m<sup>3</sup> room. According to the results, applying fiber optic daylighting systems, as renewable energy sources, generates extra heat gain in building interiors in the tropics.
Year of publication: |
2014
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Authors: | Munaaim, Muhammad Arkam C. ; Al-Obaidi, Karam M. ; Ismail, Mohd Rodzi ; Rahman, Abdul Malek Abdul |
Published in: |
Sustainability. - MDPI, Open Access Journal, ISSN 2071-1050. - Vol. 6.2014, 12, p. 9231-9243
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Publisher: |
MDPI, Open Access Journal |
Subject: | heat gain | fiber optic system | daylighting | tropical indoor environment |
Saved in:
freely available
Extent: | application/pdf text/html |
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Type of publication: | Article |
Classification: | Q - Agricultural and Natural Resource Economics ; Q0 - Agricultural and Natural Resource Economics. General ; Q2 - Renewable Resources and Conservation; Environmental Management ; Q3 - Nonrenewable Resources and Conservation ; Q5 - Environmental Economics ; Q56 - Environment and Development; Environment and Trade; Sustainability; Environmental Accounting ; O13 - Agriculture; Natural Resources; Energy; Environment; Other Primary Products |
Source: |
Persistent link: https://www.econbiz.de/10011098111
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