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dc.contributor.authorDavalos Ramirez, Jose Omar
dc.date.accessioned2026-01-06T16:13:34Z
dc.date.available2026-01-06T16:13:34Z
dc.date.issued2025-05-17es_MX
dc.identifier.urihttps://cathi.uacj.mx/20.500.11961/32997
dc.description.abstractTo spread the use of Wind H Darrieus turbines to electricity generation in urban or rural environments is necessary to improve some of its main drawbacks such as: aerodynamic efficiency, self-starting capability and torque fluctuations. The aims of this study are to enhance the aerodynamic efficiency and self-starting capability of an H-Darrieus turbine through wind tunnel tests combined using a 3D numerical study using Computational Fluid Dynamics (CFD). The NREL S815 profile and four modified versions were evaluated, including one with a 19.2% increase in thickness and three chord-to-diameter ratios:=0.15, 0.20, and 0.225. These configurations were tested at wind speeds of 6 and 8 m/s. Static torque was measured experimentally, alongside numerical alculations of flow and pressure distribution. A significant correlation between chord length and turbine performance was observed. The =0.20 profile exhibited increases of up to 50.27% and 58.88% in static torque at 6 and 8 m/s, respectively. The static torque coefficient increased from 0.0063 in the original profile to 0.0447 in the C/D=0.20 profile, directly contributing to the improvement of self-starting capability. Although the =0.20 geometry showed improvements, the C/D=0.225 rofile did not show additional performance gains, indicating that further increases in chord length do not improve turbine performance. The profile modified with a 19.2% increase in thickness ranked just below the =0.2 profile, exhibiting torque ncreases of 41% and 25.22% at 6 and 8 m/s, respectively. These findings confirm that chord-to-diameter ratio adjustments lay a critical role in boosting torque generation in vertical-axis wind turbines.es_MX
dc.description.urihttps://ijred.cbiore.id/index.php/ijred/article/view/61124es_MX
dc.language.isoenes_MX
dc.relation.ispartofProducto de investigación IITes_MX
dc.relation.ispartofInstituto de Ingeniería y Tecnologíaes_MX
dc.subjectH - Darrieus turbinees_MX
dc.subjectNREL S815es_MX
dc.subjectmaximum thickness,es_MX
dc.subjectprofile chordes_MX
dc.subjectself - starting capability.es_MX
dc.subject.otherinfo:eu-repo/classification/cti/7es_MX
dc.titleInfluence of profile geometry on the self-starting capability of an H-Darrieus turbinees_MX
dc.typeArtículoes_MX
dcterms.thumbnailhttp://ri.uacj.mx/vufind/thumbnails/rupiiit.pnges_MX
dcrupi.institutoInstituto de Ingeniería y Tecnologíaes_MX
dcrupi.cosechableSies_MX
dcrupi.norevista4es_MX
dcrupi.volumen14es_MX
dcrupi.nopagina694-702es_MX
dc.identifier.doihttps://doi.org/10.61435/ijred.2025.61124es_MX
dc.journal.titleInternational Journal of Renewable Energy Developmentes_MX
dc.contributor.authorexternoMartinez Oropeza, Rogelio
dc.contributor.coauthorexternoGarcia Castrejon, Juan Carlos
dc.contributor.coauthorexternoCastro Gomez, Laura
dc.contributor.coauthorexternoVera Willimek, Itzel
dc.contributor.coauthorexternoJaramillo, Oscar
dcrupi.colaboracionextNoes_MX
dcrupi.pronacesEnergía y Cambio Climáticoes_MX


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