Estimation of sky illuminance for solar energy technology applications in Malaysia / Harizal Omar

The aim of this project is to produce sky illuminance and sky irradiance for Malaysian sky. Therefore, the sky luminance and sky radiance should be measured first in order to get the instantaneous incident of solar energy which is illuminance and irradiance. Furthermore, illuminance is one of the mo...

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Main Author: Omar, Harizal
Format: Thesis
Language:English
Published: 2005
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/75060/1/75060.pdf
https://ir.uitm.edu.my/id/eprint/75060/
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spelling my.uitm.ir.750602023-07-21T01:26:55Z https://ir.uitm.edu.my/id/eprint/75060/ Estimation of sky illuminance for solar energy technology applications in Malaysia / Harizal Omar Omar, Harizal Energy conservation Solar energy The aim of this project is to produce sky illuminance and sky irradiance for Malaysian sky. Therefore, the sky luminance and sky radiance should be measured first in order to get the instantaneous incident of solar energy which is illuminance and irradiance. Furthermore, illuminance is one of the most important elements in daylight. Therefore, sky scanner is selected to be the equipment that will produce the luminance and radiance data. But, the radiance is also needed in order to determine the ratio of the luminance to radiance which is global luminous efficacy. Then, the value of this ratio will be used to convert the solar radiation to be a global illuminance. The sky scanner is designed to measure luminance and radiance of 145 points of sky dome shaped. The daily measurements had been done from 6.30 am to 6.30 pm every day for one month. The sky scanner required a personal computer in order to install the data from the measurement that had been done. In Malaysia, solar energy studies and applications are considered new. The applications of solar energy in Malaysia can be classified into two categories which are thermal systems and photovoltaic systems. Thermal systems mean the conversion of solar energy into thermal energy and photovoltaic systems mean the conversion of solar energy into electrical energy (Sopian, Yusof, Baharudin, 2000). The latest addition to these categories is the use of natural lighting from solar energy (Zain- Ahmed, 2005). Solar energy is expected to play a very significant role in the future especially in developing countries, but it has also potential prospects for developed countries. Hopefully, the results of the ratio between illuminance and irradiance or luminance and radiance which is around 98.20 lm/ W is very useful in order to develop our country to be more efficient in sustainable development. 2005 Thesis NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/75060/1/75060.pdf Estimation of sky illuminance for solar energy technology applications in Malaysia / Harizal Omar. (2005) Degree thesis, thesis, Universiti Teknologi MARA (UiTM).
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Energy conservation
Solar energy
spellingShingle Energy conservation
Solar energy
Omar, Harizal
Estimation of sky illuminance for solar energy technology applications in Malaysia / Harizal Omar
description The aim of this project is to produce sky illuminance and sky irradiance for Malaysian sky. Therefore, the sky luminance and sky radiance should be measured first in order to get the instantaneous incident of solar energy which is illuminance and irradiance. Furthermore, illuminance is one of the most important elements in daylight. Therefore, sky scanner is selected to be the equipment that will produce the luminance and radiance data. But, the radiance is also needed in order to determine the ratio of the luminance to radiance which is global luminous efficacy. Then, the value of this ratio will be used to convert the solar radiation to be a global illuminance. The sky scanner is designed to measure luminance and radiance of 145 points of sky dome shaped. The daily measurements had been done from 6.30 am to 6.30 pm every day for one month. The sky scanner required a personal computer in order to install the data from the measurement that had been done. In Malaysia, solar energy studies and applications are considered new. The applications of solar energy in Malaysia can be classified into two categories which are thermal systems and photovoltaic systems. Thermal systems mean the conversion of solar energy into thermal energy and photovoltaic systems mean the conversion of solar energy into electrical energy (Sopian, Yusof, Baharudin, 2000). The latest addition to these categories is the use of natural lighting from solar energy (Zain- Ahmed, 2005). Solar energy is expected to play a very significant role in the future especially in developing countries, but it has also potential prospects for developed countries. Hopefully, the results of the ratio between illuminance and irradiance or luminance and radiance which is around 98.20 lm/ W is very useful in order to develop our country to be more efficient in sustainable development.
format Thesis
author Omar, Harizal
author_facet Omar, Harizal
author_sort Omar, Harizal
title Estimation of sky illuminance for solar energy technology applications in Malaysia / Harizal Omar
title_short Estimation of sky illuminance for solar energy technology applications in Malaysia / Harizal Omar
title_full Estimation of sky illuminance for solar energy technology applications in Malaysia / Harizal Omar
title_fullStr Estimation of sky illuminance for solar energy technology applications in Malaysia / Harizal Omar
title_full_unstemmed Estimation of sky illuminance for solar energy technology applications in Malaysia / Harizal Omar
title_sort estimation of sky illuminance for solar energy technology applications in malaysia / harizal omar
publishDate 2005
url https://ir.uitm.edu.my/id/eprint/75060/1/75060.pdf
https://ir.uitm.edu.my/id/eprint/75060/
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score 13.19449