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Title: | Modelling net radiative measurement of meteorological parameters using MERRA-2 data in Sub-Sahara African town |
Authors: | Aweda, F. O. Adebayo, S. Samson, T. K. Ojedokun, I. A. |
Keywords: | Air temperature HelioClim Net radiation Solar radiation |
Issue Date: | 2021 |
Publisher: | Babol Noshirvani University of Technology - BNUT |
Citation: | Aweda, F. O. Adebayo, S. Samson, T. K. & Ojedokun I. A. (2021). Modelling net radiative measurement of meteorological parameters using MERRA-2 data in Sub-Sahara African town. Iranian (Iranica) Journal of Energy and Environment 12(2), 173-180. |
Abstract: | In this study, the net radiation was estimated using a simple straightforward expression proposed by different researchers, which is based on the principle of the Fourier Series Technique. The estimation of net radiation of Iwo (7.62920N, 4.18720) from the data collected from the archive of HelioClim satellite MERRA- 2 (i.e. global solar radiation and air temperature) was done on the real and imaginary measurements. The result of both real and imaginary radiation at maximum revealed (− 1.6 × 10−7𝑊𝑚− 2𝑑𝑎𝑦−1) and minimum at about (− 2.3 × 10− 7𝑊𝑚−2 𝑑𝑎𝑦−1), while solar radiation and temperature revealed about (440 × 10−7𝑊𝑚−2) and 299K maximum and minimum (3700 × 10−7𝑊𝑚−2) and 297.7K, respectively. Statistically, the result indicated that the regression coefficient of 3.959 with t- statistics of 3.34 and p < 0.05 indicates that for every 1K increase in air temperature, solar radiation will increase by 3.959, which shows that both solar radiation and temperature have a significant effect on net radiation. Therefore, the researchers concluded that Iwo had maximum real net radiation in February with months such as January, March, July, August, October and December as minimum radiation while imaginary radiation had its maximum and minimum in September and August respectively. |
URI: | ir.bowen.edu.ng:8080/jspui/handle/123456789/1049 |
ISSN: | 2079-2115 |
Appears in Collections: | Articles |
Files in This Item:
File | Description | Size | Format | |
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Aweda et al 2021 IJEE.pdf | Research Article | 1.26 MB | Adobe PDF | View/Open |
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