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Heliyon ; 10(9): e30170, 2024 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-38756600

RESUMO

Understanding and harnessing renewable energy potential is imperative for developing nations in the context of climate change. However, the wind potential of Yamoussoukro, Côte d'Ivoire, remains inadequately explored. This study employs a Longitudinal Observational Study design, acquiring data at 1-min intervals to capture the dynamic wind characteristics. The research focuses on refining ground data and estimating wind potential using a DAVIS Pro weather station with a cup anemometer for speed and a wind vane for direction. Wind speed and direction are measured in meters per second and degrees. Two distinct approaches are employed for data analysis: arithmetic and cubic averages provide representative values, and the Two-Parameter Weibull Probability Distribution Functions, determined through the method of moments, offer insights into the wind distribution pattern. The study's findings indicate an 8-h time slot during which the wind potential permits obtaining an annual energy production of 53,38 kW/h/m2, a valuable window of opportunity. The rainy season, particularly May, has the highest average monthly wind speed, while the dry season in December has the lowest. Furthermore, the wind rose analysis reveals that the prevailing winds blow from south to north, further highlighting the region's wind potential. The results affirm that Yamoussoukro harbors a moderate wind potential, aptly harnessed through Vertical Axis Wind Turbines (VAWT). This discovery holds significant implications for sustainable development, highlighting the city's potential to transition towards a greener, more energy-efficient economy. Yamoussoukro is poised to contribute substantially to renewable energy and climate change mitigation efforts by unlocking the untapped wind energy potential.

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