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Assessment of solar energy potential for Bahir Dar city, Ethiopia
by
Alemu, Aschale Getnet
, Ayalew, Assefa Beyene
, Tesfa, Tereche Getnet
, Ayalew, Tewodros Semeneh
, Nallamothu, Ramesh Babu
, Wassie, Hailemariam Mulugeta
in
639/166
/ 639/4077
/ Beam solar radiation
/ Diffuse solar radiation
/ Energy consumption
/ Environmental changes
/ Equator
/ Fossil fuels
/ Global solar radiation
/ Humanities and Social Sciences
/ multidisciplinary
/ Radiation
/ Radiation measurement
/ Renewable energy
/ Science
/ Science (multidisciplinary)
/ Solar energy
/ Solar radiation
/ Sunshine hour
2024
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Assessment of solar energy potential for Bahir Dar city, Ethiopia
by
Alemu, Aschale Getnet
, Ayalew, Assefa Beyene
, Tesfa, Tereche Getnet
, Ayalew, Tewodros Semeneh
, Nallamothu, Ramesh Babu
, Wassie, Hailemariam Mulugeta
in
639/166
/ 639/4077
/ Beam solar radiation
/ Diffuse solar radiation
/ Energy consumption
/ Environmental changes
/ Equator
/ Fossil fuels
/ Global solar radiation
/ Humanities and Social Sciences
/ multidisciplinary
/ Radiation
/ Radiation measurement
/ Renewable energy
/ Science
/ Science (multidisciplinary)
/ Solar energy
/ Solar radiation
/ Sunshine hour
2024
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Assessment of solar energy potential for Bahir Dar city, Ethiopia
by
Alemu, Aschale Getnet
, Ayalew, Assefa Beyene
, Tesfa, Tereche Getnet
, Ayalew, Tewodros Semeneh
, Nallamothu, Ramesh Babu
, Wassie, Hailemariam Mulugeta
in
639/166
/ 639/4077
/ Beam solar radiation
/ Diffuse solar radiation
/ Energy consumption
/ Environmental changes
/ Equator
/ Fossil fuels
/ Global solar radiation
/ Humanities and Social Sciences
/ multidisciplinary
/ Radiation
/ Radiation measurement
/ Renewable energy
/ Science
/ Science (multidisciplinary)
/ Solar energy
/ Solar radiation
/ Sunshine hour
2024
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Assessment of solar energy potential for Bahir Dar city, Ethiopia
Journal Article
Assessment of solar energy potential for Bahir Dar city, Ethiopia
2024
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Overview
The world’s energy consumption is being replaced by renewable energies in large part because of the depletion of fossil fuels and the acceleration of environmental change. This study reports the amount of inward solar radiation in the date range from January 2018 to December 2022 in the Gregorian Calendar for certain areas in Bahir Dar, Ethiopia: 37°E and 11.6°N. On the horizontal surface of the case area, the month with the highest global radiation (monthly average daily) is March, at approximately 42.56 MJ/m
2
. day; June has the lowest diffuse radiation, at 16.2 MJ/m
2
.day. Furthermore, April had the most global radiation (monthly average hourly) on the horizontal surface, measuring 9.09 MJ/m2.hour, while June had the lowest diffuse radiation, measuring 2.3 MJ/m2.hour. In addition, this study predicts the beam, diffuse, and total radiation on the tilted collector using the total available horizontal radiation on a monthly and hourly basis. According to the research, the output of the radiation on the tilted surface towards the equator in the northern hemisphere, azimuth angle, γ = 0°, shows that the highest possible total radiation (monthly average daily) is 48.3 MJ/m
2
. day (January) and the highest possible total radiation (monthly average hourly) in February, 9.14 MJ/m
2
.hour at 1:00 p.m.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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