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Typical Meteorological Year Data Analysis for Optimal Utilization of Energy Systems at Six Selected Locations in Nigeria

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In this study, the Typical Meteorological Year (TMY) data for six locations representing the 6 geo-political zones in Nigeria were generated and analyzed using the Sandia Method. The analysis shows… Click to show full abstract

In this study, the Typical Meteorological Year (TMY) data for six locations representing the 6 geo-political zones in Nigeria were generated and analyzed using the Sandia Method. The analysis shows that seasonal variations exist in all the selected locations indicating two distinct seasons: the dry and wet seasons with varying lengths from north to south of the country. Due to its high global radiation levels (21–25 MJ/m2/day), the North is a desirable location for solar-thermal systems. Also, the high monthly mean temperature variations (about 18°C), low relative humidity (15%) and constant wind speeds (4m/s) experienced in the first three months of the year aid the installation of wind energy systems and the application of evaporative cooling techniques that reduce the thermal load and energy consumption of buildings. On the other side, the high relative humidity (80%) and mediocre radiation values derived almost throughout the year in the South-west, South-east and South-south regions discourages the extensive application of evaporative cooling and solar energy based systems in such locations, but the moderate wind speeds (2.9 m/s) and monthly mean temperature variations associated with these regions between the first three months of the year allow for the application of natural ventilation and some passive cooling systems so as to reduce the thermal load of buildings in the regions. The information presented in this work can serve as a guide for design and selection of energy systems and application of energy-related projects in Nigeria.

Keywords: selected locations; meteorological year; year; energy; energy systems; typical meteorological

Journal Title: International Journal of Low-Carbon Technologies
Year Published: 2023

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