Evaluation of small wind turbines for rural electrification: Case studies from extreme climatic conditions in Venezuela
On-site technology performance evaluations are needed in tropical regions with extreme climatic conditions in order to reinforce electricity access programs based on renewable energy technologies (RET), particularly off-grid small wind technologies (SWT). This research aims to evaluate the technical...
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Veröffentlicht in: | Energy (Oxford) 2020-10, Vol.209, p.118450, Article 118450 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | On-site technology performance evaluations are needed in tropical regions with extreme climatic conditions in order to reinforce electricity access programs based on renewable energy technologies (RET), particularly off-grid small wind technologies (SWT). This research aims to evaluate the technical performance and end-users’ acceptance of two SWT projects in Venezuelan communities located at different altitudes and with different weather conditions: a hot desert climate on the Caribbean coast and dry-winter climate in the Andean mountains. The technical performance is assessed through computer simulations to analyze the electricity demand and the wind resource. End-users’ acceptance is studied from in situ surveys and semi-structured interviews with all beneficiaries. Results show that the flat areas on the north coast have a low wind variability and high wind speeds, while in the mountainous areas the implementation of SWT is limited by the orography’s impact on wind variability. However, the social acceptance of SWT in both communities remains high given the existing relationship between load and production variations.
•An evaluation of small wind turbines projects in Venezuela is carried out.•Two different weather conditions are studied: a hot desert and dry-winter climate.•Technical assess shows significant influence of weather in load and reliability.•Social acceptance is high thanks to balance between generation and consumption. |
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ISSN: | 0360-5442 1873-6785 |
DOI: | 10.1016/j.energy.2020.118450 |